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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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},
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
"id":"ABO4g",
"name":"ABO blood group (transferase A, alpha 1-3-N-acetylgalactosaminyltransferase; transferase B, alpha 1-3-galactosyltransferase)",
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}
},
{
"id":"ABO5g",
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},
{
"id":"ABO6g",
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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}
},
{
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},
{
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},
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},
{
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},
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},
{
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},
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},
{
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},
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}
},
{
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},
{
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},
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},
{
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},
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},
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},
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},
{
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"rhea":[
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"21827",
"21825",
"21826"
],
"sabiork":[
"825"
],
"sbo":"SBO:0000176",
"seed.reaction":[
"rxn00260"
]
}
},
{
"id":"ATP1ter",
"name":"ADP/ATP transporter, endoplasmic reticulum",
"metabolites":{
"adp_c":1.0,
"adp_r":-1.0,
"atp_c":-1.0,
"atp_r":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
"notes":{
"original_bigg_ids":[
"ATP1ter"
]
},
"annotation":{
"bigg.reaction":[
"ATP1ter"
],
"ec-code":[
"2.7.4.6"
],
"kegg.reaction":[
"R00124#2"
],
"metanetx.reaction":[
"MNXR96123"
],
"reactome.reaction":[
"R-TGU-163215",
"R-CEL-163215",
"R-ATH-163215",
"R-BTA-5672027",
"R-BTA-163215",
"R-RNO-163215",
"R-MMU-5672027",
"R-GGA-163215",
"R-DRE-5672027",
"R-HSA-5672027",
"R-RNO-5672027",
"R-OSA-163215",
"R-HSA-163215",
"R-MMU-163215",
"R-DRE-163215",
"R-SPO-163215",
"R-PFA-163215",
"R-CFA-163215",
"R-DDI-163215",
"R-SSC-163215",
"R-SCE-163215",
"R-XTR-163215",
"R-XTR-5672027",
"R-SSC-5672027",
"R-DME-163215"
],
"rhea":[
"34999",
"35000",
"35002",
"35001"
],
"sbo":"SBO:0000185"
}
},
{
"id":"BILGLCURte",
"name":"Bilirubin monoglucuronide transport MDR",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"bilglcur_c":-1.0,
"bilglcur_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"4363_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"BILGLCURte"
]
},
"annotation":{
"bigg.reaction":[
"BILGLCURte"
],
"metanetx.reaction":[
"MNXR96256"
],
"sbo":"SBO:0000185"
}
},
{
"id":"BILIRED",
"name":"Nad(p)h biliverdin reductase",
"metabolites":{
"bilirub_c":1.0,
"biliverd_c":-1.0,
"h_c":-1.0,
"nadp_c":1.0,
"nadph_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"645_AT1 or 644_AT1",
"subsystem":"Heme degradation",
"notes":{
"original_bigg_ids":[
"BILIRED"
]
},
"annotation":{
"bigg.reaction":[
"BILIRED"
],
"ec-code":[
"1.3.1.24"
],
"kegg.reaction":[
"R02393"
],
"metanetx.reaction":[
"MNXR96259"
],
"reactome.reaction":[
"R-GGA-189384",
"R-DRE-189384",
"R-HSA-189384",
"R-MMU-189384",
"R-XTR-189384",
"R-DME-189384",
"R-SSC-189384",
"R-RNO-189384",
"R-CFA-189384",
"R-BTA-189384",
"R-TGU-189384"
],
"rhea":[
"15794",
"15795",
"15796",
"15793"
],
"sabiork":[
"2334"
],
"sbo":"SBO:0000176",
"seed.reaction":[
"rxn01723"
]
}
},
{
"id":"EX_6htststerone_e",
"name":"6 beta hydroxy testosterone exchange",
"metabolites":{
"6htststerone_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_6htststerone[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_6htststerone_e"
],
"metanetx.reaction":[
"MNXR95098"
],
"sbo":"SBO:0000627"
}
},
{
"id":"ATPasel_1",
"name":"V-Type ATPase, H+ Transporting, Lysosomal",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_l":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"((50617_AT1 and 533_AT1 and 527_AT1 and 8992_AT1 and 245972_AT1) or (50617_AT1 and 533_AT1 and 527_AT1 and 8992_AT1 and 9114_AT1) or (533_AT1 and 527_AT1 and 8992_AT1 and 535_AT1 and 245972_AT1) or (533_AT1 and 527_AT1 and 8992_AT1 and 535_AT1 and 9114_AT1) or (533_AT1 and 527_AT1 and 8992_AT1 and 50617_AT3 and 245972_AT1) or (533_AT1 and 527_AT1 and 8992_AT1 and 10312_AT1 and 9114_AT1) or (533_AT1 and 527_AT1 and 8992_AT1 and 245972_AT1 and 50617_AT2) or (533_AT1 and 527_AT1 and 8992_AT1 and 9114_AT1 and 23545_AT1) or (533_AT1 and 527_AT1 and 8992_AT1 and 10312_AT2 and 245972_AT1) or (533_AT1 and 527_AT1 and 8992_AT1 and 50617_AT3 and 9114_AT1) or (533_AT1 and 527_AT1 and 8992_AT1 and 245972_AT1 and 23545_AT1) or (533_AT1 and 527_AT1 and 8992_AT1 and 9114_AT1 and 50617_AT2) or (533_AT1 and 527_AT1 and 8992_AT1 and 10312_AT1 and 245972_AT1) or (533_AT1 and 527_AT1 and 8992_AT1 and 10312_AT2 and 9114_AT1)) and ((51382_AT1 and 9296_AT1 and 529_AT1 and 245973_AT1 and 523_AT1 and 51606_AT1 and 9550_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 127124_AT1 and 245973_AT1 and 525_AT1 and 90423_AT1 and 51606_AT2 and 523_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 534_AT2 and 90423_AT1 and 523_AT1 and 526_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 245973_AT1 and 534_AT2 and 523_AT1 and 90423_AT1 and 51606_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 534_AT1 and 51606_AT2 and 529_AT1 and 528_AT1 and 523_AT1 and 526_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 534_AT1 and 529_AT1 and 523_AT1 and 528_AT2 and 526_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 127124_AT1 and 529_AT1 and 525_AT1 and 523_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 245973_AT1 and 90423_AT1 and 127124_AT2 and 51606_AT2 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 127124_AT1 and 529_AT1 and 525_AT1 and 523_AT1 and 51606_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 51606_AT2 and 529_AT1 and 245973_AT1 and 534_AT2 and 525_AT1 and 523_AT1) or (51382_AT1 and 9296_AT1 and 534_AT1 and 528_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1 and 526_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 523_AT1 and 90423_AT1 and 9550_AT1 and 528_AT2 and 526_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 534_AT1 and 245973_AT1 and 525_AT1 and 90423_AT1 and 523_AT1) or (51382_AT1 and 9296_AT1 and 534_AT1 and 525_AT1 and 529_AT1 and 528_AT1 and 523_AT1 and 51606_AT1) or (51382_AT1 and 9296_AT1 and 90423_AT1 and 127124_AT2 and 51606_AT2 and 523_AT1 and 526_AT1 and 528_AT2) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 534_AT1 and 90423_AT1 and 528_AT1 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 51606_AT2 and 529_AT1 and 525_AT1 and 523_AT1 and 127124_AT2 and 528_AT2) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 534_AT1 and 529_AT1 and 528_AT1 and 525_AT1 and 523_AT1) or (51382_AT1 and 9296_AT1 and 529_AT1 and 523_AT1 and 51606_AT1 and 127124_AT2 and 528_AT2 and 526_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 534_AT2 and 525_AT1 and 90423_AT1 and 528_AT1 and 523_AT1) or (51382_AT1 and 9296_AT1 and 534_AT2 and 90423_AT1 and 51606_AT2 and 523_AT1 and 526_AT1 and 528_AT2) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 525_AT1 and 523_AT1 and 90423_AT1 and 9550_AT1 and 528_AT2) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 534_AT1 and 525_AT1 and 90423_AT1 and 528_AT1 and 523_AT1) or (51382_AT1 and 9296_AT1 and 127124_AT1 and 245973_AT1 and 525_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1) or (51382_AT1 and 9296_AT1 and 245973_AT1 and 525_AT1 and 90423_AT1 and 127124_AT2 and 51606_AT2 and 523_AT1) or (51382_AT1 and 9296_AT1 and 534_AT1 and 525_AT1 and 51606_AT2 and 529_AT1 and 523_AT1 and 528_AT2) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 127124_AT1 and 529_AT1 and 528_AT1 and 523_AT1 and 526_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 127124_AT1 and 90423_AT1 and 523_AT1 and 526_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 127124_AT1 and 529_AT1 and 523_AT1 and 51606_AT1 and 528_AT2 and 526_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 525_AT1 and 90423_AT1 and 127124_AT2 and 528_AT1 and 523_AT1) or (51382_AT1 and 9296_AT1 and 90423_AT1 and 127124_AT2 and 51606_AT2 and 528_AT1 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 245973_AT1 and 534_AT2 and 525_AT1 and 90423_AT1 and 51606_AT2 and 523_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 127124_AT1 and 529_AT1 and 245973_AT1 and 523_AT1 and 526_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 245973_AT1 and 523_AT1 and 90423_AT1 and 9550_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 528_AT1 and 534_AT2 and 523_AT1 and 90423_AT1 and 51606_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 127124_AT1 and 525_AT1 and 90423_AT1 and 51606_AT2 and 528_AT1 and 523_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 529_AT1 and 534_AT2 and 525_AT1 and 523_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 51606_AT2 and 127124_AT1 and 529_AT1 and 245973_AT1 and 523_AT1 and 526_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 529_AT1 and 528_AT1 and 523_AT1 and 127124_AT2 and 526_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 534_AT2 and 90423_AT1 and 528_AT1 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 534_AT1 and 51606_AT2 and 529_AT1 and 523_AT1 and 526_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 534_AT2 and 529_AT1 and 528_AT1 and 523_AT1 and 51606_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 534_AT1 and 90423_AT1 and 51606_AT2 and 523_AT1 and 526_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 127124_AT1 and 529_AT1 and 528_AT1 and 523_AT1 and 51606_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 127124_AT1 and 90423_AT1 and 51606_AT2 and 528_AT1 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 529_AT1 and 528_AT1 and 523_AT1 and 51606_AT1 and 9550_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 534_AT2 and 525_AT1 and 51606_AT2 and 529_AT1 and 528_AT1 and 523_AT1) or (51382_AT1 and 9296_AT1 and 529_AT1 and 245973_AT1 and 523_AT1 and 51606_AT1 and 127124_AT2 and 526_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 529_AT1 and 245973_AT1 and 523_AT1 and 9550_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 127124_AT1 and 525_AT1 and 90423_AT1 and 51606_AT2 and 523_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 51606_AT2 and 127124_AT1 and 529_AT1 and 525_AT1 and 523_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 51606_AT2 and 529_AT1 and 523_AT1 and 127124_AT2 and 528_AT2 and 526_AT1) or (51382_AT1 and 9296_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1 and 9550_AT1 and 528_AT2 and 526_AT1) or (51382_AT1 and 9296_AT1 and 534_AT1 and 525_AT1 and 90423_AT1 and 51606_AT2 and 528_AT1 and 523_AT1) or (51382_AT1 and 9296_AT1 and 51606_AT2 and 127124_AT1 and 529_AT1 and 528_AT1 and 525_AT1 and 523_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 529_AT1 and 245973_AT1 and 534_AT2 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 534_AT2 and 525_AT1 and 51606_AT2 and 529_AT1 and 523_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 245973_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1 and 9550_AT1 and 526_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 529_AT1 and 528_AT1 and 523_AT1 and 9550_AT1 and 526_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 525_AT1 and 127124_AT2 and 529_AT1 and 528_AT1 and 523_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 528_AT1 and 525_AT1 and 523_AT1 and 90423_AT1 and 9550_AT1) or (51382_AT1 and 9296_AT1 and 529_AT1 and 245973_AT1 and 525_AT1 and 523_AT1 and 51606_AT1 and 127124_AT2) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 534_AT1 and 525_AT1 and 90423_AT1 and 523_AT1 and 528_AT2) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 245973_AT1 and 525_AT1 and 523_AT1 and 90423_AT1 and 9550_AT1) or (51382_AT1 and 9296_AT1 and 51606_AT2 and 529_AT1 and 245973_AT1 and 523_AT1 and 127124_AT2 and 526_AT1) or (51382_AT1 and 9296_AT1 and 245973_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1 and 127124_AT2 and 526_AT1) or (51382_AT1 and 9296_AT1 and 534_AT2 and 51606_AT2 and 529_AT1 and 523_AT1 and 526_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 534_AT1 and 51606_AT2 and 529_AT1 and 245973_AT1 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 127124_AT1 and 245973_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 529_AT1 and 528_AT1 and 523_AT1 and 51606_AT1 and 127124_AT2 and 526_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 127124_AT1 and 525_AT1 and 90423_AT1 and 528_AT1 and 523_AT1) or (51382_AT1 and 9296_AT1 and 51606_AT2 and 245973_AT1 and 525_AT1 and 523_AT1 and 90423_AT1 and 9550_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 90423_AT1 and 127124_AT2 and 523_AT1 and 526_AT1 and 528_AT2) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 245973_AT1 and 90423_AT1 and 127124_AT2 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 525_AT1 and 9550_AT1 and 51606_AT2 and 529_AT1 and 528_AT1 and 523_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 529_AT1 and 528_AT1 and 525_AT1 and 523_AT1 and 9550_AT1) or (51382_AT1 and 9296_AT1 and 534_AT1 and 525_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 51606_AT2 and 127124_AT1 and 529_AT1 and 245973_AT1 and 525_AT1 and 523_AT1) or (51382_AT1 and 9296_AT1 and 525_AT1 and 9550_AT1 and 51606_AT2 and 529_AT1 and 523_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 9550_AT1 and 51606_AT2 and 529_AT1 and 523_AT1 and 526_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 529_AT1 and 245973_AT1 and 525_AT1 and 523_AT1 and 51606_AT1 and 9550_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 534_AT1 and 245973_AT1 and 90423_AT1 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 529_AT1 and 245973_AT1 and 534_AT2 and 525_AT1 and 523_AT1 and 51606_AT1) or (51382_AT1 and 9296_AT1 and 525_AT1 and 90423_AT1 and 127124_AT2 and 51606_AT2 and 523_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 525_AT1 and 127124_AT2 and 529_AT1 and 528_AT1 and 523_AT1 and 51606_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 127124_AT1 and 245973_AT1 and 525_AT1 and 90423_AT1 and 523_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 529_AT1 and 525_AT1 and 523_AT1 and 127124_AT2 and 528_AT2) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 127124_AT1 and 90423_AT1 and 528_AT1 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 529_AT1 and 525_AT1 and 523_AT1 and 51606_AT1 and 9550_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 534_AT1 and 245973_AT1 and 525_AT1 and 90423_AT1 and 51606_AT2 and 523_AT1) or (51382_AT1 and 9296_AT1 and 51606_AT2 and 529_AT1 and 528_AT1 and 523_AT1 and 127124_AT2 and 526_AT1) or (51382_AT1 and 9296_AT1 and 245973_AT1 and 534_AT2 and 90423_AT1 and 51606_AT2 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 534_AT2 and 525_AT1 and 90423_AT1 and 51606_AT2 and 523_AT1 and 528_AT2) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 529_AT1 and 523_AT1 and 9550_AT1 and 528_AT2 and 526_AT1) or (51382_AT1 and 9296_AT1 and 534_AT2 and 525_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 534_AT1 and 525_AT1 and 51606_AT2 and 529_AT1 and 528_AT1 and 523_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 534_AT1 and 529_AT1 and 528_AT1 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 534_AT2 and 51606_AT2 and 529_AT1 and 528_AT1 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 127124_AT1 and 528_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1 and 526_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 127124_AT1 and 529_AT1 and 523_AT1 and 528_AT2 and 526_AT1) or (51382_AT1 and 9296_AT1 and 534_AT1 and 245973_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 127124_AT1 and 90423_AT1 and 51606_AT2 and 523_AT1 and 526_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 534_AT2 and 529_AT1 and 523_AT1 and 51606_AT1 and 526_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 534_AT1 and 525_AT1 and 529_AT1 and 523_AT1 and 51606_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 51606_AT2 and 245973_AT1 and 523_AT1 and 90423_AT1 and 9550_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 127124_AT1 and 528_AT1 and 525_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 534_AT2 and 525_AT1 and 90423_AT1 and 523_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 127124_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1 and 528_AT2 and 526_AT1) or (51382_AT1 and 9296_AT1 and 127124_AT1 and 529_AT1 and 528_AT1 and 525_AT1 and 523_AT1 and 51606_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 127124_AT1 and 529_AT1 and 245973_AT1 and 525_AT1 and 523_AT1) or (51382_AT1 and 9296_AT1 and 51606_AT2 and 127124_AT1 and 529_AT1 and 523_AT1 and 528_AT2 and 526_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 534_AT1 and 90423_AT1 and 523_AT1 and 526_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 51606_AT2 and 525_AT1 and 523_AT1 and 90423_AT1 and 9550_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 51606_AT2 and 127124_AT1 and 529_AT1 and 528_AT1 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 529_AT1 and 245973_AT1 and 534_AT2 and 523_AT1 and 51606_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 528_AT1 and 534_AT2 and 525_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 127124_AT1 and 245973_AT1 and 90423_AT1 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 51606_AT2 and 529_AT1 and 245973_AT1 and 525_AT1 and 523_AT1 and 127124_AT2) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 529_AT1 and 245973_AT1 and 525_AT1 and 523_AT1 and 9550_AT1) or (51382_AT1 and 9296_AT1 and 528_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1 and 127124_AT2 and 526_AT1) or (51382_AT1 and 9296_AT1 and 529_AT1 and 523_AT1 and 51606_AT1 and 9550_AT1 and 528_AT2 and 526_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 534_AT1 and 529_AT1 and 525_AT1 and 523_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 534_AT1 and 51606_AT2 and 529_AT1 and 245973_AT1 and 525_AT1 and 523_AT1) or (51382_AT1 and 9296_AT1 and 528_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1 and 9550_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 525_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1 and 9550_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 534_AT1 and 90423_AT1 and 51606_AT2 and 528_AT1 and 523_AT1 and 526_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 529_AT1 and 245973_AT1 and 534_AT2 and 525_AT1 and 523_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 90423_AT1 and 127124_AT2 and 528_AT1 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 529_AT1 and 525_AT1 and 523_AT1 and 51606_AT1 and 127124_AT2 and 528_AT2) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 528_AT1 and 523_AT1 and 90423_AT1 and 9550_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 534_AT1 and 529_AT1 and 528_AT1 and 523_AT1 and 51606_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 9550_AT1 and 51606_AT2 and 529_AT1 and 528_AT1 and 523_AT1 and 526_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 529_AT1 and 528_AT1 and 534_AT2 and 525_AT1 and 523_AT1) or (51382_AT1 and 9296_AT1 and 127124_AT1 and 525_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 127124_AT1 and 529_AT1 and 245973_AT1 and 523_AT1 and 51606_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 534_AT2 and 523_AT1 and 90423_AT1 and 51606_AT1 and 528_AT2 and 526_AT1) or (51382_AT1 and 9296_AT1 and 534_AT1 and 245973_AT1 and 90423_AT1 and 51606_AT2 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 51606_AT2 and 528_AT1 and 525_AT1 and 523_AT1 and 90423_AT1 and 9550_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 529_AT1 and 245973_AT1 and 523_AT1 and 127124_AT2 and 526_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 245973_AT1 and 534_AT2 and 525_AT1 and 90423_AT1 and 523_AT1) or (51382_AT1 and 9296_AT1 and 534_AT1 and 529_AT1 and 523_AT1 and 51606_AT1 and 526_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 534_AT1 and 245973_AT1 and 525_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1) or (51382_AT1 and 9296_AT1 and 51606_AT2 and 529_AT1 and 245973_AT1 and 523_AT1 and 9550_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 245973_AT1 and 534_AT2 and 525_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 245973_AT1 and 534_AT2 and 90423_AT1 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 525_AT1 and 90423_AT1 and 127124_AT2 and 51606_AT2 and 528_AT1 and 523_AT1) or (51382_AT1 and 9296_AT1 and 51606_AT2 and 529_AT1 and 245973_AT1 and 534_AT2 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 534_AT1 and 529_AT1 and 245973_AT1 and 525_AT1 and 523_AT1 and 51606_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 529_AT1 and 528_AT1 and 534_AT2 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 51606_AT2 and 523_AT1 and 90423_AT1 and 9550_AT1 and 528_AT2 and 526_AT1) or (51382_AT1 and 9296_AT1 and 534_AT2 and 90423_AT1 and 51606_AT2 and 528_AT1 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 534_AT1 and 525_AT1 and 90423_AT1 and 51606_AT2 and 523_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 534_AT2 and 525_AT1 and 90423_AT1 and 51606_AT2 and 528_AT1 and 523_AT1) or (51382_AT1 and 9296_AT1 and 528_AT1 and 525_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1 and 127124_AT2) or (51382_AT1 and 9296_AT1 and 534_AT1 and 529_AT1 and 245973_AT1 and 523_AT1 and 51606_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 51606_AT2 and 528_AT1 and 523_AT1 and 90423_AT1 and 9550_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 127124_AT1 and 245973_AT1 and 90423_AT1 and 51606_AT2 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 528_AT1 and 525_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1 and 9550_AT1) or (51382_AT1 and 9296_AT1 and 529_AT1 and 528_AT1 and 525_AT1 and 523_AT1 and 51606_AT1 and 9550_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 534_AT1 and 529_AT1 and 245973_AT1 and 525_AT1 and 523_AT1) or (51382_AT1 and 9296_AT1 and 245973_AT1 and 525_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1 and 9550_AT1) or (51382_AT1 and 9296_AT1 and 127124_AT1 and 529_AT1 and 245973_AT1 and 525_AT1 and 523_AT1 and 51606_AT1) or (51382_AT1 and 9296_AT1 and 534_AT2 and 525_AT1 and 529_AT1 and 523_AT1 and 51606_AT1 and 528_AT2) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 529_AT1 and 534_AT2 and 523_AT1 and 528_AT2 and 526_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 525_AT1 and 90423_AT1 and 127124_AT2 and 523_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 534_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1 and 528_AT2 and 526_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 245973_AT1 and 525_AT1 and 90423_AT1 and 127124_AT2 and 523_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 127124_AT1 and 525_AT1 and 90423_AT1 and 523_AT1 and 528_AT2) or (51382_AT1 and 9296_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1 and 127124_AT2 and 528_AT2 and 526_AT1) or (51382_AT1 and 9296_AT1 and 534_AT1 and 528_AT1 and 525_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 529_AT1 and 245973_AT1 and 525_AT1 and 523_AT1 and 127124_AT2) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 529_AT1 and 525_AT1 and 523_AT1 and 9550_AT1 and 528_AT2) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 529_AT1 and 523_AT1 and 127124_AT2 and 528_AT2 and 526_AT1) or (51382_AT1 and 9296_AT1 and 51606_AT2 and 529_AT1 and 245973_AT1 and 525_AT1 and 523_AT1 and 9550_AT1) or (51382_AT1 and 9296_AT1 and 525_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1 and 127124_AT2 and 528_AT2) or (51382_AT1 and 9296_AT1 and 245973_AT1 and 525_AT1 and 523_AT1 and 90423_AT1 and 51606_AT1 and 127124_AT2) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 127124_AT1 and 529_AT1 and 528_AT1 and 525_AT1 and 523_AT1) or (51382_AT1 and 9296_AT1 and 534_AT2 and 525_AT1 and 529_AT1 and 528_AT1 and 523_AT1 and 51606_AT1) or (51382_AT1 and 51606_AT3 and 9296_AT1 and 534_AT1 and 529_AT1 and 245973_AT1 and 523_AT1 and 526_AT1) or (51382_AT1 and 9296_AT1 and 525_AT1 and 127124_AT2 and 51606_AT2 and 529_AT1 and 528_AT1 and 523_AT1))",
"subsystem":"Transport, lysosomal",
"notes":{
"original_bigg_ids":[
"ATPasel"
]
},
"annotation":{
"bigg.reaction":[
"ATPasel_1"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ATPtn",
"name":"ATP diffusion in nucleus",
"metabolites":{
"atp_c":-1.0,
"atp_n":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, nuclear",
"notes":{
"original_bigg_ids":[
"ATPtn"
]
},
"annotation":{
"bigg.reaction":[
"ATPtn"
],
"biocyc":[
"META:RXN-14913"
],
"metanetx.reaction":[
"MNXR96140"
],
"sabiork":[
"13978"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ATPtx",
"name":"ATP transporter, peroxisomal",
"metabolites":{
"atp_c":-1.0,
"atp_x":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, peroxisomal",
"notes":{
"original_bigg_ids":[
"ATPtx"
]
},
"annotation":{
"bigg.reaction":[
"ATPtx"
],
"biocyc":[
"META:RXN-14913"
],
"metanetx.reaction":[
"MNXR96140"
],
"sabiork":[
"13978"
],
"sbo":"SBO:0000185"
}
},
{
"id":"AVITE2t",
"name":"Alpha-tocotrienol (Vit. E) transport",
"metabolites":{
"avite2_c":1.0,
"avite2_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"AVITE2t"
]
},
"annotation":{
"bigg.reaction":[
"AVITE2t"
],
"metanetx.reaction":[
"MNXR96147"
],
"sbo":"SBO:0000185"
}
},
{
"id":"B3GALT3g",
"name":"Beta-1,3-galactosyltransferase 3",
"metabolites":{
"gbside_hs_g":1.0,
"h_g":1.0,
"thcrm_hs_g":-1.0,
"udp_g":1.0,
"udpacgal_g":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8706_AT4 or 8706_AT1 or 8706_AT3 or 8706_AT2",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"B3GALT3g"
]
},
"annotation":{
"bigg.reaction":[
"B3GALT3g"
],
"metanetx.reaction":[
"MNXR96155"
],
"sbo":"SBO:0000176"
}
},
{
"id":"B3GALT42g",
"name":"Beta-1,3-galactosyltransferase 4",
"metabolites":{
"gm1_hs_g":1.0,
"gm2_hs_g":-1.0,
"h_g":1.0,
"udp_g":1.0,
"udpgal_g":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8705_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"B3GALT42g"
]
},
"annotation":{
"bigg.reaction":[
"B3GALT42g"
],
"metanetx.reaction":[
"MNXR96159"
],
"sbo":"SBO:0000176"
}
},
{
"id":"B3GALTg",
"name":"Beta galactosyltransferase",
"metabolites":{
"acglcgalgluside_hs_g":-1.0,
"galacglcgalgluside_hs_g":1.0,
"h_g":1.0,
"udp_g":1.0,
"udpgal_g":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Blood group synthesis",
"notes":{
"original_bigg_ids":[
"B3GALTg"
]
},
"annotation":{
"bigg.reaction":[
"B3GALTg"
],
"metanetx.reaction":[
"MNXR96167"
],
"sbo":"SBO:0000176"
}
},
{
"id":"B3GNT11g",
"name":"UDP-GlcNAc:betaGal beta-1,3-N-acetylglucosaminyltransferase 1",
"metabolites":{
"acglcgal14acglcgalgluside_hs_g":1.0,
"gal14acglcgalgluside_hs_g":-1.0,
"h_g":1.0,
"uacgam_g":-1.0,
"udp_g":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10678_AT1",
"subsystem":"Blood group synthesis",
"notes":{
"original_bigg_ids":[
"B3GNT11g"
]
},
"annotation":{
"bigg.reaction":[
"B3GNT11g"
],
"metanetx.reaction":[
"MNXR96169"
],
"sbo":"SBO:0000176"
}
},
{
"id":"B3GNT310g",
"name":"UDP-GlcNAc:betaGal beta-1,3-N-acetylglucosaminyltransferase 3, Golgi apparatus",
"metabolites":{
"acglcgalgluside_hs_g":-1.0,
"gal14acglcgalgluside_hs_g":1.0,
"h_g":1.0,
"udp_g":1.0,
"udpgal_g":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10331_AT1",
"subsystem":"Blood group synthesis",
"notes":{
"original_bigg_ids":[
"B3GNT310g"
]
},
"annotation":{
"bigg.reaction":[
"B3GNT310g"
],
"metanetx.reaction":[
"MNXR96173"
],
"sbo":"SBO:0000176"
}
},
{
"id":"B3GNT315g",
"name":"UDP-GlcNAc:betaGal beta-1,3-N-acetylglucosaminyltransferase 3, Golgi apparatus",
"metabolites":{
"acglc13galacglcgal14acglcgalgluside_hs_g":-1.0,
"galacglc13galacglcgal14acglcgalgluside_hs_g":1.0,
"h_g":1.0,
"udp_g":1.0,
"udpgal_g":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10331_AT1",
"subsystem":"Blood group synthesis",
"notes":{
"original_bigg_ids":[
"B3GNT315g"
]
},
"annotation":{
"bigg.reaction":[
"B3GNT315g"
],
"metanetx.reaction":[
"MNXR96183"
],
"sbo":"SBO:0000176"
}
},
{
"id":"B3GNT31g",
"name":"UDP-GlcNAc:betaGal beta-1,3-N-acetylglucosaminyltransferase 3, Golgi apparatus",
"metabolites":{
"galthcrm_hs_g":1.0,
"h_g":1.0,
"thcrm_hs_g":-1.0,
"udp_g":1.0,
"udpgal_g":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10331_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"B3GNT31g"
]
},
"annotation":{
"bigg.reaction":[
"B3GNT31g"
],
"metanetx.reaction":[
"MNXR96185"
],
"sbo":"SBO:0000176"
}
},
{
"id":"B3GNT34g",
"name":"UDP-GlcNAc:betaGal beta-1,3-N-acetylglucosaminyltransferase 3, Golgi apparatus",
"metabolites":{
"acglcgalgbside_hs_g":1.0,
"galgbside_hs_g":-1.0,
"h_g":1.0,
"uacgam_g":-1.0,
"udp_g":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10331_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"B3GNT34g"
]
},
"annotation":{
"bigg.reaction":[
"B3GNT34g"
],
"metanetx.reaction":[
"MNXR96188"
],
"sbo":"SBO:0000176"
}
},
{
"id":"B3GNT37g",
"name":"UDP-GlcNAc:betaGal beta-1,3-N-acetylglucosaminyltransferase 3, Golgi apparatus",
"metabolites":{
"gm1a_hs_g":1.0,
"gm2a_hs_g":-1.0,
"h_g":1.0,
"udp_g":1.0,
"udpgal_g":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10331_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"B3GNT37g"
]
},
"annotation":{
"bigg.reaction":[
"B3GNT37g"
],
"metanetx.reaction":[
"MNXR96193"
],
"sbo":"SBO:0000176"
}
},
{
"id":"B3GNT39g",
"name":"UDP-GlcNAc:betaGal beta-1,3-N-acetylglucosaminyltransferase 3, Golgi apparatus",
"metabolites":{
"galgluside_hs_g":1.0,
"gluside_hs_g":-1.0,
"h_g":1.0,
"udp_g":1.0,
"udpgal_g":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10331_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"B3GNT39g"
]
},
"annotation":{
"bigg.reaction":[
"B3GNT39g"
],
"metanetx.reaction":[
"MNXR96197"
],
"sbo":"SBO:0000176"
}
},
{
"id":"B3GNT51g",
"name":"UDP-GlcNAc:betaGal beta-1,3-N-acetylglucosaminyltransferase 5",
"metabolites":{
"acglcgalgluside_hs_g":1.0,
"galgluside_hs_g":-1.0,
"h_g":1.0,
"uacgam_g":-1.0,
"udp_g":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"84002_AT1",
"subsystem":"Blood group synthesis",
"notes":{
"original_bigg_ids":[
"B3GNT51g"
]
},
"annotation":{
"bigg.reaction":[
"B3GNT51g"
],
"metanetx.reaction":[
"MNXR96198"
],
"sbo":"SBO:0000176"
}
},
{
"id":"BAAT1x",
"name":"Bile acid Coenzyme A: amino acid N-acyltransferase",
"metabolites":{
"cholcoa_x":-1.0,
"coa_x":1.0,
"gchola_x":1.0,
"gly_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"570_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"BAAT1x"
]
},
"annotation":{
"bigg.reaction":[
"BAAT1x"
],
"ec-code":[
"2.3.1.65"
],
"metanetx.reaction":[
"MNXR96202"
],
"sbo":"SBO:0000176"
}
},
{
"id":"BAAT3x",
"name":"Bile acid Coenzyme A: amino acid N-acyltransferase",
"metabolites":{
"coa_x":1.0,
"dgchol_x":1.0,
"dgcholcoa_x":-1.0,
"gly_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"570_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"BAAT3x"
]
},
"annotation":{
"bigg.reaction":[
"BAAT3x"
],
"ec-code":[
"2.3.1.65"
],
"metanetx.reaction":[
"MNXR96204"
],
"sbo":"SBO:0000176"
}
},
{
"id":"BACCL",
"name":"Biotin acetyl CoA carboxylase ligase",
"metabolites":{
"atp_c":-1.0,
"btamp_c":1.0,
"btn_c":-1.0,
"h_c":-1.0,
"ppi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3141_AT1",
"subsystem":"Biotin metabolism",
"notes":{
"original_bigg_ids":[
"BACCL"
]
},
"annotation":{
"bigg.reaction":[
"BACCL"
],
"ec-code":[
"6.3.4.10",
"6.2.1.11",
"6.3.4.15",
"6.3.4.11",
"6.3.4.9"
],
"metanetx.reaction":[
"MNXR138107"
],
"sbo":"SBO:0000176",
"seed.reaction":[
"rxn00792"
]
}
},
{
"id":"BALAVECSEC_1",
"name":"B-Alanine Secretion via Secretory Vesicle (ATP Driven)",
"metabolites":{
"adp_c":1.0,
"ala_B_c":-1.0,
"ala_B_e":1.0,
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{
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},
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},
{
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},
{
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"49909",
"49908",
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},
{
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},
{
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},
{
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},
{
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},
{
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{
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},
{
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},
{
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{
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{
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},
{
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{
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},
{
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},
{
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},
{
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},
{
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},
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},
{
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},
{
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},
{
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},
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},
{
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},
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},
{
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},
{
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},
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},
{
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},
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},
{
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},
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},
{
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},
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"16122",
"16124",
"16123"
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}
},
{
"id":"DIGALSGALSIDEtg",
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},
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}
},
{
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]
},
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}
},
{
"id":"DITPtn",
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"upper_bound":1000.0,
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}
},
{
"id":"D_LACt2",
"name":"D lactate transport via proton symport",
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"h_c":1.0,
"h_e":-1.0,
"lac__D_c":1.0,
"lac__D_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
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"notes":{
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"D_LACt2"
]
},
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"D_LACt2"
],
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"MNXR97838"
],
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"seed.reaction":[
"rxn10171",
"rxn09772",
"rxn08350"
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}
},
{
"id":"DLNLCGCPT1",
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"crn_c":-1.0,
"dlnlcgcoa_c":-1.0,
"dlnlcgcrn_c":1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
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"DLNLCGCPT1"
]
},
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"DLNLCGCPT1"
],
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"MNXR97502"
],
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}
},
{
"id":"DM_Asn_X_Ser_Thr_l",
"name":"DM Asn  X  Ser FSLASH Thr LPAREN ly RPAREN ",
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"Asn_X_Ser_Thr_l":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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"original_bigg_ids":[
"DM_Asn_X_Ser_Thr_ly_"
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},
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"DM_Asn_X_Ser_Thr_l"
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"metanetx.reaction":[
"MNXR96149"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_core5_g",
"name":"Demand for Core5, Golgi Apparatus",
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"core5_g":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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"original_bigg_ids":[
"DM_core5_g_"
]
},
"annotation":{
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"DM_core5_g"
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"metanetx.reaction":[
"MNXR142752"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_dem2emgacpail_prot_hs_r",
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"dem2emgacpail_prot_hs_r":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
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"DM_dem2emgacpail_prot_hs_r"
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"metanetx.reaction":[
"MNXR142757"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_dgpi_prot_hs_r",
"name":"Demand for  Deacylated-Glycophosphatidylinositol (Gpi)-Anchored Protein,  Endoplasmatic Reticulum",
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"dgpi_prot_hs_r":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
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"DM_dgpi_prot_hs_r_"
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},
"annotation":{
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"metanetx.reaction":[
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],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_dsT_antigen_g",
"name":"Demand for  Disialyl-T Antigen,  Golgi Apparatus",
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"dsT_antigen_g":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
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"original_bigg_ids":[
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},
"annotation":{
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"metanetx.reaction":[
"MNXR142761"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_kdn_c",
"name":"Demand for  2-Keto-3-Deoxy-D-Glycero-D-Galactononic Acid,  Cytosolic",
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"kdn_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
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},
"annotation":{
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],
"metanetx.reaction":[
"MNXR142770"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_melanin_c",
"name":"Demand for Melanin, Cytosolic",
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"melanin_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
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"original_bigg_ids":[
"DM_melanin_c_"
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},
"annotation":{
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"metanetx.reaction":[
"MNXR142775"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_n5m2masn_g",
"name":"Demand for  ((N-Acetyl-D-Glucosaminyl)5-(Alpha-D-Mannosyl)2-Beta-D-Mannosyl-Diacetylchitobiosyl)-L-Asparagine (Protein),  Golgi Apparatus",
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"n5m2masn_g":-1.0
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"lower_bound":0.0,
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"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
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},
"annotation":{
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"MNXR142777"
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"sbo":"SBO:0000628"
}
},
{
"id":"DM_oretn_n",
"name":"4-oxo-retonoic acid demand",
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"oretn_n":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
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"original_bigg_ids":[
"DM_oretn_n_"
]
},
"annotation":{
"bigg.reaction":[
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"metanetx.reaction":[
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],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_Ser_Thr_l",
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"lower_bound":0.0,
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},
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"metanetx.reaction":[
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"sbo":"SBO:0000628"
}
},
{
"id":"DM_Ser_Gly_Ala_X_Gly_l",
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"Ser_Gly_Ala_X_Gly_l":-1.0
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"lower_bound":0.0,
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"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
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},
"annotation":{
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"metanetx.reaction":[
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"sbo":"SBO:0000628"
}
},
{
"id":"DM_sprm_c",
"name":"Demand for  Spermine,  Cytosolic",
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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"sabiork":[
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"sbo":"SBO:0000628",
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}
},
{
"id":"DMANTIPYRINEte",
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"upper_bound":1000.0,
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}
},
{
"id":"DMATTx",
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"ipdp_x":-1.0,
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"lower_bound":0.0,
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},
"annotation":{
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"ec-code":[
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"kegg.reaction":[
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"R-CEL-191322",
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"R-GGA-191322",
"R-ATH-191322",
"R-DME-191322",
"R-SPO-191322",
"R-SSC-191322",
"R-DDI-191322",
"R-BTA-191322",
"R-MMU-191322",
"R-DRE-191322",
"R-PFA-191322",
"R-RNO-191322",
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"R-OSA-191322",
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"rhea":[
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"22409",
"22411",
"22408"
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"sabiork":[
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}
},
{
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"fald_m":1.0,
"h2o_m":-1.0,
"sarcs_m":1.0
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"lower_bound":0.0,
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},
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"22496",
"22497",
"22499"
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}
},
{
"id":"DMGtm",
"name":"Dimethylglycine transport via diffusion (cytosol to mitochondria)",
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},
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"reactome.reaction":[
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},
{
"id":"DMHPTCRNCPT2",
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"dmhptcoa_m":1.0,
"dmhptcrn_m":-1.0
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"lower_bound":-1000.0,
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},
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}
},
{
"id":"DMHPTCRNte",
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},
{
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},
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}
},
{
"id":"DMNONCRNt",
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"dmnoncrn_m":1.0
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"upper_bound":1000.0,
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},
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},
{
"id":"DNADtn",
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},
{
"id":"DNDPt10m",
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"dcdp_c":1.0,
"dcdp_m":-1.0
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"annotation":{
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},
{
"id":"DNDPt11m",
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},
{
"id":"DNDPt13m",
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},
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},
{
"id":"DNDPt14m",
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},
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},
{
"id":"DNDPt15m",
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},
{
"id":"DNDPt16m",
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},
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},
{
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{
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{
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},
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}
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}
},
{
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},
"lower_bound":-1000.0,
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}
},
{
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},
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"sbo":"SBO:0000627"
}
},
{
"id":"EX_tststeroneglc_e",
"name":"Testosterone glucuronide exchange",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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},
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tststerones_e",
"name":"Testosterone sulfate exchange",
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},
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"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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},
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"metanetx.reaction":[
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],
"sbo":"SBO:0000627"
}
},
{
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},
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},
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"metanetx.reaction":[
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tymsf_e",
"name":"Tyramine O-sulfate exchange",
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"tymsf_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
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"subsystem":"Extracellular exchange",
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]
},
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_Tyr_ggn_e",
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},
"lower_bound":-1000.0,
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"subsystem":"Extracellular exchange",
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},
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],
"sbo":"SBO:0000627"
}
},
{
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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]
},
"annotation":{
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],
"reactome.reaction":[
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_vitd3_e",
"name":"Vitamin D3 exchange",
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"vitd3_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_whddca_e",
"name":"Omega hydroxy dodecanoate (n-C12:0) exchange",
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},
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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]
},
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],
"sbo":"SBO:0000627"
}
},
{
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},
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
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],
"sbo":"SBO:0000627"
}
},
{
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},
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"subsystem":"Extracellular exchange",
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},
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],
"sbo":"SBO:0000627"
}
},
{
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"name":"7-alpha,25-Dihydroxycholesterol exchange",
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},
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},
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],
"sbo":"SBO:0000627"
}
},
{
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},
{
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},
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}
},
{
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}
},
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},
{
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},
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},
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},
{
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},
{
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},
{
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{
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},
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"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"GALASE10ly",
"name":"Beta-galactosidase, lysosomal",
"metabolites":{
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"h2o_l":-1.0,
"ksi_deg26_l":-1.0,
"ksi_deg27_l":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(5476_AT1 and 2720_AT1 and 2588_AT1 and 4758_AT1) or (5476_AT1 and 2720_AT1)",
"subsystem":"Keratan sulfate degradation",
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]
},
"annotation":{
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],
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],
"sbo":"SBO:0000176"
}
},
{
"id":"GALASE12ly",
"name":"Beta-galactosidase, lysosomal",
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"h2o_l":-1.0,
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"ksi_deg33_l":1.0
},
"lower_bound":0.0,
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]
},
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"GALASE13ly",
"name":"Beta-galactosidase, lysosomal",
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"h2o_l":-1.0,
"ksi_deg35_l":-1.0,
"ksi_deg36_l":1.0
},
"lower_bound":0.0,
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"subsystem":"Keratan sulfate degradation",
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"GALASE15ly",
"name":"Beta-galactosidase, lysosomal",
"metabolites":{
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"h2o_l":-1.0,
"ksi_deg40_l":-1.0,
"ksi_deg41_l":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(5476_AT1 and 2720_AT1 and 2588_AT1 and 4758_AT1) or (5476_AT1 and 2720_AT1)",
"subsystem":"Keratan sulfate degradation",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"GALASE16ly",
"name":"Beta-galactosidase, lysosomal",
"metabolites":{
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"h2o_l":-2.0,
"ksii_core2_deg2_l":-1.0,
"ksii_core2_deg3_l":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
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"subsystem":"Keratan sulfate degradation",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"GALASE17ly",
"name":"Beta-galactosidase, lysosomal",
"metabolites":{
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"h2o_l":-1.0,
"ksii_core2_deg5_l":-1.0,
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"lower_bound":0.0,
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"subsystem":"Keratan sulfate degradation",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"GALASE19ly",
"name":"Beta-galactosidase, lysosomal",
"metabolites":{
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"f1a_l":-1.0,
"gal_l":1.0,
"h2o_l":-1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"(5476_AT1 and 2720_AT1 and 2588_AT1 and 4758_AT1) or (5476_AT1 and 2720_AT1)",
"subsystem":"Keratan sulfate degradation",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"GALASE1ly",
"name":"Beta-galactosidase, lysosomal",
"metabolites":{
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"h2o_l":-2.0,
"l2n2m2mn_l":-1.0,
"n2m2mn_l":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(5476_AT1 and 2720_AT1 and 2588_AT1 and 4758_AT1) or (5476_AT1 and 2720_AT1)",
"subsystem":"N-glycan degradation",
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"GALASE20ly",
"name":"Beta-galactosidase, lysosomal",
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"h2o_l":-2.0,
"ksii_core4_deg2_l":-1.0,
"ksii_core4_deg3_l":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
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"subsystem":"Keratan sulfate degradation",
"notes":{
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},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"GALASE4ly",
"name":"Beta-galactosidase, lysosomal",
"metabolites":{
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"h2o_l":-1.0,
"ksi_deg8_l":-1.0,
"ksi_deg9_l":1.0
},
"lower_bound":0.0,
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"subsystem":"Keratan sulfate degradation",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"GALASE7ly",
"name":"Beta-galactosidase, lysosomal",
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"h2o_l":-1.0,
"ksi_deg17_l":-1.0,
"ksi_deg18_l":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(5476_AT1 and 2720_AT1 and 2588_AT1 and 4758_AT1) or (5476_AT1 and 2720_AT1)",
"subsystem":"Keratan sulfate degradation",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"GALASE8ly",
"name":"Beta-galactosidase, lysosomal",
"metabolites":{
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"h2o_l":-1.0,
"ksi_deg20_l":-1.0,
"ksi_deg21_l":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(5476_AT1 and 2720_AT1 and 2588_AT1 and 4758_AT1) or (5476_AT1 and 2720_AT1)",
"subsystem":"Keratan sulfate degradation",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"GALASE9ly",
"name":"Beta-galactosidase, lysosomal",
"metabolites":{
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"h2o_l":-1.0,
"ksi_deg23_l":-1.0,
"ksi_deg24_l":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(5476_AT1 and 2720_AT1 and 2588_AT1 and 4758_AT1) or (5476_AT1 and 2720_AT1)",
"subsystem":"Keratan sulfate degradation",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"GALFUC12GAL14ACGLCGALGLUSIDEtg",
"name":"Blood group intracellular transport",
"metabolites":{
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"galfuc12gal14acglcgalgluside_hs_g":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, golgi apparatus",
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"annotation":{
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"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"GALGALFUCFUCGALACGLCGALACGLCGAL14ACGLCGALGLUSIDEte",
"name":"Blood group intracellular transport",
"metabolites":{
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"galgalfucfucgalacglcgalacglcgal14acglcgalgluside_hs_e":-1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
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"subsystem":"Transport, extracellular",
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],
"sbo":"SBO:0000185"
}
},
{
"id":"GALGALFUCFUCGALACGLCGALACGLCGAL14ACGLCGALGLUSIDEtg",
"name":"Blood group intracellular transport",
"metabolites":{
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"galgalfucfucgalacglcgalacglcgal14acglcgalgluside_hs_g":-1.0
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"subsystem":"Transport, golgi apparatus",
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"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"GALGALGALTHCRMtg",
"name":"Galgalgalthcrm hs intracellular transport",
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"galgalgalthcrm_hs_g":1.0
},
"lower_bound":-1000.0,
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],
"sbo":"SBO:0000185"
}
},
{
"id":"GALGT2",
"name":"Beta-1,4 N-acetylgalactosaminyltransferase",
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"gm3_hs_g":-1.0,
"h_g":1.0,
"udp_g":1.0,
"udpacgal_g":-1.0
},
"lower_bound":0.0,
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"subsystem":"Sphingolipid metabolism",
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},
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"sbo":"SBO:0000176"
}
},
{
"id":"GALGT3",
"name":"Beta-1,4 N-acetylgalactosaminyltransferase",
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"gd3_hs_g":-1.0,
"h_g":1.0,
"udp_g":1.0,
"udpacgal_g":-1.0
},
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"subsystem":"Sphingolipid metabolism",
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},
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"sbo":"SBO:0000176"
}
},
{
"id":"GALNACT1g",
"name":"UDPGal-chondroitin acetylgalactosaminyltransferase I, Golgi",
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"cs_pre_g":1.0,
"h_g":1.0,
"udp_g":1.0,
"udpacgal_g":-1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"55790_AT1 or 55454_AT1",
"subsystem":"Chondroitin synthesis",
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},
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],
"sbo":"SBO:0000176"
}
},
{
"id":"GALNACT2g",
"name":"Uridine diphosphoacetylgalactosamine-chondroitin acetylgalactosaminyltransferase II, Golgi",
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"h_g":1.0,
"uacgam_g":-1.0,
"udp_g":1.0
},
"lower_bound":0.0,
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"subsystem":"Chondroitin synthesis",
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},
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"sbo":"SBO:0000176"
}
},
{
"id":"GALNACT3g",
"name":"Uridine diphosphoacetylgalactosamine-chondroitin acetylgalactosaminyltransferase II, Golgi",
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"cs_c_pre3_g":1.0,
"h_g":1.0,
"uacgam_g":-1.0,
"udp_g":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"GALNACT4g",
"name":"Uridine diphosphoacetylgalactosamine-chondroitin acetylgalactosaminyltransferase II, Golgi",
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"cs_d_pre4_g":1.0,
"h_g":1.0,
"uacgam_g":-1.0,
"udp_g":1.0
},
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"subsystem":"Chondroitin synthesis",
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},
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],
"sbo":"SBO:0000176"
}
},
{
"id":"GALNACT5g",
"name":"Uridine diphosphoacetylgalactosamine-chondroitin acetylgalactosaminyltransferase II, Golgi",
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"cs_e_pre4_g":1.0,
"h_g":1.0,
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},
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"subsystem":"Chondroitin synthesis",
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},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"GALSIDEtg",
"name":"Galactocerebroside intracellular transport",
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"galside_hs_g":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, golgi apparatus",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"GALSIDEtl",
"name":"Galactocerebroside intracellular transport",
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"galside_hs_l":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, lysosomal",
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},
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"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"GALt1r",
"name":"Galactose transport (uniport)",
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"gal_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"29988_AT1 or 6513_AT1 or 6515_AT1 or 6514_AT1 or 81031_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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"rhea":[
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"34917",
"34916",
"34915"
],
"sabiork":[
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],
"sbo":"SBO:0000185",
"seed.reaction":[
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"rxn08585"
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}
},
{
"id":"GALT2g",
"name":"UDP-D-galactose:galactosylxylose galactosyltransferase, Golgi apparatus",
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"l2xser_g":1.0,
"lxser_g":-1.0,
"udp_g":1.0,
"udpgal_g":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"126792_AT1",
"subsystem":"Chondroitin synthesis",
"notes":{
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},
"annotation":{
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],
"ec-code":[
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"kegg.reaction":[
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"GALtly",
"name":"Galactose efflux from lysosome",
"metabolites":{
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"gal_l":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, lysosomal",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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"rhea":[
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"34917",
"34916",
"34915"
],
"sabiork":[
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],
"sbo":"SBO:0000185",
"seed.reaction":[
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"rxn08585"
]
}
},
{
"id":"GAO1g",
"name":"Ganglioside O-acetylation",
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"coa_g":1.0,
"gd3_hs_g":-1.0,
"oagd3_hs_g":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9197_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
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"GAO1g"
]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"GARFT",
"name":"Phosphoribosylglycinamide formyltransferase",
"metabolites":{
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"fgam_c":1.0,
"gar_c":-1.0,
"h_c":1.0,
"thf_c":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2618_AT1 or 2618_AT2",
"subsystem":"Purine synthesis",
"notes":{
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]
},
"annotation":{
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],
"ec-code":[
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"kegg.reaction":[
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"54407_AT1 or 84889_AT1 or 11254_AT1 or 6542_AT1 or 81539_AT1 or 6541_AT1 or 55089_AT1 or (340024_AT1 and (57393_AT1 or 59272_AT1))",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PHEt4"
]
},
"annotation":{
"bigg.reaction":[
"PHEt4"
],
"metanetx.reaction":[
"MNXR102636"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHETA1m",
"name":"L-Phenylalanine:2-oxoglutarate aminotransferase, mitochondria",
"metabolites":{
"akg_m":-1.0,
"glu__L_m":1.0,
"phe__L_m":-1.0,
"phpyr_m":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6898_AT1 or 2806_AT1",
"subsystem":"Phenylalanine metabolism",
"notes":{
"original_bigg_ids":[
"PHETA1m"
]
},
"annotation":{
"bigg.reaction":[
"PHETA1m"
],
"biocyc":[
"META:PHEAMINOTRANS-RXN",
"META:RXN-10814"
],
"ec-code":[
"2.6.1.57",
"2.6.1.5",
"2.6.1.9",
"2.6.1.1"
],
"kegg.reaction":[
"R00694"
],
"metanetx.reaction":[
"MNXR126234"
],
"rhea":[
"25153",
"25155",
"25152",
"25154"
],
"sabiork":[
"1074"
],
"sbo":"SBO:0000176",
"seed.reaction":[
"rxn00493"
]
}
},
{
"id":"PHYCBOXL",
"name":"L-Phenylalanine carboxy-lyase",
"metabolites":{
"co2_c":1.0,
"h_c":-1.0,
"peamn_c":1.0,
"phe__L_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1644_AT1",
"subsystem":"Phenylalanine metabolism",
"notes":{
"original_bigg_ids":[
"PHYCBOXL"
]
},
"annotation":{
"bigg.reaction":[
"PHYCBOXL"
],
"biocyc":[
"META:PHENYLALANINE-DECARBOXYLASE-RXN"
],
"ec-code":[
"4.1.1.53",
"4.1.1.28"
],
"kegg.reaction":[
"R00699"
],
"metanetx.reaction":[
"MNXR102650"
],
"rhea":[
"19717",
"19719",
"19720",
"19718"
],
"sbo":"SBO:0000176",
"seed.reaction":[
"rxn00497"
]
}
},
{
"id":"PHYHx",
"name":"Phytanoyl-CoA dioxygenase, peroxisomal",
"metabolites":{
"akg_x":-1.0,
"co2_x":1.0,
"o2_x":-1.0,
"phyt2ohcoa_x":1.0,
"phytcoa_x":-1.0,
"succ_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5264_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"PHYHx"
]
},
"annotation":{
"bigg.reaction":[
"PHYHx"
],
"ec-code":[
"1.14.11.18"
],
"metanetx.reaction":[
"MNXR102651"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PHYQt",
"name":"Phylloquinone transport",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"phllqne_c":1.0,
"phllqne_e":-1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PHYQt"
]
},
"annotation":{
"bigg.reaction":[
"PHYQt"
],
"metanetx.reaction":[
"MNXR102652"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHYTt",
"name":"Fatty acid transport via diffusion",
"metabolites":{
"phyt_c":1.0,
"phyt_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PHYTt"
]
},
"annotation":{
"bigg.reaction":[
"PHYTt"
],
"metanetx.reaction":[
"MNXR102660"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PI345P5P",
"name":"Phosphatidylinositol-3,4,5-trisphosphate 5-phosphatase",
"metabolites":{
"h2o_c":-1.0,
"pail345p_hs_c":-1.0,
"pail34p_hs_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3633_AT1 or 27124_AT1 or 3635_AT1 or 3636_AT1 or 8871_AT1 or 56623_AT1 or 8867_AT2 or 27124_AT2 or 8867_AT1 or 3632_AT1",
"subsystem":"Inositol phosphate metabolism",
"notes":{
"original_bigg_ids":[
"PI345P5P"
]
},
"annotation":{
"bigg.reaction":[
"PI345P5P"
],
"metanetx.reaction":[
"MNXR102678"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PI34P3Pn",
"name":"Phosphatidylinositol-3,4-bisphosphate 3-phosphatase, nuclear",
"metabolites":{
"h2o_n":-1.0,
"pail34p_hs_n":-1.0,
"pail4p_hs_n":1.0,
"pi_n":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Inositol phosphate metabolism",
"notes":{
"original_bigg_ids":[
"PI34P3Pn"
]
},
"annotation":{
"bigg.reaction":[
"PI34P3Pn"
],
"metanetx.reaction":[
"MNXR102681"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PI34P4Pn",
"name":"Phosphatidylinositol-3,4-bisphosphate 4-phosphatase, nuclear",
"metabolites":{
"h2o_n":-1.0,
"pail34p_hs_n":-1.0,
"pail3p_hs_n":1.0,
"pi_n":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Inositol phosphate metabolism",
"notes":{
"original_bigg_ids":[
"PI34P4Pn"
]
},
"annotation":{
"bigg.reaction":[
"PI34P4Pn"
],
"metanetx.reaction":[
"MNXR102683"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PI45P3K",
"name":"Phosphatidylinositol 4,5-bisphosphate 3-kinase",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h_c":1.0,
"pail345p_hs_c":1.0,
"pail45p_hs_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(5291_AT1 and 5295_AT3) or (5293_AT1 and 8503_AT1) or (5296_AT1 and 5290_AT1) or (5293_AT1 and 5295_AT1) or (5293_AT1 and 5295_AT3) or (5291_AT1 and 5295_AT1) or (5296_AT1 and 5291_AT1) or (5295_AT2 and 5290_AT1) or (10870_AT1 and 5294_AT1) or (23533_AT1 and 5294_AT1) or (5295_AT2 and 5293_AT1) or (5290_AT1 and 5295_AT1) or (5290_AT1 and 8503_AT1) or (5290_AT1 and 5295_AT3) or (5291_AT1 and 8503_AT1) or (5293_AT1 and 5296_AT1) or (5295_AT2 and 5291_AT1)",
"subsystem":"Inositol phosphate metabolism",
"notes":{
"original_bigg_ids":[
"PI45P3K"
]
},
"annotation":{
"bigg.reaction":[
"PI45P3K"
],
"metanetx.reaction":[
"MNXR102714"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PI45P5P",
"name":"Phosphatidylinositol-4,5-bisphosphate 5-phosphatase",
"metabolites":{
"h2o_c":-1.0,
"pail45p_hs_c":-1.0,
"pail4p_hs_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8867_AT1 or 56623_AT1 or 4952_AT1 or 8871_AT1 or 8867_AT2 or 4952_AT2 or 3633_AT1",
"subsystem":"Inositol phosphate metabolism",
"notes":{
"original_bigg_ids":[
"PI45P5P"
]
},
"annotation":{
"bigg.reaction":[
"PI45P5P"
],
"metanetx.reaction":[
"MNXR102718"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PI4P3Kn",
"name":"Phosphatidylinositol 4-phosphate 3-kinase, nuclear",
"metabolites":{
"adp_n":1.0,
"atp_n":-1.0,
"h_n":1.0,
"pail34p_hs_n":1.0,
"pail4p_hs_n":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Inositol phosphate metabolism",
"notes":{
"original_bigg_ids":[
"PI4P3Kn"
]
},
"annotation":{
"bigg.reaction":[
"PI4P3Kn"
],
"metanetx.reaction":[
"MNXR102746"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PI4PLC",
"name":"Phosphatidylinositol 4-phosphate phospholipase C",
"metabolites":{
"dag_hs_c":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"mi14p_c":1.0,
"pail4p_hs_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"23236_AT1 or 51196_AT1 or 9651_AT1 or 113026_AT1 or 89869_AT1 or 23007_AT1 or 5334_AT1 or 5331_AT1 or 5333_AT1 or 257068_AT1 or 5332_AT1 or 23236_AT2 or 5335_AT1 or 5335_AT2 or 5336_AT1 or 5330_AT1 or 5332_AT2 or 84812_AT1",
"subsystem":"Inositol phosphate metabolism",
"notes":{
"original_bigg_ids":[
"PI4PLC"
]
},
"annotation":{
"bigg.reaction":[
"PI4PLC"
],
"metanetx.reaction":[
"MNXR102790"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PI4PLCn",
"name":"Phosphatidylinositol 4-phosphate phospholipase C, nucleus",
"metabolites":{
"dag_hs_n":1.0,
"h2o_n":-1.0,
"h_n":1.0,
"mi14p_n":1.0,
"pail4p_hs_n":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"23236_AT2 or 23236_AT1",
"subsystem":"Inositol phosphate metabolism",
"notes":{
"original_bigg_ids":[
"PI4PLCn"
]
},
"annotation":{
"bigg.reaction":[
"PI4PLCn"
],
"metanetx.reaction":[
"MNXR102790"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PI5P4Kn",
"name":"Phosphatidylinositol-5-phosphate 4-kinase, nuclear",
"metabolites":{
"adp_n":1.0,
"atp_n":-1.0,
"h_n":1.0,
"pail45p_hs_n":1.0,
"pail5p_hs_n":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Inositol phosphate metabolism",
"notes":{
"original_bigg_ids":[
"PI5P4Kn"
]
},
"annotation":{
"bigg.reaction":[
"PI5P4Kn"
],
"metanetx.reaction":[
"MNXR102818"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PIACGT",
"name":"Phosphatidylinositol N-acetylglucosaminyltransferase",
"metabolites":{
"acgpail_hs_c":1.0,
"h_c":1.0,
"pail_hs_c":-1.0,
"uacgam_c":-1.0,
"udp_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(5279_AT1 and 51227_AT2 and 5283_AT1 and 5277_AT2 and 9091_AT1 and 8818_AT1) or (5279_AT1 and 51227_AT2 and 5283_AT1 and 9091_AT1 and 5277_AT2 and 8818_AT1) or (51227_AT1 and 9091_AT2 and 5277_AT3 and 5283_AT1 and 5279_AT2 and 8818_AT1) or (51227_AT2 and 5277_AT1 and 5283_AT1 and 9091_AT1 and 8818_AT2 and 5279_AT2) or (51227_AT3 and 9091_AT2 and 5277_AT3 and 5283_AT1 and 5279_AT2 and 8818_AT1) or (5279_AT1 and 51227_AT1 and 9091_AT2 and 5277_AT1 and 5283_AT1 and 8818_AT2) or (51227_AT3 and 9091_AT2 and 5277_AT1 and 5283_AT1 and 5279_AT2 and 8818_AT1) or (51227_AT1 and 9091_AT2 and 5277_AT1 and 5283_AT1 and 8818_AT1 and 5279_AT2) or (51227_AT3 and 9091_AT2 and 5277_AT3 and 5283_AT1 and 5279_AT2 and 8818_AT2) or (51227_AT1 and 5277_AT1 and 5283_AT1 and 9091_AT1 and 5279_AT2 and 8818_AT1) or (51227_AT2 and 5283_AT1 and 9091_AT1 and 5277_AT2 and 8818_AT1 and 5279_AT2) or (5279_AT1 and 51227_AT1 and 9091_AT2 and 5277_AT3 and 5283_AT1 and 8818_AT2) or (51227_AT3 and 9091_AT2 and 5277_AT1 and 5283_AT1 and 8818_AT2 and 5279_AT2) or (5279_AT1 and 51227_AT2 and 5277_AT3 and 5283_AT1 and 9091_AT1 and 8818_AT2) or (51227_AT1 and 5277_AT3 and 5283_AT1 and 9091_AT1 and 8818_AT1 and 5279_AT2) or (51227_AT2 and 5277_AT1 and 5283_AT1 and 9091_AT1 and 8818_AT1 and 5279_AT2) or (5279_AT1 and 51227_AT2 and 9091_AT2 and 5277_AT1 and 5283_AT1 and 8818_AT1) or (5279_AT1 and 51227_AT1 and 9091_AT2 and 5283_AT1 and 5277_AT2 and 8818_AT2) or (5279_AT1 and 9091_AT2 and 51227_AT2 and 5277_AT2 and 5283_AT1 and 8818_AT2) or (5279_AT1 and 9091_AT2 and 51227_AT2 and 5277_AT1 and 5283_AT1 and 8818_AT2) or (51227_AT3 and 5283_AT1 and 5277_AT2 and 9091_AT1 and 8818_AT1 and 5279_AT2) or (51227_AT2 and 5277_AT3 and 5283_AT1 and 9091_AT1 and 8818_AT1 and 5279_AT2) or (5279_AT1 and 51227_AT1 and 5283_AT1 and 5277_AT2 and 9091_AT1 and 8818_AT2) or (51227_AT3 and 9091_AT2 and 5283_AT1 and 5277_AT2 and 5279_AT2 and 8818_AT1) or (5279_AT1 and 51227_AT3 and 9091_AT2 and 5283_AT1 and 5277_AT2 and 8818_AT2) or (51227_AT1 and 9091_AT2 and 5277_AT3 and 5283_AT1 and 8818_AT2 and 5279_AT2) or (5279_AT1 and 51227_AT3 and 5277_AT3 and 5283_AT1 and 9091_AT1 and 8818_AT2) or (51227_AT1 and 5283_AT1 and 5277_AT2 and 9091_AT1 and 5279_AT2 and 8818_AT2) or (5279_AT1 and 51227_AT3 and 5277_AT1 and 5283_AT1 and 9091_AT1 and 8818_AT1) or (5279_AT1 and 51227_AT3 and 9091_AT2 and 5277_AT1 and 5283_AT1 and 8818_AT2) or (5279_AT1 and 51227_AT1 and 5277_AT3 and 5283_AT1 and 9091_AT1 and 8818_AT1) or (5279_AT1 and 51227_AT3 and 9091_AT2 and 5277_AT3 and 5283_AT1 and 8818_AT2) or (5279_AT1 and 51227_AT2 and 5277_AT3 and 9091_AT1 and 5283_AT1 and 8818_AT1) or (51227_AT2 and 5277_AT3 and 9091_AT1 and 5283_AT1 and 8818_AT2 and 5279_AT2) or (51227_AT2 and 9091_AT2 and 5277_AT2 and 5283_AT1 and 8818_AT1 and 5279_AT2) or (51227_AT1 and 9091_AT2 and 5277_AT1 and 5283_AT1 and 8818_AT2 and 5279_AT2) or (51227_AT1 and 5277_AT3 and 5283_AT1 and 9091_AT1 and 5279_AT2 and 8818_AT2) or (5279_AT1 and 51227_AT1 and 9091_AT2 and 5277_AT3 and 5283_AT1 and 8818_AT1) or (51227_AT2 and 9091_AT2 and 5277_AT3 and 5283_AT1 and 8818_AT1 and 5279_AT2) or (51227_AT3 and 5277_AT3 and 9091_AT1 and 5283_AT1 and 5279_AT2 and 8818_AT2) or (9091_AT2 and 51227_AT2 and 5277_AT3 and 5283_AT1 and 5279_AT2 and 8818_AT2) or (5279_AT1 and 9091_AT2 and 51227_AT2 and 5277_AT3 and 5283_AT1 and 8818_AT2) or (51227_AT1 and 5277_AT1 and 5283_AT1 and 9091_AT1 and 8818_AT2 and 5279_AT2) or (5279_AT1 and 9091_AT2 and 51227_AT2 and 5277_AT3 and 5283_AT1 and 8818_AT1) or (5279_AT1 and 51227_AT1 and 9091_AT2 and 5277_AT2 and 5283_AT1 and 8818_AT1) or (51227_AT3 and 5277_AT1 and 9091_AT1 and 5283_AT1 and 5279_AT2 and 8818_AT2) or (5279_AT1 and 51227_AT1 and 9091_AT1 and 5277_AT2 and 5283_AT1 and 8818_AT1) or (51227_AT1 and 5283_AT1 and 9091_AT1 and 5277_AT2 and 5279_AT2 and 8818_AT1) or (5279_AT1 and 51227_AT3 and 9091_AT2 and 5277_AT1 and 5283_AT1 and 8818_AT1) or (51227_AT3 and 5279_AT1 and 9091_AT2 and 5277_AT3 and 5283_AT1 and 8818_AT1) or (51227_AT3 and 5277_AT3 and 5283_AT1 and 9091_AT1 and 8818_AT1 and 5279_AT2) or (51227_AT3 and 9091_AT1 and 5283_AT1 and 5277_AT2 and 5279_AT2 and 8818_AT2) or (51227_AT3 and 5277_AT1 and 5283_AT1 and 9091_AT1 and 8818_AT1 and 5279_AT2) or (5279_AT1 and 51227_AT1 and 5277_AT3 and 5283_AT1 and 9091_AT1 and 8818_AT2) or (9091_AT2 and 51227_AT2 and 5277_AT1 and 5283_AT1 and 5279_AT2 and 8818_AT1) or (51227_AT1 and 9091_AT2 and 5277_AT2 and 5283_AT1 and 8818_AT1 and 5279_AT2) or (51227_AT2 and 5283_AT1 and 5277_AT2 and 9091_AT1 and 8818_AT2 and 5279_AT2) or (9091_AT2 and 51227_AT2 and 5277_AT1 and 5283_AT1 and 8818_AT2 and 5279_AT2) or (5279_AT1 and 51227_AT3 and 5277_AT1 and 5283_AT1 and 9091_AT1 and 8818_AT2) or (5279_AT1 and 51227_AT1 and 9091_AT2 and 5277_AT1 and 5283_AT1 and 8818_AT1) or (5279_AT1 and 51227_AT3 and 5277_AT3 and 5283_AT1 and 9091_AT1 and 8818_AT1) or (5279_AT1 and 51227_AT3 and 5283_AT1 and 5277_AT2 and 9091_AT1 and 8818_AT1) or (5279_AT1 and 51227_AT2 and 5277_AT1 and 9091_AT1 and 5283_AT1 and 8818_AT2) or (51227_AT3 and 9091_AT2 and 5283_AT1 and 5277_AT2 and 8818_AT2 and 5279_AT2) or (9091_AT2 and 51227_AT2 and 5283_AT1 and 5277_AT2 and 5279_AT2 and 8818_AT2) or (5279_AT1 and 51227_AT2 and 5277_AT1 and 9091_AT1 and 5283_AT1 and 8818_AT1) or (5279_AT1 and 51227_AT3 and 9091_AT2 and 5283_AT1 and 5277_AT2 and 8818_AT1) or (5279_AT1 and 51227_AT1 and 5277_AT1 and 5283_AT1 and 9091_AT1 and 8818_AT1) or (5279_AT1 and 9091_AT2 and 51227_AT2 and 5277_AT2 and 5283_AT1 and 8818_AT1) or (5279_AT1 and 51227_AT3 and 9091_AT1 and 5277_AT2 and 5283_AT1 and 8818_AT2) or (51227_AT1 and 9091_AT2 and 5283_AT1 and 5277_AT2 and 8818_AT2 and 5279_AT2) or (5279_AT1 and 51227_AT1 and 5277_AT1 and 9091_AT1 and 5283_AT1 and 8818_AT2)",
"subsystem":"Phosphatidylinositol phosphate metabolism",
"notes":{
"original_bigg_ids":[
"PIACGT"
]
},
"annotation":{
"bigg.reaction":[
"PIACGT"
],
"metanetx.reaction":[
"MNXR102820"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PROSTGE1t",
"name":"Prostaglandin transport via bicarbonate countertransport",
"metabolites":{
"hco3_c":-1.0,
"hco3_e":1.0,
"prostge1_c":1.0,
"prostge1_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6578_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PROSTGE1t"
]
},
"annotation":{
"bigg.reaction":[
"PROSTGE1t"
],
"metanetx.reaction":[
"MNXR103199"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PROSTGE2t",
"name":"Prostaglandin transport via bicarbonate countertransport",
"metabolites":{
"hco3_c":-1.0,
"hco3_e":1.0,
"prostge2_c":1.0,
"prostge2_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28231_AT1 or 6578_AT1 or 28232_AT1 or 6579_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PROSTGE2t"
]
},
"annotation":{
"bigg.reaction":[
"PROSTGE2t"
],
"metanetx.reaction":[
"MNXR103201"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PIK4n",
"name":"Phosphatidylinositol 4-kinase, nuclear",
"metabolites":{
"adp_n":1.0,
"atp_n":-1.0,
"h_n":1.0,
"pail4p_hs_n":1.0,
"pail_hs_n":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Inositol phosphate metabolism",
"notes":{
"original_bigg_ids":[
"PIK4n"
]
},
"annotation":{
"bigg.reaction":[
"PIK4n"
],
"metanetx.reaction":[
"MNXR102825"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PIK5n",
"name":"Phosphatidylinositol 5-kinase, nuclear",
"metabolites":{
"adp_n":1.0,
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{
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},
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{
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{
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},
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},
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"21134",
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}
},
{
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},
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}
},
{
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}
},
{
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}
},
{
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},
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}
},
{
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},
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}
},
{
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}
},
{
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}
},
{
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}
},
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"h_c":1.0,
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"xylu__D_c":-1.0
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},
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],
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"10965",
"10964",
"10967"
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}
},
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},
{
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},
{
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}
},
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},
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}
},
{
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}
},
{
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}
},
{
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}
},
{
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"upper_bound":1000.0,
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}
},
{
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"upper_bound":1000.0,
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},
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}
},
{
"id":"EX_dhap_e",
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"upper_bound":1000.0,
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}
},
{
"id":"EX_dttp_e",
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"upper_bound":1000.0,
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},
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}
},
{
"id":"EX_isomal_e",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
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},
{
"id":"EX_HC00250_e",
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}
},
{
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}
},
{
"id":"EX_HC01440_e",
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},
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},
{
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},
{
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"gene_reaction_rule":"",
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},
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}
},
{
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"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
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}
},
{
"id":"EX_orot_e",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
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],
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}
},
{
"id":"EX_udpg_e",
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"h2o_x":1.0
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"HC01406_m":1.0,
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"name":"(S)-Hydroxyhexanoyl Coenzyme A Hydro-Lyase ",
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"hx2coa_m":-1.0
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"h2o_e":-1.0
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"sbo":"SBO:0000176"
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"cholcoaone_x":1.0,
"h_x":1.0,
"nad_x":-1.0,
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},
{
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"h2o_x":-1.0
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},
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},
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},
{
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},
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},
{
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},
{
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}
},
{
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}
},
{
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},
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}
},
{
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},
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},
{
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},
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},
{
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},
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}
},
{
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},
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}
},
{
"id":"r0899",
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},
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}
},
{
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},
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},
{
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}
},
{
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},
{
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},
{
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"28838",
"28835"
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}
},
{
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}
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{
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},
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},
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},
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},
{
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},
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},
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},
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},
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},
{
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},
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},
{
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}
},
{
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{
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{
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{
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{
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{
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{
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"annotation":{
"bigg.reaction":[
"RE3180C"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC122m",
"name":"Isomerization (C12:2), Mitochondrial",
"metabolites":{
"2ddecdicoa_m":1.0,
"3ddecdicoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1632_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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"FAOXC122m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC122m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"C6DCCACT",
"name":"Transport of adipoyl carnitine into cytosol",
"metabolites":{
"c6dc_c":1.0,
"c6dc_x":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"788_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C6DCCACT"
]
},
"annotation":{
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"C6DCCACT"
],
"metanetx.reaction":[
"MNXR96424"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C6DCc",
"name":"Production of adipoylcarnitine",
"metabolites":{
"adpcoa_c":-1.0,
"c6dc_c":1.0,
"coa_c":1.0,
"crn_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1374_AT1 or 1375_AT1 or 126129_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C6DCc"
]
},
"annotation":{
"bigg.reaction":[
"C6DCc"
],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"C80CPT1",
"name":"Production of octanoylcarnitine",
"metabolites":{
"c8crn_c":1.0,
"coa_c":1.0,
"crn_c":-1.0,
"occoa_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1374_AT1 or 1375_AT1 or 126129_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C80CPT1"
]
},
"annotation":{
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"C80CPT1"
],
"metanetx.reaction":[
"MNXR96425"
],
"sbo":"SBO:0000176"
}
},
{
"id":"C81CRNe",
"name":"Transport of Octenoyl Carnitine into the Extra Cellular Space",
"metabolites":{
"c81crn_c":-1.0,
"c81crn_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C81CRNe"
]
},
"annotation":{
"bigg.reaction":[
"C81CRNe"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SK_dd2coa_c",
"name":"Sink for Trans-Dodec-2-Enoyl Coenzyme A",
"metabolites":{
"dd2coa_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_dd2coa[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_dd2coa_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"DDCRNe",
"name":"Transport of 3-hydroxydodecanoyl carnitine into extra cellular space",
"metabolites":{
"3ddcrn_c":-1.0,
"3ddcrn_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
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"DDCRNe"
]
},
"annotation":{
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"DDCRNe"
],
"metanetx.reaction":[
"MNXR97212"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SK_decdicoa_c",
"name":"Sink for 2, 6-Dodecadienoyl Coenzyme A",
"metabolites":{
"decdicoa_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_decdicoa[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_decdicoa_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"DOCOSACT",
"name":"Activation of docosanoic acid for transport",
"metabolites":{
"amp_c":1.0,
"atp_c":-1.0,
"coa_c":-1.0,
"docosac_c":-1.0,
"docoscoa_c":1.0,
"ppi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"23205_AT1 or 81616_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"DOCOSACT"
]
},
"annotation":{
"bigg.reaction":[
"DOCOSACT"
],
"metanetx.reaction":[
"MNXR97681"
],
"sbo":"SBO:0000176"
}
},
{
"id":"DOCOSACTDe",
"name":"Uptake of docosanoic acid by cells by diffusion",
"metabolites":{
"docosac_c":1.0,
"docosac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"DOCOSACTDe"
]
},
"annotation":{
"bigg.reaction":[
"DOCOSACTDe"
],
"metanetx.reaction":[
"MNXR97682"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DOCOSACTDr",
"name":"Transport of Docosanoic Acid by Diffusion",
"metabolites":{
"docosac_c":-1.0,
"docosac_r":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"DOCOSACTDr"
]
},
"annotation":{
"bigg.reaction":[
"DOCOSACTDr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DOCOSCOAtxc",
"name":"Transport of behenoylcoa into peroxisomes",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"docoscoa_c":-1.0,
"docoscoa_x":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"215_AT1 and 225_AT1",
"subsystem":"Transport, peroxisomal",
"notes":{
"original_bigg_ids":[
"DOCOSCOAtxc"
]
},
"annotation":{
"bigg.reaction":[
"DOCOSCOAtxc"
],
"metanetx.reaction":[
"MNXR97683"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_3hdececrn_e",
"name":"Exchange of 3-Hydroxyhexadecenoyl Carnitine",
"metabolites":{
"3hdececrn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_3hdececrn[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_3hdececrn_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_3ivcrn_e",
"name":"Exchange of 3-Hydroxy-Isovaleryl Carnitine",
"metabolites":{
"3ivcrn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_3ivcrn[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_3ivcrn_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_3thexddcoacrn_e",
"name":"Exchange of 3-Hydroxy Trans7, 10-Hexadecadienoyl Carnitine",
"metabolites":{
"3thexddcoacrn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_3thexddcoacrn[e]"
]
},
"annotation":{
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"EX_3thexddcoacrn_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_c101crn_e",
"name":"Exchange of Decenoyl Carnitine",
"metabolites":{
"c101crn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_c101crn[e]"
]
},
"annotation":{
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"EX_c101crn_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_c10crn_e",
"name":"Exchange of Decanoyl Carnitine",
"metabolites":{
"c10crn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_c10crn[e]"
]
},
"annotation":{
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"EX_c10crn_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_c10dc_e",
"name":"Exchange reaction for sebacoyl carnitine",
"metabolites":{
"c10dc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_c10dc[e]"
]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_c12dc_e",
"name":"Exchange of Dodecanedioyl Carnitine",
"metabolites":{
"c12dc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_c12dc[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_c12dc_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_c3dc_e",
"name":"Exchange of Malonyl Carnitine",
"metabolites":{
"c3dc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_c3dc[e]"
]
},
"annotation":{
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],
"sbo":"SBO:0000627"
}
},
{
"id":"DOCO13EFATP",
"name":"Absorption Or Uptake of 13-Docosenoic Acid into Cells",
"metabolites":{
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"atp_c":-1.0,
"coa_c":-1.0,
"doco13ac_e":-1.0,
"doco13ecoa_c":1.0,
"ppi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"376497_AT1 or 11001_AT1 or 11000_AT1 or 10999_AT1 or 10998_AT1 or 28965_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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"DOCO13EFATP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"FAOXC16C16OHm",
"name":"Fatty Acid Beta Oxidation (C16->C16Oh), Mitochondrial",
"metabolites":{
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"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"pmtcoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_c4dc_e",
"name":"Exchange reaction for succinyl carnitine",
"metabolites":{
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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},
"annotation":{
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"metanetx.reaction":[
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],
"sbo":"SBO:0000627"
}
},
{
"id":"FAOXC123C102x",
"name":"Fatty Acid Beta Oxidation (C12:3->C10:2), Peroxisomal",
"metabolites":{
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"accoa_x":1.0,
"coa_x":-1.0,
"dec47dicoa_x":1.0,
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"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC16DCC14DCx",
"name":"Fatty Acid Beta Oxidation (C16Dc->C14Dc), Peroxisomal",
"metabolites":{
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"c14dccoa_x":1.0,
"coa_x":-1.0,
"h2o2_x":1.0,
"h2o_x":-1.0,
"h_x":1.0,
"hexdicoa_x":-1.0,
"nad_x":-1.0,
"nadh_x":1.0,
"o2_x":-1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"51_AT1 and 1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
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},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC16DCr",
"name":"Fatty Acid Activation (C16Dc), Endoplasmatic Reticulum",
"metabolites":{
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"atp_r":-1.0,
"coa_r":-1.0,
"hexdiac_r":-1.0,
"hexdicoa_r":1.0,
"ppi_r":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51703_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC16OHC16r",
"name":"Fatty Acid Omega Oxidation (C16->W-Ohc16), Endoplasmatic Reticulum",
"metabolites":{
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"hdca_r":-1.0,
"nadp_r":1.0,
"nadph_r":-1.0,
"o2_r":-1.0,
"whhdca_r":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8529_AT1 and 4051_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC170150m",
"name":"Beta oxidation of long chain fatty acid (odd chain)",
"metabolites":{
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"coa_m":-1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"hpdcacoa_m":-1.0,
"nad_m":-1.0,
"nadh_m":1.0,
"ptdcacoa_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1 and 3032_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC181C181OHm",
"name":"Fatty Acid Beta Oxidation (C18:1->C18:1Oh), Mitochondrial",
"metabolites":{
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"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"octdececoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC123m",
"name":"Isomerization (C12:3), Mitochondrial",
"metabolites":{
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"3dodtricoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1632_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC182C162m",
"name":"Fatty Acid Beta Oxidation (C18:2->C16:2), Mitochondrial",
"metabolites":{
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"coa_m":-1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"hexddcoa_m":1.0,
"lnlccoa_m":-1.0,
"nad_m":-1.0,
"nadh_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1 and 3032_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC183C163m",
"name":"Fatty Acid Beta Oxidation (C18:3->C16:3), Mitochondrial",
"metabolites":{
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"coa_m":-1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"hexdtrcoa_m":1.0,
"lnlncacoa_m":-1.0,
"nad_m":-1.0,
"nadh_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1 and 3032_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_c5dc_e",
"name":"Exchange of Glutaryl Carnitine",
"metabolites":{
"c5dc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000627"
}
},
{
"id":"FAOXC120100x",
"name":"Beta oxidation of long chain fatty acid",
"metabolites":{
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"coa_x":-1.0,
"dcacoa_x":1.0,
"ddcacoa_x":-1.0,
"h2o2_x":1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0,
"o2_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1 and 1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_c6crn_e",
"name":"Exchange of Hexanoyl Carnitine",
"metabolites":{
"c6crn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_c8crn_e",
"name":"Exchange reaction for octanoyl carnitine",
"metabolites":{
"c8crn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_decdicrn_e",
"name":"Exchange of Decadienoyl Carnitine",
"metabolites":{
"decdicrn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_decdicrn[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_decdicrn_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"FAOXC184C163x",
"name":"Fatty Acid Beta Oxidation (C18:4->C16:3), Peroxisomal",
"metabolites":{
"2octdectecoa_x":-1.0,
"4hexdtricoa_x":1.0,
"accoa_x":1.0,
"coa_x":-1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC184C163x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC184C163x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC184C164m",
"name":"Fatty Acid Beta Oxidation (C18:4->C16:4), Mitochondrial",
"metabolites":{
"4hexdtetcoa_m":1.0,
"accoa_m":1.0,
"coa_m":-1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"nad_m":-1.0,
"nadh_m":1.0,
"strdnccoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1 and 3032_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC184C164m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC184C164m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC184m",
"name":"Isomerization of (C18:4), Mitochondrial",
"metabolites":{
"2octdectecoa_m":1.0,
"3octdectecoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1632_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC184m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC184m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC185C164m",
"name":"Fatty Acid Beta Oxidation (C18:5->C16:4), Mitochondrial",
"metabolites":{
"2octpencoa_m":-1.0,
"4hexdtetcoa_m":1.0,
"accoa_m":1.0,
"coa_m":-1.0,
"h2o_m":-1.0,
"h_m":1.0,
"nad_m":-1.0,
"nadh_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1 and 3032_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC185C164m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC185C164m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC18C18OHm",
"name":"Fatty Acid Beta Oxidation (C18->C18Oh), Mitochondrial",
"metabolites":{
"3hodcoa_m":1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"stcoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC18C18OHm"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC18C18OHm"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_docosac_e",
"name":"Exchange reaction for Behenic acid",
"metabolites":{
"docosac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_docosac[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_docosac_e"
],
"metanetx.reaction":[
"MNXR97682"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_docosdiac_e",
"name":"Exchange of Docosanedioic Acid",
"metabolites":{
"docosdiac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_docosdiac[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_docosdiac_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_dca_e",
"name":"Decanoate (n-C10:0) exchange",
"metabolites":{
"dca_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_dca[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_dca_e"
],
"metanetx.reaction":[
"MNXR97181"
],
"sbo":"SBO:0000627"
}
},
{
"id":"FAOXC204C205x",
"name":"Fatty Acid Beta Oxidation (C20:4->C20:5), Peroxisomal",
"metabolites":{
"eipencoa_x":1.0,
"eitetcoa_x":-1.0,
"h2o2_x":1.0,
"o2_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC204C205x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC204C205x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC101C8x",
"name":"Fatty Acid Beta Oxidation (C10:1->C8:0), Peroxisomal",
"metabolites":{
"accoa_x":1.0,
"coa_x":-1.0,
"dc2coa_x":-1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0,
"occoa_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC101C8x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC101C8x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC12DCC10DCx",
"name":"Fatty Acid Beta Oxidation (C12Dc->C10Dc), Peroxisomal",
"metabolites":{
"accoa_x":1.0,
"c12dccoa_x":-1.0,
"coa_x":-1.0,
"h2o2_x":1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0,
"o2_x":-1.0,
"sebcoa_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1 and 1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC12DCC10DCx"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC12DCC10DCx"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC101x",
"name":"Isomerization (C10:1), Peroxisomal",
"metabolites":{
"dc2coa_x":1.0,
"dece3coa_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1962_AT1 or 10455_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC101x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC101x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC102C101m",
"name":"Reduction (C10:2->C10:1), Mitochondrial",
"metabolites":{
"dec24dicoa_m":-1.0,
"dece3coa_m":1.0,
"h_m":-1.0,
"nadp_m":1.0,
"nadph_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1666_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC102C101m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC102C101m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC102C81m",
"name":"Fatty Acid Beta Oxidation (C10:2->C8:1), Mitochondrial",
"metabolites":{
"2decdicoa_m":-1.0,
"accoa_m":1.0,
"coa_m":-1.0,
"h2o_m":-1.0,
"h_m":1.0,
"nad_m":-1.0,
"nadh_m":1.0,
"octe5coa_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1892_AT1 and 3033_AT1 and 10449_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC102C81m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC102C81m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC221C201x",
"name":"Fatty Acid Beta Oxidation (C22:1->C20:1), Peroxisomal",
"metabolites":{
"accoa_x":1.0,
"coa_x":-1.0,
"doco13ecoa_x":-1.0,
"ei11ecoa_x":1.0,
"h2o2_x":1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0,
"o2_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1 and 1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC221C201x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC221C201x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC225C204m",
"name":"Fatty Acid Beta Oxidation (C22:5->C20:4), Mitochondrial",
"metabolites":{
"2docopencoa_m":-1.0,
"accoa_m":1.0,
"coa_m":-1.0,
"eitetcoa_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"nad_m":-1.0,
"nadh_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3030_AT1 and 3032_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC225C204m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC225C204m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC225C226m",
"name":"Fatty Acid Beta Oxidation (C22:5->C22:6), Mitochondrial",
"metabolites":{
"dcsptn1coa_m":-1.0,
"docohexcoa_m":1.0,
"fad_m":-1.0,
"fadh2_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC225C226m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC225C226m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC225C226x",
"name":"Fatty Acid Beta Oxidation (C22:5->C22:6), Peroxisomal",
"metabolites":{
"dcsptn1coa_x":-1.0,
"docohexcoa_x":1.0,
"h2o2_x":1.0,
"o2_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC225C226x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC225C226x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC102C81x",
"name":"Fatty Acid Beta Oxidation (C10:2->C8:1), Peroxisomal",
"metabolites":{
"2decdicoa_x":-1.0,
"accoa_x":1.0,
"coa_x":-1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0,
"octe5coa_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC102C81x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC102C81x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC102m",
"name":"Isomerization (C10:2), Mitochondrial",
"metabolites":{
"2decdicoa_m":1.0,
"3decdicoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1632_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC102m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC102m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC102x",
"name":"Isomerization (C10:2), Peroxisomal",
"metabolites":{
"2decdicoa_x":1.0,
"3decdicoa_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1962_AT1 or 10455_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC102x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC102x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC226C225m",
"name":"Fatty Acid Beta Oxidation (C22:6->C22:5), Mitochondrial",
"metabolites":{
"3docopencoa_m":1.0,
"docohexcoa_m":-1.0,
"h_m":-1.0,
"nadp_m":1.0,
"nadph_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1666_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC226C225m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC226C225m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC227C226m",
"name":"Fatty Acid Beta Oxidation (C22:7->C22:6), Mitochondrial",
"metabolites":{
"docohepcoa_m":-1.0,
"docosahexcoa_m":1.0,
"h_m":-1.0,
"nadp_m":1.0,
"nadph_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1666_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC227C226m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC227C226m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC12DCc",
"name":"Formation of Dodecanedioyl Carnitine",
"metabolites":{
"c12dc_c":1.0,
"c12dccoa_c":-1.0,
"coa_c":1.0,
"crn_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1374_AT1 or 1375_AT1 or 126129_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC12DCc"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC12DCc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC22C22DCHYr",
"name":"Fatty Acid Omega Oxidation by Hydroxylases (C22->C22Dc), Endoplasmatic Reticulum",
"metabolites":{
"docosac_r":-1.0,
"docosdiac_r":1.0,
"h2o_r":4.0,
"h_r":-2.0,
"nadp_r":3.0,
"nadph_r":-3.0,
"o2_r":-3.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8529_AT1 and 4051_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC22C22DCHYr"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC22C22DCHYr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC22OHC22r",
"name":"Fatty Acid Omega Oxidation (C22->W-Ohc22), Endoplasmatic Reticulum",
"metabolites":{
"docosac_r":-1.0,
"h2o_r":1.0,
"nadp_r":1.0,
"nadph_r":-1.0,
"o2_r":-1.0,
"omhdocosac_r":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8529_AT1 and 4051_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC22OHC22r"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC22OHC22r"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC103C102m",
"name":"Fatty Acid Beta Oxidation (C10:3->C10:2), Mitochondrial",
"metabolites":{
"3decdicoa_m":1.0,
"dectricoa_m":-1.0,
"h_m":-1.0,
"nadp_m":1.0,
"nadph_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1666_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC103C102m"
]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC103C102x",
"name":"Fatty Acid Beta Oxidation (C10:3->C10:2), Peroxisomal",
"metabolites":{
"3decdicoa_x":1.0,
"dectricoa_x":-1.0,
"h_x":-1.0,
"nadp_x":1.0,
"nadph_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"26063_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC103C102x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC103C102x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC10C10OHm",
"name":"Fatty Acid Beta Oxidation (C10->Ohc10), Mitochondrial",
"metabolites":{
"3hdcoa_m":1.0,
"dcacoa_m":-1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"34_AT1 and 1892_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC10080m",
"name":"Beta oxidation of long chain fatty acid",
"metabolites":{
"accoa_m":1.0,
"coa_m":-1.0,
"dcacoa_m":-1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"nad_m":-1.0,
"nadh_m":1.0,
"occoa_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"34_AT1 and 1892_AT1 and 3033_AT1 and 10449_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC10080x",
"name":"Beta oxidation of long chain fatty acid",
"metabolites":{
"accoa_x":1.0,
"coa_x":-1.0,
"dcacoa_x":-1.0,
"h2o2_x":1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0,
"o2_x":-1.0,
"occoa_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1 and 1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC121C101m",
"name":"Fatty Acid Beta Oxidation (C12:1->C10:1), Mitochondrial",
"metabolites":{
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"coa_m":-1.0,
"dd5ecoa_m":-1.0,
"dece3coa_m":1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
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"lower_bound":0.0,
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"gene_reaction_rule":"34_AT1 and 1892_AT1 and 3033_AT1 and 10449_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
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"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC3DC",
"name":"Malonylcoa->Malonylcarnitine",
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"coa_c":1.0,
"crn_c":-1.0,
"malcoa_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1374_AT1 or 1375_AT1 or 126129_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
"FAOXC3DC"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC4020m",
"name":"Beta oxidation of med/long chain fatty acid",
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"coa_m":-1.0,
"fad_m":-1.0,
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"35_AT1 and 1892_AT1 and 3033_AT1 and 10449_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC4C4DCc",
"name":"Succ->C4Dcc",
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"coa_c":1.0,
"crn_c":-1.0,
"succoa_c":-1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1374_AT1 or 1375_AT1 or 126129_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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},
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}
},
{
"id":"FAOXC61m",
"name":"Isomerization (C6:1), Mitochondrial",
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"hx2coa_m":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1632_AT1",
"subsystem":"Fatty acid oxidation",
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC6C4x",
"name":"Fatty Acid Beta Oxidation (C6->C4), Peroxisomal",
"metabolites":{
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"btcoa_x":1.0,
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"subsystem":"Fatty acid oxidation",
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},
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"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC6DCC4DCx",
"name":"Fatty Acid Beta Oxidation (C6Dc->C4Dc), Peroxisomal",
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"lower_bound":0.0,
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"gene_reaction_rule":"51_AT1 and 1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"EX_dchac_e",
"name":"Exchange reaction for deoxycholic acid",
"metabolites":{
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_dchac[e]"
]
},
"annotation":{
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"metanetx.reaction":[
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],
"sbo":"SBO:0000627"
}
},
{
"id":"FAOXC12DCx",
"name":"Production of Dodecanedioyl Carnitine",
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"c12dccoa_x":-1.0,
"coa_x":1.0,
"crn_x":-1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"54677_AT1",
"subsystem":"Fatty acid oxidation",
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]
},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC81C61m",
"name":"Fatty Acid Beta Oxidation (C8:1->C6:1), Mitochondrial",
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"octe5coa_m":-1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"34_AT1 and 1892_AT1 and 3033_AT1 and 10449_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC8C6m",
"name":"Fatty Acid Beta Oxidation (C8->C6), Mitochondrial",
"metabolites":{
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"coa_m":-1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"hxcoa_m":1.0,
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"nadh_m":1.0,
"occoa_m":-1.0
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"subsystem":"Fatty acid oxidation",
"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC8DCC6DCx",
"name":"Fatty Acid Beta Oxidation (C8Dc->C6Dc), Peroxisomal",
"metabolites":{
"accoa_x":1.0,
"adpcoa_x":1.0,
"coa_x":-1.0,
"h2o2_x":1.0,
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"lower_bound":0.0,
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"subsystem":"Fatty acid oxidation",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC13BRC11BRx",
"name":"Fatty Acid Beta Oxidation (C13Br->C11Br), Peroxisomal",
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"coa_x":-1.0,
"h2o2_x":1.0,
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"subsystem":"Fatty acid oxidation",
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},
{
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"lower_bound":0.0,
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},
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"sbo":"SBO:0000176"
}
},
{
"id":"FAOXOHC16C16DCc",
"name":"Fatty Acid Omega Oxidation (W-Ohc16->C16Dc)",
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"h_c":2.0,
"hexdiac_c":1.0,
"nad_c":-2.0,
"nadh_c":2.0,
"whhdca_c":-1.0
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"lower_bound":0.0,
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"subsystem":"Fatty acid oxidation",
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},
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"sbo":"SBO:0000176"
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},
{
"id":"FAOXOHC22C22DCc",
"name":"Fatty Acid Omega Oxidation (W-Ohc22->C22Dc)",
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"h2o_c":-1.0,
"h_c":2.0,
"nad_c":-2.0,
"nadh_c":2.0,
"omhdocosac_c":-1.0
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},
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},
{
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"h_c":1.0,
"pi_c":1.0,
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"lower_bound":0.0,
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]
},
"annotation":{
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"metanetx.reaction":[
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"sbo":"SBO:0000185"
}
},
{
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"name":"Production of suberyl carnitine",
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},
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},
{
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},
{
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"sbo":"SBO:0000176"
}
},
{
"id":"SUCCCROT",
"name":"Production of succinyl carnitine",
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"coa_x":1.0,
"crn_x":-1.0,
"succoa_x":-1.0
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"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC141C141OHm",
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},
{
"id":"TDCRNe",
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},
{
"id":"FAOXC142C122m",
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},
{
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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"notes":{
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},
"annotation":{
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"sbo":"SBO:0000632"
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},
{
"id":"SK_tetdece1coa_c",
"name":"Sink for Tetradecenoyl Coenzyme A",
"metabolites":{
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"lower_bound":-1000.0,
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"annotation":{
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},
{
"id":"TETDECE1CRNe",
"name":"Transport of Tetradecenoyl Carnitine into Extra Cellular Space",
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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"notes":{
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},
"annotation":{
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"sbo":"SBO:0000185"
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},
{
"id":"TIGCRNe",
"name":"Transport of tiglyl carnitine into the extra cellular fluid",
"metabolites":{
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"lower_bound":0.0,
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"gene_reaction_rule":"",
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"sbo":"SBO:0000185"
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},
{
"id":"FAOXC142C122x",
"name":"Fatty Acid Beta Oxidation (C14:2->C12:2), Peroxisomal",
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"lower_bound":0.0,
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},
{
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"name":"Fatty Acid Beta Oxidation (C14:3->C12:3), Mitochondrial",
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"lower_bound":0.0,
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"gene_reaction_rule":"37_AT1 and 3030_AT1 and 3032_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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"sbo":"SBO:0000176"
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},
{
"id":"FAOXC143C123x",
"name":"Fatty Acid Beta Oxidation (C14:3->C12:3), Peroxisomal",
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"lower_bound":0.0,
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"gene_reaction_rule":"51_AT1 and 1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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},
{
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"coa_m":-1.0,
"ddcacoa_m":1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"nad_m":-1.0,
"nadh_m":1.0,
"tdcoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1 and 3032_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC14C12m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC140120m"
],
"metanetx.reaction":[
"MNXR99282"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC14C14OHm",
"name":"Fatty Acid Beta Oxidation (C14->C14Oh), Mitochondrial",
"metabolites":{
"3htdcoa_m":1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"tdcoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC14C14OHm"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC14C14OHm"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC15ATPx",
"name":"Fatty acid activation(C15)x",
"metabolites":{
"amp_x":1.0,
"atp_x":-1.0,
"coa_x":-1.0,
"ppi_x":1.0,
"prist_x":-1.0,
"pristcoa_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11001_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC15ATPx"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC15ATPx"
],
"metanetx.reaction":[
"MNXR99180"
],
"sbo":"SBO:0000176"
}
},
{
"id":"34DHPHELAT1tc",
"name":"Transport of 3,4-Dihydroxy-L-phenylalanine by LAT1 in association with 4F2hc, across the apical surface of the memebranes.",
"metabolites":{
"34dhphe_c":1.0,
"34dhphe_e":-1.0,
"leu__L_c":-1.0,
"leu__L_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8140_AT1 and 6520_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"34DHPHELAT1tc"
]
},
"annotation":{
"bigg.reaction":[
"34DHPHELAT1tc"
],
"metanetx.reaction":[
"MNXR94837"
],
"sbo":"SBO:0000185"
}
},
{
"id":"4OHPROIMINOtc",
"name":"Transport of L-OH-Proline by the apical IMINO amino acid transporters in kidney and intestine",
"metabolites":{
"4hpro_LT_c":1.0,
"4hpro_LT_e":-1.0,
"cl_c":1.0,
"cl_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"54716_AT1 and 57393_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"4OHPROIMINOtc"
]
},
"annotation":{
"bigg.reaction":[
"4OHPROIMINOtc"
],
"metanetx.reaction":[
"MNXR95046"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ALAALACNc",
"name":"Hydrolysis of Alanylalanine",
"metabolites":{
"ala__L_c":2.0,
"alaala_c":-1.0,
"h2o_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"84735_AT1 or 55748_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ALAALACNc"
]
},
"annotation":{
"bigg.reaction":[
"ALAALACNc"
],
"metanetx.reaction":[
"MNXR95674"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXOHMC10DC10c",
"name":"Fatty acid omega oxidation(w-OHMC10-->DC10)c",
"metabolites":{
"h2o_c":-1.0,
"h_c":3.0,
"nad_c":-2.0,
"nadh_c":2.0,
"omhdecacid_c":-1.0,
"sebacid_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"128_AT1 and 224_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXOHMC10DC10c"
]
},
"annotation":{
"bigg.reaction":[
"FAOXOHMC10DC10c"
],
"metanetx.reaction":[
"MNXR99381"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXTC162TC142m",
"name":"Fatty Acid Beta Oxidation Trans (C16:2->C14:2), Mitochondrial",
"metabolites":{
"accoa_m":1.0,
"coa_m":-1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"nad_m":-1.0,
"nadh_m":1.0,
"thexddcoa_m":-1.0,
"ttetddcoa_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1 and 3032_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXTC162TC142m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXTC162TC142m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXTC182TC162m",
"name":"Fatty Acid Beta Oxidation Trans (C18:2->C16:2), Mitochondrial",
"metabolites":{
"accoa_m":1.0,
"coa_m":-1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"lneldccoa_m":-1.0,
"nad_m":-1.0,
"nadh_m":1.0,
"thexddcoa_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1 and 3032_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXTC182TC162m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXTC182TC162m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"ALAALAPEPT1tc",
"name":"Transport of Alanylalanine by the apical PEPT1 amino acid transporters across the brush border cells of the enterocytes of the intestine and renal cells",
"metabolites":{
"alaala_c":1.0,
"alaala_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ALAALAPEPT1tc"
]
},
"annotation":{
"bigg.reaction":[
"ALAALAPEPT1tc"
],
"metanetx.reaction":[
"MNXR95676"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ALAyLATthc",
"name":"Transport of Alanine by y+LAT1 or y+LAT2 with co-transporter of h in small intestine and kidney",
"metabolites":{
"ala__L_c":1.0,
"ala__L_e":-1.0,
"arg__L_c":-1.0,
"arg__L_e":1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(6520_AT1 and 9057_AT1) or (9056_AT1 and 6520_AT1)",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ALAyLATthc"
]
},
"annotation":{
"bigg.reaction":[
"ALAyLATthc"
],
"metanetx.reaction":[
"MNXR95707"
],
"sbo":"SBO:0000185"
}
},
{
"id":"FAOXC15BRC13BRx",
"name":"Fatty Acid Beta Oxidation (C15Br->C13Br), Peroxisomal",
"metabolites":{
"coa_x":-1.0,
"h2o2_x":1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0,
"o2_x":-1.0,
"ppcoa_x":1.0,
"pristcoa_x":-1.0,
"tmtrdcoa_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8310_AT1 and 1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC15BRC13BRx"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC15BRC13BRx"
],
"sbo":"SBO:0000176"
}
},
{
"id":"ARGATB0tc",
"name":"Transport of L-Arginine into the intestinal cells by ATB0 transporter",
"metabolites":{
"arg__L_c":1.0,
"arg__L_e":-1.0,
"cl_c":1.0,
"cl_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11254_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGATB0tc"
]
},
"annotation":{
"bigg.reaction":[
"ARGATB0tc"
],
"metanetx.reaction":[
"MNXR95939"
],
"sbo":"SBO:0000185"
}
},
{
"id":"FOAXC122C101x",
"name":"Fatty Acid Beta Oxidation (C12:2->C10:1), Peroxisomal",
"metabolites":{
"2ddecdicoa_x":-1.0,
"accoa_x":1.0,
"coa_x":-1.0,
"dece4coa_x":1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FOAXC122C101x"
]
},
"annotation":{
"bigg.reaction":[
"FOAXC122C101x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC15NADx",
"name":"Fatty acid alpha oxidation(2-Hydroxyphytanoyl-CoA)(nad)x",
"metabolites":{
"forcoa_x":1.0,
"h2o_x":-1.0,
"h_x":2.0,
"nad_x":-1.0,
"nadh_x":1.0,
"phyt2ohcoa_x":-1.0,
"prist_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"26061_AT1 and 224_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC15NADx"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC15NADx"
],
"metanetx.reaction":[
"MNXR99293"
],
"sbo":"SBO:0000176"
}
},
{
"id":"ASNATB0tc",
"name":"Transport of L-Asparagine into the intestinal cells by ATB0 transporter",
"metabolites":{
"asn__L_c":1.0,
"asn__L_e":-1.0,
"cl_c":1.0,
"cl_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11254_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASNATB0tc"
]
},
"annotation":{
"bigg.reaction":[
"ASNATB0tc"
],
"metanetx.reaction":[
"MNXR96053"
],
"sbo":"SBO:0000185"
}
},
{
"id":"BALAt2r",
"name":"Beta Alanine transport in via proton symport",
"metabolites":{
"ala_B_c":1.0,
"ala_B_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"206358_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"BALAPAT1tc"
]
},
"annotation":{
"bigg.reaction":[
"BALAt2r"
],
"biocyc":[
"META:RXN0-5201"
],
"metanetx.reaction":[
"MNXR96212"
],
"rhea":[
"29460",
"29459",
"29462",
"29461"
],
"sbo":"SBO:0000185",
"seed.reaction":[
"rxn05495",
"rxn08174"
]
}
},
{
"id":"HDCACBP",
"name":"Transport of (S)-3-Hydroxydecanoyl-CoA from mitochondria into the cytosol",
"metabolites":{
"3hdcoa_c":1.0,
"3hdcoa_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1622_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"HDCACBP"
]
},
"annotation":{
"bigg.reaction":[
"HDCACBP"
],
"metanetx.reaction":[
"MNXR100582"
],
"sbo":"SBO:0000185"
}
},
{
"id":"BGLUTDECHOe",
"name":"Binding of betaglucans with taurodeoxycholate in the intestinal lumen, reducing serum cholsterol levels.",
"metabolites":{
"bglc_e":-1.0,
"gltdechol_e":1.0,
"tdechola_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Dietary fiber binding",
"notes":{
"original_bigg_ids":[
"BGLUTDECHOe"
]
},
"annotation":{
"bigg.reaction":[
"BGLUTDECHOe"
],
"metanetx.reaction":[
"MNXR96246"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC161C141m",
"name":"Fatty Acid Beta Oxidation (C16:1->C14:1), Mitochondrial",
"metabolites":{
"accoa_m":1.0,
"coa_m":-1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"hdcoa_m":-1.0,
"nad_m":-1.0,
"nadh_m":1.0,
"tetd7ecoa_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1 and 3032_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC161C141m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC161C141m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"BTNTe",
"name":"Release of biotin across the basolatral membrane",
"metabolites":{
"btn_c":-1.0,
"btn_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"BTNTe"
]
},
"annotation":{
"bigg.reaction":[
"BTNTe"
],
"biocyc":[
"META:TRANS-RXN0-240"
],
"metanetx.reaction":[
"MNXR96333"
],
"rhea":[
"28459",
"28461",
"28460",
"28458"
],
"sbo":"SBO:0000185"
}
},
{
"id":"FAOXC161C141x",
"name":"Fatty Acid Beta Xoidation (C16:1->C14:1), Peroxisomal",
"metabolites":{
"accoa_x":1.0,
"coa_x":-1.0,
"h2o2_x":1.0,
"h2o_x":-1.0,
"h_x":1.0,
"hexde7coa_x":-1.0,
"nad_x":-1.0,
"nadh_x":1.0,
"o2_x":-1.0,
"tetde5coa_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1 and 1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC161C141x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC161C141x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"CARPEPT1tc",
"name":"Transport of L-Carnosine by the apical PEPT1 amino acid transporters across the brush border cells of the enterocytes of the intestine and renal cells",
"metabolites":{
"carn_c":1.0,
"carn_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CARPEPT1tc"
]
},
"annotation":{
"bigg.reaction":[
"CARPEPT1tc"
],
"metanetx.reaction":[
"MNXR96451"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CYSSNAT5tc",
"name":"Transport of L-Cysteine into the cell coupled with co-transport with Sodium and counter transport with proton by SNAT5 transporter.",
"metabolites":{
"cys__L_c":1.0,
"cys__L_e":-1.0,
"h_c":-1.0,
"h_e":1.0,
"na1_c":1.0,
"na1_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"92745_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CYSSNAT5tc"
]
},
"annotation":{
"bigg.reaction":[
"CYSSNAT5tc"
],
"metanetx.reaction":[
"MNXR97010"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CYSTLEUrBATtc",
"name":"Transport of L-Cystine into the cell in exchange for L-Leucine by b0,+AT transporter at the apical surfaces of the membranes of small intestine and renal cells.",
"metabolites":{
"cysi__L_c":1.0,
"cysi__L_e":-1.0,
"leu__L_c":-1.0,
"leu__L_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11136_AT1 and 6519_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CYSTLEUrBATtc"
]
},
"annotation":{
"bigg.reaction":[
"CYSTLEUrBATtc"
],
"metanetx.reaction":[
"MNXR97016"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HEXDIACtr",
"name":"Transport of Hexadecanedioc Acid by Diffusion",
"metabolites":{
"hexdiac_c":-1.0,
"hexdiac_r":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"HEXDIACtr"
]
},
"annotation":{
"bigg.reaction":[
"HEXDIACtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HEXDICOAACBPx",
"name":"Transport of Hexadecanedioyl Coa",
"metabolites":{
"hexdicoa_r":-1.0,
"hexdicoa_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1622_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"HEXDICOAACBPx"
]
},
"annotation":{
"bigg.reaction":[
"HEXDICOAACBPx"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HIVCACBP",
"name":"Transport of 3-Hydroxyisovalerylcoa from Mitochondria into the Cytosol",
"metabolites":{
"3ivcoa_c":1.0,
"3ivcoa_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1622_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"HIVCACBP"
]
},
"annotation":{
"bigg.reaction":[
"HIVCACBP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GALSGLT1le",
"name":"Transport of D-Galactose from extracellular space to cytosol of mucosal cells in small intestine",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"gal_c":1.0,
"gal_e":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"na1_c":2.0,
"na1_e":-2.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6523_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GALSGLT1le"
]
},
"annotation":{
"bigg.reaction":[
"GALSGLT1le"
],
"metanetx.reaction":[
"MNXR100011"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HIVCRNe",
"name":"Transport of 3-Hydroxy-Isovaleryl Carnitine into Extra Cellular Space",
"metabolites":{
"3ivcrn_c":-1.0,
"3ivcrn_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"HIVCRNe"
]
},
"annotation":{
"bigg.reaction":[
"HIVCRNe"
],
"sbo":"SBO:0000185"
}
},
{
"id":"FAOXC161C161OHm",
"name":"Production of 3-Hydroxyhexadecenoylcoa",
"metabolites":{
"3hdeccoa_m":1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"hdcoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC161C161OHm"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC161C161OHm"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HTDCACBP",
"name":"Transport of (S)-3-Hydroxytetradecanoyl-CoA from mitochondria into the cytosol",
"metabolites":{
"3htdcoa_c":1.0,
"3htdcoa_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1622_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"HTDCACBP"
]
},
"annotation":{
"bigg.reaction":[
"HTDCACBP"
],
"metanetx.reaction":[
"MNXR100743"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HTDCRNe",
"name":"Transport of 3-hydroxy-tetradecanoyl carnitine into extra cellular space",
"metabolites":{
"3tdcrn_c":-1.0,
"3tdcrn_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"HTDCRNe"
]
},
"annotation":{
"bigg.reaction":[
"HTDCRNe"
],
"metanetx.reaction":[
"MNXR100744"
],
"sbo":"SBO:0000185"
}
},
{
"id":"IVCOAACBP",
"name":"Transport of Isovaleryl-CoA from mitochondria into cytosol",
"metabolites":{
"ivcoa_c":1.0,
"ivcoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1622_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"IVCOAACBP"
]
},
"annotation":{
"bigg.reaction":[
"IVCOAACBP"
],
"metanetx.reaction":[
"MNXR100894"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLNATB0tc",
"name":"Transport of L-Glutamine into the intestinal cells by ATB0 transporter",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"gln__L_c":1.0,
"gln__L_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11254_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLNATB0tc"
]
},
"annotation":{
"bigg.reaction":[
"GLNATB0tc"
],
"metanetx.reaction":[
"MNXR100248"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLYPHEPEPT1tc",
"name":"Transport of Glycylphenylalanine by the apical PEPT1 amino acid transporters across the brush border cells of the enterocytes of the intestine and renal cells",
"metabolites":{
"glyphe_c":1.0,
"glyphe_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLYPHEPEPT1tc"
]
},
"annotation":{
"bigg.reaction":[
"GLYPHEPEPT1tc"
],
"metanetx.reaction":[
"MNXR143146"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GUMDCHAe",
"name":"Binding of guar gums with deoxyxholic acid in the intestinal lumen, reducing serum cholsterol levels.",
"metabolites":{
"dchac_e":-1.0,
"gum_e":-1.0,
"gumdchac_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Dietary fiber binding",
"notes":{
"original_bigg_ids":[
"GUMDCHAe"
]
},
"annotation":{
"bigg.reaction":[
"GUMDCHAe"
],
"metanetx.reaction":[
"MNXR100477"
],
"sbo":"SBO:0000176"
}
},
{
"id":"IVCRNe",
"name":"Transport of isovaleryl carnitine into the extra cellular space",
"metabolites":{
"ivcrn_c":-1.0,
"ivcrn_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"IVCRNe"
]
},
"annotation":{
"bigg.reaction":[
"IVCRNe"
],
"metanetx.reaction":[
"MNXR100895"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LGNCCOAtcx_1",
"name":"Transport of Lignocericyl Coenzyme A from Cytosol to Peroxisome.",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"ttccoa_c":-1.0,
"ttccoa_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"215_AT1 and 225_AT1",
"subsystem":"Transport, peroxisomal",
"notes":{
"original_bigg_ids":[
"LGNCCOAtcx"
]
},
"annotation":{
"bigg.reaction":[
"LGNCCOAtcx_1"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GUMGCHLe",
"name":"Binding of guar gums with glycocholate in the intestinal lumen, reducing serum cholsterol levels.",
"metabolites":{
"gchola_e":-1.0,
"gum_e":-1.0,
"gumgchol_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Dietary fiber binding",
"notes":{
"original_bigg_ids":[
"GUMGCHLe"
]
},
"annotation":{
"bigg.reaction":[
"GUMGCHLe"
],
"metanetx.reaction":[
"MNXR100478"
],
"sbo":"SBO:0000176"
}
},
{
"id":"NRVNCCOAtxc",
"name":"Transport of nervonylcoa into peroxisomes",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"nrvnccoa_c":-1.0,
"nrvnccoa_x":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"215_AT1 and 225_AT1",
"subsystem":"Transport, peroxisomal",
"notes":{
"original_bigg_ids":[
"NRVNCCOAtxc"
]
},
"annotation":{
"bigg.reaction":[
"NRVNCCOAtxc"
],
"metanetx.reaction":[
"MNXR102021"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GUMTCHOLe",
"name":"Binding of guar gums with taurocholate in the intestinal lumen, reducing serum cholsterol levels.",
"metabolites":{
"gum_e":-1.0,
"gumtchol_e":1.0,
"tchola_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Dietary fiber binding",
"notes":{
"original_bigg_ids":[
"GUMTCHOLe"
]
},
"annotation":{
"bigg.reaction":[
"GUMTCHOLe"
],
"metanetx.reaction":[
"MNXR100479"
],
"sbo":"SBO:0000176"
}
},
{
"id":"OCD11COACPT1_1",
"name":"Transport of 11-Octadecenoyl Carnitine into the Mitochondrial Matrix",
"metabolites":{
"coa_c":1.0,
"crn_c":-1.0,
"ocdececrn_c":1.0,
"octd11ecoa_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1374_AT1 or 1375_AT1 or 126129_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"OCD11COACPT1"
]
},
"annotation":{
"bigg.reaction":[
"OCD11COACPT1_1"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC162C162OHm",
"name":"Fatty Acid Beta Oxidation (C16:2->C16:2Oh), Mitochondrial",
"metabolites":{
"3thexddcoa_m":1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"thexddcoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC162C162OHm"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC162C162OHm"
],
"sbo":"SBO:0000176"
}
},
{
"id":"OCT11EFATP_1",
"name":"Uptake of Vaccenic Acid",
"metabolites":{
"amp_c":1.0,
"atp_c":-1.0,
"coa_c":-1.0,
"octd11ecoa_c":1.0,
"ppi_c":1.0,
"vacc_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"376497_AT1 or 11001_AT1 or 11000_AT1 or 10999_AT1 or 10998_AT1 or 28965_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"OCT11EFATP"
]
},
"annotation":{
"bigg.reaction":[
"OCT11EFATP_1"
],
"sbo":"SBO:0000185"
}
},
{
"id":"OCTDECCPT1",
"name":"Transport of Octadecenoyl Coenzyme A into Mitochondrial Matrix",
"metabolites":{
"coa_c":1.0,
"crn_c":-1.0,
"octdececoa_c":-1.0,
"octdececrn_c":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1374_AT1 or 1375_AT1 or 126129_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"OCTDECCPT1"
]
},
"annotation":{
"bigg.reaction":[
"OCTDECCPT1"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HISSNAT5tc",
"name":"Transport of L-Histidine with Symport of Sodium And Antiport of Proton by Snat5 Transporter",
"metabolites":{
"h_c":-1.0,
"h_e":1.0,
"his__L_c":1.0,
"his__L_e":-1.0,
"na1_c":1.0,
"na1_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"92745_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HISSNAT5tc"
]
},
"annotation":{
"bigg.reaction":[
"HISSNAT5tc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HISyLATtc",
"name":"Transport of L-Histidine by y+LAT1 or y+LAT2 transporters in small intestine and kidney",
"metabolites":{
"arg__L_c":-1.0,
"arg__L_e":1.0,
"his__L_c":1.0,
"his__L_e":-1.0,
"na1_c":1.0,
"na1_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(6520_AT1 and 9057_AT1) or (9056_AT1 and 6520_AT1)",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HISyLATtc"
]
},
"annotation":{
"bigg.reaction":[
"HISyLATtc"
],
"metanetx.reaction":[
"MNXR100650"
],
"sbo":"SBO:0000185"
}
},
{
"id":"FAOXC163C142x",
"name":"Fatty Acid Beta Oxidation (C16:3->C14:2), Peroxisomal",
"metabolites":{
"2hexdtricoa_x":-1.0,
"accoa_x":1.0,
"coa_x":-1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0,
"tetdecdicoa_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC163C142x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC163C142x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HPETFABP1tc",
"name":"Transport of 5-HPETE into the enterocytes",
"metabolites":{
"5HPET_c":-2.0,
"5HPET_r":2.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2168_AT1",
"subsystem":"Transport, endoplasmic reticular",
"notes":{
"original_bigg_ids":[
"HPETFABP1tc"
]
},
"annotation":{
"bigg.reaction":[
"HPETFABP1tc"
],
"metanetx.reaction":[
"MNXR100689"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LEUATB0tc",
"name":"Transport of L-Leucine into the intestinal cells by ATB0 transporter",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"leu__L_c":1.0,
"leu__L_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11254_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LEUATB0tc"
]
},
"annotation":{
"bigg.reaction":[
"LEUATB0tc"
],
"metanetx.reaction":[
"MNXR101041"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LEUGLYPEPT1tc",
"name":"Transport of Leucylglycine by the apical PEPT1 amino acid transporters across the brush border cells of the enterocytes of the intestine and renal cells",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"leugly_c":1.0,
"leugly_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LEUGLYPEPT1tc"
]
},
"annotation":{
"bigg.reaction":[
"LEUGLYPEPT1tc"
],
"metanetx.reaction":[
"MNXR101043"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LEULEULAPc",
"name":"Hydrolysis of Leucylleucine in the small intestine for cellular uptake",
"metabolites":{
"h2o_c":-1.0,
"leu__L_c":2.0,
"leuleu_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51056_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LEULEULAPc"
]
},
"annotation":{
"bigg.reaction":[
"LEULEULAPc"
],
"ec-code":[
"3.4.13"
],
"metanetx.reaction":[
"MNXR101050"
],
"sabiork":[
"8161"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LEULEUPEPT1tc",
"name":"Transport of Leucylleucine by the apical PEPT1 amino acid transporters across the brush border cells of the enterocytes of the intestine and renal cells",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"leuleu_c":1.0,
"leuleu_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LEULEUPEPT1tc"
]
},
"annotation":{
"bigg.reaction":[
"LEULEUPEPT1tc"
],
"metanetx.reaction":[
"MNXR101051"
],
"sbo":"SBO:0000185"
}
},
{
"id":"OCTDECE1CRNe",
"name":"Transport of 3-Hydroxy-Octadecenoyl Carnitine into Extra Cellular Space",
"metabolites":{
"3octdece1crn_c":-1.0,
"3octdece1crn_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"OCTDECE1CRNe"
]
},
"annotation":{
"bigg.reaction":[
"OCTDECE1CRNe"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SK_octdececoa_c",
"name":"Sink for Octadecenoyl Coenzyme A",
"metabolites":{
"octdececoa_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_octdececoa[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_octdececoa_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"OMHDEACIDTD",
"name":"Transport of w-hydroxydecanoic acid by diffusion",
"metabolites":{
"omhdecacid_c":1.0,
"omhdecacid_r":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"OMHDEACIDTD"
]
},
"annotation":{
"bigg.reaction":[
"OMHDEACIDTD"
],
"metanetx.reaction":[
"MNXR102185"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SBCOAACOTx",
"name":"Thioesterification of suberyl coa for release into cytosol",
"metabolites":{
"coa_x":1.0,
"h2o_x":-1.0,
"h_x":1.0,
"sbcoa_x":-1.0,
"subeac_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10005_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"SBCOAACOTx"
]
},
"annotation":{
"bigg.reaction":[
"SBCOAACOTx"
],
"metanetx.reaction":[
"MNXR104277"
],
"sbo":"SBO:0000176"
}
},
{
"id":"SCP21cx",
"name":"Transport of phytanoylcoa from cytosol to peroxisomes.",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"phytcoa_c":-1.0,
"phytcoa_x":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5825_AT1",
"subsystem":"Transport, peroxisomal",
"notes":{
"original_bigg_ids":[
"SCP21cx"
]
},
"annotation":{
"bigg.reaction":[
"SCP21cx"
],
"metanetx.reaction":[
"MNXR104292"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LINOFATPtc",
"name":"Uptake of linoleic acid by the enterocytes",
"metabolites":{
"amp_c":1.0,
"atp_c":-1.0,
"coa_c":-1.0,
"lnlc_e":-1.0,
"lnlccoa_c":1.0,
"ppi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10999_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LINOFATPtc"
]
},
"annotation":{
"bigg.reaction":[
"LINOFATPtc"
],
"metanetx.reaction":[
"MNXR101075"
],
"sbo":"SBO:0000185"
}
},
{
"id":"METATB0tc",
"name":"Transport of L-Methionine into the intestinal cells by ATB0 transporter",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"met__L_c":1.0,
"met__L_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11254_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"METATB0tc"
]
},
"annotation":{
"bigg.reaction":[
"METATB0tc"
],
"metanetx.reaction":[
"MNXR101471"
],
"sbo":"SBO:0000185"
}
},
{
"id":"NACHORCTL3le",
"name":"Transport of Nicotinate ",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"nac_c":1.0,
"nac_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9390_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"NACHORCTL3le"
]
},
"annotation":{
"bigg.reaction":[
"NACHORCTL3le"
],
"metanetx.reaction":[
"MNXR101858"
],
"sbo":"SBO:0000185",
"seed.reaction":[
"rxn12806"
]
}
},
{
"id":"OLEICFATPtc",
"name":"Uptake of octadecenoate by the enterocytes",
"metabolites":{
"amp_c":1.0,
"atp_c":-1.0,
"coa_c":-1.0,
"ocdcea_e":-1.0,
"odecoa_c":1.0,
"ppi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10999_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"OLEICFATPtc"
]
},
"annotation":{
"bigg.reaction":[
"OLEICFATPtc"
],
"metanetx.reaction":[
"MNXR102175"
],
"sbo":"SBO:0000185"
}
},
{
"id":"FAOXC163C164Gm",
"name":"Fatty Acid Beta Oxidation (C16:3->C16:4), Mitochondrial",
"metabolites":{
"4hexdtricoa_m":-1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"hexdectecoa_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC163C164Gm"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC163C164Gm"
],
"sbo":"SBO:0000176"
}
},
{
"id":"ORNALArBATtc",
"name":"Transport of L-Ornithine into the cell in exchange for L-Alanine by b0,+AT transporter at the apical surfaces of the membranes of small intestine and renal cells.",
"metabolites":{
"ala__L_c":-1.0,
"ala__L_e":1.0,
"orn_c":1.0,
"orn_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11136_AT1 and 6519_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ORNALArBATtc"
]
},
"annotation":{
"bigg.reaction":[
"ORNALArBATtc"
],
"metanetx.reaction":[
"MNXR102217"
],
"sbo":"SBO:0000185"
}
},
{
"id":"FAOXC163C164x",
"name":"Fatty Acid Beta Oxidation (C16:3->C16:4), Peroxisomal",
"metabolites":{
"4hexdtricoa_x":-1.0,
"h2o2_x":1.0,
"hexdectecoa_x":1.0,
"o2_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC163C164x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC163C164x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"ORNLEUrBATtc",
"name":"Transport of L-Ornithine into the cell in exchange for L-Leucine by b0,+AT transporter at the apical surfaces of the membranes of small intestine and renal cells.",
"metabolites":{
"leu__L_c":-1.0,
"leu__L_e":1.0,
"orn_c":1.0,
"orn_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11136_AT1 and 6519_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ORNLEUrBATtc"
]
},
"annotation":{
"bigg.reaction":[
"ORNLEUrBATtc"
],
"metanetx.reaction":[
"MNXR102219"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PECGCHLe",
"name":"Binding of pectins with glycocholate in the intestinal lumen, reducing serum cholsterol levels.",
"metabolites":{
"gchola_e":-1.0,
"h_e":-1.0,
"pect_e":-1.0,
"pectingchol_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Dietary fiber binding",
"notes":{
"original_bigg_ids":[
"PECGCHLe"
]
},
"annotation":{
"bigg.reaction":[
"PECGCHLe"
],
"metanetx.reaction":[
"MNXR102464"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PHEATB0tc",
"name":"Transport of L-Phenylalanine into the intestinal cells by ATB0 transporter",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0,
"phe__L_c":1.0,
"phe__L_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11254_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PHEATB0tc"
]
},
"annotation":{
"bigg.reaction":[
"PHEATB0tc"
],
"metanetx.reaction":[
"MNXR102623"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_gltdechol_e",
"name":"Exchange reaction for beta glucan-taurodeoxycholic acid complex",
"metabolites":{
"gltdechol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_gltdechol[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_gltdechol_e"
],
"metanetx.reaction":[
"MNXR142980"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_glysar_e",
"name":"Exchange reaction for glycylsarcosine",
"metabolites":{
"glysar_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_glysar[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_glysar_e"
],
"metanetx.reaction":[
"MNXR142999"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_gumtchol_e",
"name":"Exchange reaction for guar gum-taurocholic acid complex",
"metabolites":{
"gumtchol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_gumtchol[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_gumtchol_e"
],
"metanetx.reaction":[
"MNXR143006"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_leugly_e",
"name":"Exchange reaction for leucylglycine",
"metabolites":{
"leugly_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_leugly[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_leugly_e"
],
"metanetx.reaction":[
"MNXR143017"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_leuleu_e",
"name":"Exchange reaction for leucylleucine",
"metabolites":{
"leuleu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_leuleu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_leuleu_e"
],
"metanetx.reaction":[
"MNXR143018"
],
"sbo":"SBO:0000627"
}
},
{
"id":"PHEyLATthc",
"name":"Transport of Phenylalanine by y+LAT1 or y+LAT2 with co-transporter of h in small intestine and kidney",
"metabolites":{
"arg__L_c":-1.0,
"arg__L_e":1.0,
"h_c":1.0,
"h_e":-1.0,
"phe__L_c":1.0,
"phe__L_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(6520_AT1 and 9057_AT1) or (9056_AT1 and 6520_AT1)",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PHEyLATthc"
]
},
"annotation":{
"bigg.reaction":[
"PHEyLATthc"
],
"metanetx.reaction":[
"MNXR102638"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PROIMINOtc",
"name":"Transport of L-Proline by the apical IMINO amino acid transporters in kidney and intestine",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0,
"pro__L_c":1.0,
"pro__L_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"54716_AT1 and 57393_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PROIMINOtc"
]
},
"annotation":{
"bigg.reaction":[
"PROIMINOtc"
],
"metanetx.reaction":[
"MNXR103192"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_pect_e",
"name":"Exchange reaction for pectins",
"metabolites":{
"pect_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pect[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pect_e"
],
"metanetx.reaction":[
"MNXR143050"
],
"sbo":"SBO:0000627"
}
},
{
"id":"PSYGCHe",
"name":"Binding of psyllium with glycocholate in the intestinal lumen, reducing serum cholsterol levels.",
"metabolites":{
"gchola_e":-1.0,
"psyl_e":-1.0,
"psylchol_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Dietary fiber binding",
"notes":{
"original_bigg_ids":[
"PSYGCHe"
]
},
"annotation":{
"bigg.reaction":[
"PSYGCHe"
],
"metanetx.reaction":[
"MNXR103312"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC163Gm",
"name":"Isomerization (C16:3), Mitochondrial",
"metabolites":{
"2hexdtricoa_m":1.0,
"3hexdtricoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1632_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC163Gm"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC163Gm"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_pectingchol_e",
"name":"Exchange reaction for pectin-glycocholate complex",
"metabolites":{
"pectingchol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pectingchol[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pectingchol_e"
],
"metanetx.reaction":[
"MNXR143053"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pectintchol_e",
"name":"Exchange reaction for pectin-taurocholic acid complex",
"metabolites":{
"pectintchol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pectintchol[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pectintchol_e"
],
"metanetx.reaction":[
"MNXR143054"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_psyl_e",
"name":"Exchange reaction for psyllium",
"metabolites":{
"psyl_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_psyl[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_psyl_e"
],
"metanetx.reaction":[
"MNXR143058"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_psylchol_e",
"name":"Exchange reaction for psyllium-glycocholic acid complex",
"metabolites":{
"psylchol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_psylchol[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_psylchol_e"
],
"metanetx.reaction":[
"MNXR143059"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_psyltchol_e",
"name":"Exchange reaction for psyllium-taurocholic acid complex",
"metabolites":{
"psyltchol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_psyltchol[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_psyltchol_e"
],
"metanetx.reaction":[
"MNXR143060"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_slfcys_e",
"name":"Exchange reaction for sulfocysteine",
"metabolites":{
"slfcys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_sfcys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_slfcys_e"
],
"metanetx.reaction":[
"MNXR104356"
],
"sbo":"SBO:0000627"
}
},
{
"id":"THMATPe",
"name":"Thiamine exit from the neterocytes",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"thm_c":-1.0,
"thm_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"THMATPe"
]
},
"annotation":{
"bigg.reaction":[
"THMATPe"
],
"metanetx.reaction":[
"MNXR138859"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TRPATB0tc",
"name":"Transport of L-Tryptophan into the intestinal cells by ATB0 transporter",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0,
"trp__L_c":1.0,
"trp__L_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11254_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TRPATB0tc"
]
},
"annotation":{
"bigg.reaction":[
"TRPATB0tc"
],
"metanetx.reaction":[
"MNXR104942"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TYRATB0tc",
"name":"Transport of L-Tyrosine into the intestinal cells by ATB0 transporter",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0,
"tyr__L_c":1.0,
"tyr__L_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11254_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TYRATB0tc"
]
},
"annotation":{
"bigg.reaction":[
"TYRATB0tc"
],
"metanetx.reaction":[
"MNXR104989"
],
"sbo":"SBO:0000185"
}
},
{
"id":"VALATB0tc",
"name":"Transport of L-Valine into the intestinal cells by ATB0 transporter",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0,
"val__L_c":1.0,
"val__L_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11254_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"VALATB0tc"
]
},
"annotation":{
"bigg.reaction":[
"VALATB0tc"
],
"metanetx.reaction":[
"MNXR105182"
],
"sbo":"SBO:0000185"
}
},
{
"id":"VITEtl",
"name":"Efflux of alpha-Tocopherol into the lyphatics in chylomicrons",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"avite1_c":-1.0,
"avite1_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"19_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"VITEtl"
]
},
"annotation":{
"bigg.reaction":[
"VITEtl"
],
"metanetx.reaction":[
"MNXR105204"
],
"sbo":"SBO:0000185"
}
},
{
"id":"FAOXC163x",
"name":"Isomerization (C16:3), Peroxisomal",
"metabolites":{
"2hexdtricoa_x":1.0,
"3hexdtricoa_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1962_AT1 or 10455_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC163x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC163x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"3AIB_Dtm",
"name":"Transport of 3aib D into mitochondria",
"metabolites":{
"3aib__D_c":-1.0,
"3aib__D_m":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, mitochondrial",
"notes":{
"original_bigg_ids":[
"3AIB_Dtm"
]
},
"annotation":{
"bigg.reaction":[
"3AIB_Dtm"
],
"metanetx.reaction":[
"MNXR94852"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_pan4p_e",
"name":"Exchange reaction for pan4p",
"metabolites":{
"pan4p_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pan4p[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pan4p_e"
],
"metanetx.reaction":[
"MNXR102344"
],
"reactome.reaction":[
"R-HSA-8939039"
],
"sbo":"SBO:0000627",
"seed.reaction":[
"rxn09729"
]
}
},
{
"id":"EX_ptth_e",
"name":"Exchange reaction for ptth",
"metabolites":{
"ptth_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ptth[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ptth_e"
],
"metanetx.reaction":[
"MNXR105410"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_q10h2_e",
"name":"Exchange reaction for ubiquinol",
"metabolites":{
"q10h2_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_q10h2[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_q10h2_e"
],
"metanetx.reaction":[
"MNXR103390"
],
"sbo":"SBO:0000627"
}
},
{
"id":"3HCO3_NAt",
"name":"Bicarbonate transport (Na/HCO3 1:3 cotransport)",
"metabolites":{
"hco3_c":3.0,
"hco3_e":-3.0,
"na1_c":1.0,
"na1_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"57835_AT3 or 8671_AT1 or 57835_AT2 or 57835_AT1 or 57835_AT4",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"3HCO3_NAt"
]
},
"annotation":{
"bigg.reaction":[
"3HCO3_NAt"
],
"metanetx.reaction":[
"MNXR94894"
],
"reactome.reaction":[
"R-ATH-8878664",
"R-XTR-8878664",
"R-SPO-425483",
"R-RNO-8878664",
"R-SCE-425483",
"R-MMU-425483",
"R-OSA-425483",
"R-CFA-425483",
"R-GGA-8878664",
"R-SSC-8878664",
"R-DRE-8878664",
"R-TGU-425483",
"R-TGU-8878664",
"R-DME-425483",
"R-RNO-425483",
"R-SPO-8878664",
"R-OSA-8878664",
"R-BTA-425483",
"R-SCE-8878664",
"R-HSA-425483",
"R-SSC-425483",
"R-XTR-425483",
"R-MMU-8878664",
"R-CFA-8878664",
"R-GGA-425483",
"R-CEL-425483",
"R-DRE-425483",
"R-BTA-8878664",
"R-ATH-425483",
"R-HSA-8878664"
],
"sbo":"SBO:0000185"
}
},
{
"id":"FAOXC164C143m",
"name":"Fatty Acid Beta Oxidation (C16:4->C14:3), Mitochondrial",
"metabolites":{
"2hexdtetcoa_m":-1.0,
"5tedtricoa_m":1.0,
"accoa_m":1.0,
"coa_m":-1.0,
"h2o_m":-1.0,
"h_m":1.0,
"nad_m":-1.0,
"nadh_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3030_AT1 and 3032_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC164C143m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC164C143m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"4ABUTtcn",
"name":"Transport of GABA",
"metabolites":{
"4abut_c":-1.0,
"4abut_n":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, nuclear",
"notes":{
"original_bigg_ids":[
"4ABUTtcn"
]
},
"annotation":{
"bigg.reaction":[
"4ABUTtcn"
],
"metanetx.reaction":[
"MNXR94993"
],
"reactome.reaction":[
"R-XTR-888592",
"R-DRE-888592",
"R-OSA-888592",
"R-GGA-888592",
"R-SSC-888592",
"R-DME-888592",
"R-CFA-888592",
"R-BTA-888592",
"R-RNO-888592",
"R-SCE-888592",
"R-TGU-888592",
"R-ATH-888592",
"R-MMU-888592",
"R-HSA-888592",
"R-CEL-888592"
],
"rhea":[
"35035",
"35036",
"35037",
"35038"
],
"sabiork":[
"13098"
],
"sbo":"SBO:0000185",
"seed.reaction":[
"rxn08028",
"rxn11326",
"rxn09795"
]
}
},
{
"id":"4HPROLTASCT1",
"name":"Exit of hydroxy-proline across the basolateral surface of enterocytes",
"metabolites":{
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},
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}
},
{
"id":"ADNt5",
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},
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"sbo":"SBO:0000185"
}
},
{
"id":"FAOXC164C143x",
"name":"Fatty Acid Beta Oxidation (C16:4->C14:3), Peroxisomal",
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]
},
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"bigg.reaction":[
"FAOXC164C143x"
],
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}
},
{
"id":"AHCYStm",
"name":"S adenosyl L homocysteine reversible transport  mitochondrial",
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"upper_bound":1000.0,
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},
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}
},
{
"id":"FADDPle",
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"lower_bound":0.0,
"upper_bound":1000.0,
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},
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],
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"3.6.1.9"
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],
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"reactome.reaction":[
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"R-MMU-196955",
"R-TGU-196955",
"R-ATH-196955",
"R-CFA-196955",
"R-XTR-196955",
"R-BTA-196955",
"R-SSC-196955",
"R-DRE-196955",
"R-RNO-196955",
"R-SPO-196955",
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"R-CEL-196955",
"R-HSA-196955",
"R-SCE-196955"
],
"rhea":[
"13890",
"13889",
"13891",
"13892"
],
"sabiork":[
"718"
],
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"seed.reaction":[
"rxn00121"
]
}
},
{
"id":"FAOXC164C163x",
"name":"Fatty Acid Beta Oxidation (C16:4->C16:3), Peroxisomal",
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"h_x":-1.0,
"hexdectecoa_x":-1.0,
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"upper_bound":1000.0,
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"FAOXC164C163x"
]
},
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"bigg.reaction":[
"FAOXC164C163x"
],
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}
},
{
"id":"FE2DMT1",
"name":"Uptake of food iron by DMT1 transporter",
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"fe2_c":1.0,
"fe2_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"4891_AT1",
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"notes":{
"original_bigg_ids":[
"FE2DMT1"
]
},
"annotation":{
"bigg.reaction":[
"FE2DMT1"
],
"biocyc":[
"META:RXN0-2421"
],
"metanetx.reaction":[
"MNXR99501"
],
"rhea":[
"29579",
"29582",
"29581",
"29580"
],
"sbo":"SBO:0000185",
"seed.reaction":[
"rxn08473"
]
}
},
{
"id":"FOLt2",
"name":"Folate transport via anion exchange",
"metabolites":{
"fol_c":1.0,
"fol_e":-1.0,
"oh1_c":-1.0,
"oh1_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"FOLt2le"
]
},
"annotation":{
"bigg.reaction":[
"FOLt2"
],
"metanetx.reaction":[
"MNXR105408"
],
"reactome.reaction":[
"R-GGA-200729",
"R-CEL-200729",
"R-SSC-200646",
"R-DRE-200646",
"R-MMU-200729",
"R-BTA-200729",
"R-CEL-200646",
"R-CFA-200646",
"R-DME-200729",
"R-RNO-200729",
"R-DME-200646",
"R-XTR-200646",
"R-XTR-200729",
"R-DRE-200729",
"R-CFA-200729",
"R-SSC-200729",
"R-HSA-200646",
"R-TGU-200646",
"R-RNO-200646",
"R-BTA-200646",
"R-HSA-200729",
"R-TGU-200729",
"R-GGA-200646",
"R-MMU-200646"
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"sbo":"SBO:0000185"
}
},
{
"id":"ALA_DTDe",
"name":"Exit of D-alanine from the enterocytes",
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"ala__D_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
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"original_bigg_ids":[
"ALA-DTDe"
]
},
"annotation":{
"bigg.reaction":[
"ALA_DTDe"
],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185",
"seed.reaction":[
"rxn08302",
"rxn10991"
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}
},
{
"id":"ASPDTDe",
"name":"D-aspartate transport, extracellular",
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"asp__D_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASPDTDe"
]
},
"annotation":{
"bigg.reaction":[
"ASPDTDe"
],
"metanetx.reaction":[
"MNXR96081"
],
"sbo":"SBO:0000185",
"seed.reaction":[
"rxn12404"
]
}
},
{
"id":"ASPPROASCT1",
"name":"Aspartate intake by system ASCT-1 transporter",
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"asp__L_e":-1.0,
"na1_c":1.0,
"na1_e":-1.0,
"pro__L_c":-1.0,
"pro__L_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6509_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASPPROASCT1"
]
},
"annotation":{
"bigg.reaction":[
"ASPPROASCT1"
],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"BTNt3i",
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"atp_c":-1.0,
"btn_c":1.0,
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"h2o_c":-1.0,
"h_c":1.0,
"na1_c":2.0,
"na1_e":-2.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8884_AT1",
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"BTNt3ile"
]
},
"annotation":{
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"BTNt3i"
],
"metanetx.reaction":[
"MNXR96336"
],
"sbo":"SBO:0000185"
}
},
{
"id":"FRDPtcr",
"name":"Transport of Farnesyl diphosphate into the endoplasmic reticulum",
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"frdp_r":1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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"notes":{
"original_bigg_ids":[
"FRDPtcr"
]
},
"annotation":{
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"FRDPtcr"
],
"metanetx.reaction":[
"MNXR99646"
],
"sbo":"SBO:0000185",
"seed.reaction":[
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}
},
{
"id":"G6PDH2c",
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"g6p_c":-3.0,
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"nadph_c":3.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2539_AT1",
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]
},
"annotation":{
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],
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}
},
{
"id":"FAOXC164C165m",
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"hexdpencoa_m":1.0
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"lower_bound":0.0,
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},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"GLU5SAtmc",
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"glu5sa_m":-1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"G3PDm",
"name":"Glycerol 3 phosphate dehydrogenase  FAD   mitochondrial",
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"fad_m":-1.0,
"fadh2_m":1.0,
"glyc3p_m":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
"annotation":{
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],
"ec-code":[
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"1.1.5.3"
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"kegg.reaction":[
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],
"metanetx.reaction":[
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"reactome.reaction":[
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"R-MMU-188467",
"R-DDI-188467",
"R-BTA-188467",
"R-SCE-188467",
"R-GGA-188467",
"R-SSC-188467",
"R-PFA-188467",
"R-OSA-188467",
"R-SPO-188467",
"R-DRE-188467",
"R-RNO-188467",
"R-CEL-188467",
"R-XTR-188467",
"R-CFA-188467",
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"R-HSA-188467",
"R-DME-188467"
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"rhea":[
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"31285",
"31284",
"31286"
],
"sbo":"SBO:0000176",
"seed.reaction":[
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}
},
{
"id":"GNDc",
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"lower_bound":0.0,
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},
"annotation":{
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},
{
"id":"GSNt5",
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"lower_bound":0.0,
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},
"annotation":{
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"metanetx.reaction":[
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"sbo":"SBO:0000185"
}
},
{
"id":"HYPTROXe",
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"o2_e":-1.0,
"taur_e":2.0
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"lower_bound":0.0,
"upper_bound":1000.0,
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},
"annotation":{
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"metanetx.reaction":[
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}
},
{
"id":"CHSTEROLtrc",
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"chsterol_r":-1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
"annotation":{
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"metanetx.reaction":[
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"reactome.reaction":[
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"R-PFA-5250531",
"R-HSA-265443",
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"R-DDI-5250531",
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"R-DRE-5250531",
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"R-MMU-5250531",
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"rhea":[
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"39749",
"39750",
"39748"
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},
{
"id":"CRNtp",
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"lower_bound":-1000.0,
"upper_bound":1000.0,
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},
"annotation":{
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"34960",
"34959",
"34961"
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}
},
{
"id":"CYTDt5",
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"lower_bound":0.0,
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"gene_reaction_rule":"64078_AT1",
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},
"annotation":{
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"metanetx.reaction":[
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}
},
{
"id":"Coqe",
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
"annotation":{
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},
{
"id":"DCTPtm_cho",
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"lower_bound":0.0,
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},
"annotation":{
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},
{
"id":"DGTPtm_cho",
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"lower_bound":0.0,
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"gene_reaction_rule":"",
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},
"annotation":{
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}
},
{
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},
"annotation":{
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},
{
"id":"DM_pmtcoa_r",
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},
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},
{
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},
"lower_bound":0.0,
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},
"annotation":{
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},
{
"id":"INSK",
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
"annotation":{
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"biocyc":[
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}
},
{
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},
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}
},
{
"id":"Kt3r",
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"k_e":1.0
},
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},
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"29469"
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}
},
{
"id":"LACLt",
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]
},
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"34987",
"34990"
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}
},
{
"id":"DTMPKm",
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"lower_bound":0.0,
"upper_bound":1000.0,
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]
},
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],
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"2.7.4.12",
"2.7.4.9"
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"13518",
"13517",
"13519"
],
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}
},
{
"id":"DTTPtm_cho",
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"upper_bound":1000.0,
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]
},
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],
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}
},
{
"id":"EX_4hpro_LT_e",
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"lower_bound":-1000.0,
"upper_bound":1000.0,
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},
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}
},
{
"id":"EX_bglc_e",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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"EX_bglc[e]"
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},
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"metanetx.reaction":[
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],
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}
},
{
"id":"MAL_Ltx",
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"mal__L_x":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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]
},
"annotation":{
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"MAL_Ltx"
],
"biocyc":[
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"META:TRANS-RXN-224"
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],
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}
},
{
"id":"EX_carn_e",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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]
},
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],
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],
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}
},
{
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"3hexdtetcoa_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
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]
},
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],
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}
},
{
"id":"FAOXC165C164m",
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"hexdpencoa_m":-1.0,
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"nadph_m":-1.0
},
"lower_bound":0.0,
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]
},
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],
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}
},
{
"id":"EX_glgchlo_e",
"name":"Exchange reaction for beta glucan-glycocholate complex",
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"glgchlo_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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"EX_glgchlo[e]"
]
},
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],
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],
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}
},
{
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"nadh_x":1.0,
"oaa_x":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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"original_bigg_ids":[
"MDHx"
]
},
"annotation":{
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],
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],
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"reactome.reaction":[
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"R-BTA-198508",
"R-SCE-70979",
"R-GGA-70979",
"R-MMU-71783",
"R-RNO-71783",
"R-DDI-198508",
"R-CFA-71783",
"R-CFA-198508",
"R-ATH-70979",
"R-DME-198508",
"R-TGU-71783",
"R-HSA-71783",
"R-BTA-71783",
"R-DRE-198508",
"R-SPO-70979",
"R-GGA-71783",
"R-TGU-198508",
"R-GGA-372422",
"R-CEL-71783",
"R-XTR-70979",
"R-RNO-198508",
"R-MMU-70979",
"R-SPO-71783",
"R-ATH-71783",
"R-MMU-198508",
"R-DME-70979",
"R-TGU-70979",
"R-CEL-198508",
"R-DME-71783",
"R-DRE-70979",
"R-OSA-71783",
"R-SSC-198508",
"R-GGA-372855",
"R-SSC-70979",
"R-OSA-70979",
"R-GGA-373047",
"R-GGA-198508",
"R-SSC-71783",
"R-HSA-70979",
"R-CFA-70979",
"R-XTR-71783",
"R-HSA-198508",
"R-XTR-198508",
"R-SCE-71783",
"R-RNO-70979",
"R-DRE-71783",
"R-CEL-70979"
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"21433",
"21434",
"21435"
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"sabiork":[
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],
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}
},
{
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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]
},
"annotation":{
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],
"sbo":"SBO:0000632"
}
},
{
"id":"EX_crtn_e",
"name":"Exchange of Creatinine",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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]
},
"annotation":{
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],
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}
},
{
"id":"SPRMti",
"name":"Absorption for spermine across the basolateral side",
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"sprm_e":-1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6580_AT1",
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]
},
"annotation":{
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],
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],
"sabiork":[
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],
"sbo":"SBO:0000185",
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}
},
{
"id":"TAURt",
"name":"Taurine transport",
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"taur_e":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
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]
},
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185",
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"rxn13402"
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}
},
{
"id":"URIt5",
"name":"Uridine transport in via sodium symport (1:2)",
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"na1_e":-2.0,
"uri_c":1.0,
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"upper_bound":1000.0,
"gene_reaction_rule":"64078_AT1",
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},
"annotation":{
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],
"metanetx.reaction":[
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"sbo":"SBO:0000185"
}
},
{
"id":"q10h2tc",
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"q10h2_m":-1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
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]
},
"annotation":{
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],
"metanetx.reaction":[
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"sbo":"SBO:0000185"
}
},
{
"id":"34HPPte",
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"34hpp_e":-1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
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"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"3MOBte",
"name":"Transport of 3-methyl-2-oxobutanoate",
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"3mob_e":-1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
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]
},
"annotation":{
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"sbo":"SBO:0000185",
"seed.reaction":[
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}
},
{
"id":"EX_cyst__L_e",
"name":"L Cystine exchange",
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"cyst__L_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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},
"annotation":{
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"biocyc":[
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"metanetx.reaction":[
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],
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}
},
{
"id":"EX_dcmp_e",
"name":"DCMP exchange",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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]
},
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],
"sbo":"SBO:0000627",
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}
},
{
"id":"3MOPt",
"name":"3mop reversible trasport",
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
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]
},
"annotation":{
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],
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],
"sbo":"SBO:0000185",
"seed.reaction":[
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]
}
},
{
"id":"4HPRO_LTte",
"name":"Transport of trans-4-hydroxy-L-proline",
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"4hpro_LT_m":1.0
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"lower_bound":-1000.0,
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},
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"sbo":"SBO:0000185",
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}
},
{
"id":"5MTAte",
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"5mta_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
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]
},
"annotation":{
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],
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"sbo":"SBO:0000185",
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}
},
{
"id":"5OXPROt",
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"na1_c":2.0,
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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]
},
"annotation":{
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],
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],
"sbo":"SBO:0000185"
}
},
{
"id":"AICARte",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
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"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"ANTHte",
"name":"Transport of anthranilate",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
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],
"sbo":"SBO:0000185",
"seed.reaction":[
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}
},
{
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
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"notes":{
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},
"annotation":{
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],
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"metanetx.reaction":[
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}
},
{
"id":"NADtx",
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},
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},
"annotation":{
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}
},
{
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},
"lower_bound":0.0,
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},
"annotation":{
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}
},
{
"id":"CBASPte",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
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},
"annotation":{
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}
},
{
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}
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{
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}
},
{
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{
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},
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}
},
{
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{
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{
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{
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{
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},
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"rxn09749",
"rxn11234"
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}
},
{
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},
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}
},
{
"id":"AVITE1t",
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},
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},
{
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},
{
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},
{
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},
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},
{
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},
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},
{
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},
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}
},
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}
},
{
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},
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],
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}
},
{
"id":"PCRNte",
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},
"annotation":{
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}
},
{
"id":"ARACHDFATPtc",
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]
},
"annotation":{
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}
},
{
"id":"STCRNte",
"name":"Transport of O-Octadecanoyl-R-Carnitine",
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},
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],
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}
},
{
"id":"EX_acrn_e",
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},
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}
},
{
"id":"LCAT20e",
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},
{
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},
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}
},
{
"id":"LCAT22e",
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},
{
"id":"LCAT27e",
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{
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}
},
{
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},
{
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},
{
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},
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{
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},
{
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}
},
{
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},
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"29824",
"29826",
"29825"
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"rxn08234"
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}
},
{
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},
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},
{
"id":"LCAT34e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Eicosatetraenoylglycerophosphocholine (Delta 8, 11, 14, 17)",
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"annotation":{
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},
{
"id":"LCAT36e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Docosatetraenoylglycerophosphocholine (Delta 7, 10, 13, 16)",
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},
"annotation":{
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},
{
"id":"DM_ascb__L_c",
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"lower_bound":0.0,
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"gene_reaction_rule":"",
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},
"annotation":{
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"sbo":"SBO:0000628"
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},
{
"id":"PCREATte",
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},
"annotation":{
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},
{
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},
"annotation":{
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},
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"pro__L_c":-0.41248,
"ps_hs_c":-0.005829,
"ser__L_c":-0.39253,
"sphmyln_hs_c":-0.017486,
"thr__L_c":-0.31269,
"trp__L_c":-0.013306,
"tyr__L_c":-0.15967,
"utp_c":-0.053446,
"val__L_c":-0.35261
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"objective_coefficient":1.0,
"subsystem":"Biomass and maintenance functions",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
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"sbo":"SBO:0000629"
}
},
{
"id":"LCAT39e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Docosahexenoylglycerophosphocholine (Delta 4, 7, 10, 13, 16, 19)",
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"pcholn226_hs_e":1.0,
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT42e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Docosatetraenoyglycerophosphoethanolamine (22:4, Delta 7, 10, 13, 16)",
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"annotation":{
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}
},
{
"id":"LCAT43e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Dihomo-Linolenoylglycerophosphoethanolamine (20:3, Delta 8, 11, 14)",
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"subsystem":"Cholesterol metabolism",
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},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"BIOMASS_maintenance_noTrTr",
"name":"Biomass maintenance reaction without replication, transcription, and translation precursors",
"metabolites":{
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"atp_c":-20.7045,
"chsterol_c":-0.020401,
"clpn_hs_c":-0.011658,
"g6p_c":-0.27519,
"h2o_c":-20.6508,
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"pe_hs_c":-0.055374,
"pglyc_hs_c":-0.002914,
"pi_c":20.6508,
"ps_hs_c":-0.005829,
"sphmyln_hs_c":-0.017486
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"lower_bound":0.0,
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"gene_reaction_rule":"",
"subsystem":"Biomass and maintenance functions",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000629"
}
},
{
"id":"15KPROSTGF2c",
"name":"Formation of 15-Keto-Prostaglandin F2A",
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"h_c":1.0,
"nad_c":-1.0,
"nadh_c":1.0,
"prostgf2_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3248_AT1",
"subsystem":"Eicosanoid metabolism",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"ADPOHc",
"name":"Hydroxylation of 2-Oxoadipate",
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"adpoh_c":1.0,
"h_c":-1.0,
"nad_c":1.0,
"nadh_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Lysine metabolism",
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"AND19ONEc",
"name":"Hydroxylation of Androst-4-Ene-3, 17-Dione",
"metabolites":{
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"andrstndn_c":-1.0,
"h2o_c":1.0,
"h_c":-1.0,
"nadp_c":1.0,
"nadph_c":-1.0,
"o2_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1565_AT1",
"subsystem":"Steroid metabolism",
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"DESAT14_9",
"name":"Desaturation of Myristic Acid to 9-Tetradecenoic Acid",
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"h_c":-1.0,
"nad_c":1.0,
"nadh_c":-1.0,
"o2_c":-1.0,
"tdcoa_c":-1.0,
"ttdceacoa_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9415_AT1",
"subsystem":"Fatty acid synthesis",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT44e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Didecanoylglycerophosphoethanolamine (C12:0 Pe)",
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"pe12_hs_e":1.0,
"pe_hs_e":-1.0,
"xolest2_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
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]
},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"LCAT45e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Myristoylglycerophosphoethanolamine (C14:0 Pe)",
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"pe14_hs_e":1.0,
"pe_hs_e":-1.0,
"xolest2_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT46e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Tridecanoylglycerophosphoethanolamine (C13:0 Pe)",
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"chsterol_e":-1.0,
"pe13_hs_e":1.0,
"pe_hs_e":-1.0,
"xolest2_hs_e":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
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]
},
"annotation":{
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"LCAT46e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT49e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Dihomo-Linolenoylglycerophosphocholine (20:3, Delta 8, 11, 14)",
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"pchol_hs_e":-1.0,
"pcholn203_hs_e":1.0,
"xolest2_hs_e":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
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]
},
"annotation":{
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"LCAT49e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT50e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-1-Lignocericylglycerophosphocholine (24:0)",
"metabolites":{
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"pchol_hs_e":-1.0,
"pcholn24_hs_e":1.0,
"xolest2_hs_e":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
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]
},
"annotation":{
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"LCAT50e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT52e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of Lysopc A C28:1 (Delta 5)",
"metabolites":{
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"pchol_hs_e":-1.0,
"pcholn281_hs_e":1.0,
"xolest2_hs_e":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
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},
"annotation":{
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"LCAT52e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"21HPRGNLONE",
"name":"Formation of 21-Hydroxypregnenolone",
"metabolites":{
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"h2o_c":1.0,
"h_c":-1.0,
"nadp_c":1.0,
"nadph_c":-1.0,
"o2_c":-1.0,
"prgnlone_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1589_AT1",
"subsystem":"Steroid metabolism",
"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMCRNc",
"name":"Formation of Homocitrulline",
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"h_c":1.0,
"hmcr_c":1.0,
"lys__L_c":-1.0,
"pi_c":1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Lysine metabolism",
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]
},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"LCAT10e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Myristoylglycerophosphocholine",
"metabolites":{
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"pchol_hs_e":-1.0,
"pcholmyr_hs_e":1.0,
"xolest2_hs_e":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
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"subsystem":"Cholesterol metabolism",
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},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"LCAT11e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Oleoylglycerophosphocholine (Delta 9)",
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"pchol_hs_e":-1.0,
"pcholole_hs_e":1.0,
"xolest2_hs_e":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
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},
"annotation":{
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"sbo":"SBO:0000176"
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},
{
"id":"CRNATBtc",
"name":"Carnitine Transport by Atb0",
"metabolites":{
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"crn_c":1.0,
"crn_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11254_AT1",
"subsystem":"Transport, extracellular",
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},
"annotation":{
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}
},
{
"id":"LCAT14e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Palmitoylglycerophosphocholine",
"metabolites":{
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"pchol_hs_e":-1.0,
"pcholpalm_hs_e":1.0,
"xolest2_hs_e":1.0
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"lower_bound":0.0,
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},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"LCAT6e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Eicosatrienoylglycerophosphocholine (Delta 11, 14, 17)",
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"pcholet_hs_e":1.0,
"xolest2_hs_e":1.0
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"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
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"annotation":{
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"sbo":"SBO:0000176"
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},
{
"id":"LCAT7e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Heptadecanoylglycerophosphocholine",
"metabolites":{
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"pchol_hs_e":-1.0,
"pcholhep_hs_e":1.0,
"xolest2_hs_e":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
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},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"LCAT55e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Palmitoylglycerophosphoinositol",
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"pail_hs_e":-1.0,
"pailpalm_hs_e":1.0,
"xolest2_hs_e":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
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},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"LCAT8e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Linoleoylglycerophosphocholine (Delta 9, 12)",
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"pchol_hs_e":-1.0,
"pchollinl_hs_e":1.0,
"xolest2_hs_e":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
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},
"annotation":{
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},
{
"id":"LCAT16e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Stearoylglycerophosphoethanolamine",
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"pe_hs_e":-1.0,
"peste_hs_e":1.0,
"xolest2_hs_e":1.0
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"lower_bound":0.0,
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"subsystem":"Cholesterol metabolism",
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},
"annotation":{
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},
{
"id":"SMS10",
"name":"Sphingomyelin Synthase, Formation of Sm (D18:1/21:0)",
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"dag_hs_c":1.0,
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"259230_AT1 or 166929_AT1",
"subsystem":"Glycerophospholipid metabolism",
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},
"annotation":{
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},
{
"id":"LCAT17e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Stearoylglycerophosphoinositol",
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"pailste_hs_e":1.0,
"xolest2_hs_e":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
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},
"annotation":{
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},
{
"id":"DHEASABCCte",
"name":"Dhea Transport by ABCa11",
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"atp_c":-1.0,
"dheas_c":-1.0,
"dheas_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"85320_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"SMS11",
"name":"Sphingomyelin Synthase, Formation of Sm (D18:1/22:1)",
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"259230_AT1 or 166929_AT1",
"subsystem":"Glycerophospholipid metabolism",
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},
"annotation":{
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},
{
"id":"SMS12",
"name":"Sphingomyelin Synthase, Formation of Sm (D18:1/22:0)",
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"pchol_hs_c":-1.0,
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"259230_AT1 or 166929_AT1",
"subsystem":"Glycerophospholipid metabolism",
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},
"annotation":{
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},
{
"id":"SMS13",
"name":"Sphingomyelin Synthase, Formation of Sm (D18:0/24:1)",
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"dag_hs_c":1.0,
"pchol_hs_c":-1.0,
"sphmyln180241_hs_c":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"259230_AT1 or 166929_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000176"
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},
{
"id":"DOPAENT4tc",
"name":"Dopa Transport by Ent4",
"metabolites":{
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"dopa_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"222962_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"SMS2",
"name":"Sphingomyelin Synthase, Formation of Sm (D18:1/15:0)",
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"dag_hs_c":1.0,
"pchol_hs_c":-1.0,
"sphmyln18115_hs_c":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"259230_AT1 or 166929_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"MAGLINL_HSe",
"name":"Lipase, Extracellular, Formation of 1-Linoleoylglycerol",
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"h2o_e":-1.0,
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},
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"subsystem":"Glycerophospholipid metabolism",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"SMS3",
"name":"Sphingomyelin Synthase, Formation of Sm (D18:1/16:1)",
"metabolites":{
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"dag_hs_c":1.0,
"pchol_hs_c":-1.0,
"sphmyln181161_hs_c":1.0
},
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"gene_reaction_rule":"259230_AT1 or 166929_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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]
},
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}
},
{
"id":"SMS4",
"name":"Sphingomyelin Synthase, Formation of Sm (D18:1/16:0)",
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"dag_hs_c":1.0,
"pchol_hs_c":-1.0,
"sphmyln18116_hs_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"259230_AT1 or 166929_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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]
},
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],
"sbo":"SBO:0000176"
}
},
{
"id":"SMS5",
"name":"Sphingomyelin Synthase, Formation of Sm (D18:1/17:0)",
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"pchol_hs_c":-1.0,
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},
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"gene_reaction_rule":"259230_AT1 or 166929_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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]
},
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},
{
"id":"SMS8",
"name":"Sphingomyelin Synthase, Formation of Sm (D18:1/20:1)",
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"dag_hs_c":1.0,
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},
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"upper_bound":1000.0,
"gene_reaction_rule":"259230_AT1 or 166929_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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"SMS8"
]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"XOLEST182CEH",
"name":"Hydrolysis of 1-Linoleoyl-Cholesterol, Cholesterol-Ester (18:2, Delta 9, 12)",
"metabolites":{
"chsterol_l":1.0,
"h2o_l":-1.0,
"h_l":1.0,
"lnlc_l":1.0,
"xolest182_hs_l":-1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"3988_AT1 or 1056_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"XOLEST182CEH"
],
"sbo":"SBO:0000176"
}
},
{
"id":"XOLEST226CEH",
"name":"Hydrolysis of Cholesteryl Docosahexanoate, Cholesterol-Ester (22:6, Delta 4, 7, 10, 13, 16, 19)",
"metabolites":{
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"crvnc_l":1.0,
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"h_l":1.0,
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},
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"gene_reaction_rule":"3988_AT1 or 1056_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"LPS6e",
"name":"Lipase, Extracellular, Formation of 1-Stearoylglycerol",
"metabolites":{
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"h_e":1.0,
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"gene_reaction_rule":"4023_AT1 or 1056_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"LPS7e",
"name":"Lipase, Extracellular, Formation of 1-Linoleoylglycerol",
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"h2o_e":-1.0,
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},
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"gene_reaction_rule":"4023_AT1 or 1056_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"PCHOLOLE_HSPLA2",
"name":"Formation of 1-Oleoylglycerophosphocholine (Delta 9) by Phospholipase A2",
"metabolites":{
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"h2o_c":-1.0,
"h_c":1.0,
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"pcholole_hs_c":1.0
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"lower_bound":0.0,
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"subsystem":"Glycerophospholipid metabolism",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"PEOLE_HSPLA2",
"name":"Formation of 1-Oleoylglycerophosphoethanolamine (Delta 9) by Phospholipase A2",
"metabolites":{
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"h2o_c":-1.0,
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},
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"subsystem":"Glycerophospholipid metabolism",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"PCHOLPALME_HSPLA2",
"name":"Formation of 1-Palmitoleoylglycerophosphocholine (Delta 9) by Phospholipase A2",
"metabolites":{
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"h2o_c":-1.0,
"h_c":1.0,
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},
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"subsystem":"Glycerophospholipid metabolism",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"PAILPALM_HSPLA2",
"name":"Formation of 1-Palmitoylglycerophosphoinositol by Phospholipase A2",
"metabolites":{
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"h2o_c":-1.0,
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},
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"subsystem":"Glycerophospholipid metabolism",
"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000176"
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},
{
"id":"ESTRAABCtc",
"name":"17Beta-Estradiol 3-Glucosiduronic Acid Transport by ABCa8",
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"atp_c":-1.0,
"estradiolglc_c":1.0,
"estradiolglc_e":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
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"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOL2LINL_HSPLA2",
"name":"Formation of 2-Linoleoylglycerophosphocholine by Phospholipase A2",
"metabolites":{
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"h2o_c":-1.0,
"h_c":1.0,
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"pchol_hs_c":-1.0
},
"lower_bound":0.0,
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"subsystem":"Glycerophospholipid metabolism",
"notes":{
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]
},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"PE2LINL_HSPLA2",
"name":"Formation of 2-Linoleoylglycerophosphoethanolamine by Phospholipase A2",
"metabolites":{
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"h2o_c":-1.0,
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"pe_hs_c":-1.0
},
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"subsystem":"Glycerophospholipid metabolism",
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},
"annotation":{
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],
"sbo":"SBO:0000176"
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},
{
"id":"PCHOLN225_HSPLA2",
"name":"Formation of 1-Docosapentenoylglycerophosphocholine (Delta 7, 10, 13, 16, 19), Sn1-Lpc (22:5)-W3 by Phospholipase A2",
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},
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},
{
"id":"PCHOLN2254_HSPLA2",
"name":"Formation of 1-Docosapentenoylglycerophosphocholine (Delta 4, 7, 10, 13, 16), Sn1-Lpc (22:5)-W6 by Phospholipase A2",
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"subsystem":"Glycerophospholipid metabolism",
"notes":{
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},
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],
"sbo":"SBO:0000176"
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},
{
"id":"PEAR_HSPLA2",
"name":"Formation of 1-Arachidonoyl-Sn-Glycero-3-Phosphoethanolamine by Phospholipase A2",
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"sbo":"SBO:0000176"
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},
{
"id":"PCHOL2PALM_HSPLA2",
"name":"Formation of 2-Palmitoylglycerophosphocholine by Phospholipase A2",
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},
{
"id":"PCHOLAR_HSPLA2",
"name":"Formation of 1-Arachidonoyl-Glycero-3-Phosphocholine by Phospholipase A2",
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},
{
"id":"PCHOLN1836_HSPLA2",
"name":"Formation of 1-Octadeca-Trienoylglycerophosphocholine, Sn1-Lpc (18:3, Delta 6, 9, 12) by Phospholipase A2",
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},
{
"id":"PE203_HSPLA2",
"name":"Formation of 1-Eicosatrienoylglycerophosphoethanolamine (Delta 11, 14, 17), Lpe (20:3) by Phospholipase A2",
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},
{
"id":"PE226_HSPLA2",
"name":"Formation of 1-Docosahexenoylglyceroethanolamine (Delta 4, 7, 10, 13, 16, 19), Lpe (22:6) by Phospholipase A2",
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{
"id":"PE224_HSPLA2",
"name":"Formation of 1-Docosatetraenoyglycerophosphoethanolamine (22:4, Delta 7, 10, 13, 16) by Phospholipase A2",
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{
"id":"PEDH12_HSPLA2",
"name":"Formation of 1-Didecanoylglycerophosphoethanolamine (C12:0 Pe) by Phospholipase A2",
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},
{
"id":"PEDH13_HSPLA2",
"name":"Formation of 1-Tridecanoylglycerophosphoethanolamine (C13:0 Pe) by Phospholipase A2",
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"subsystem":"Glycerophospholipid metabolism",
"notes":{
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"annotation":{
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"sbo":"SBO:0000176"
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},
{
"id":"PEDH15_HSPLA2",
"name":"Formation of 1-Pentadecanoylglycerophosphoethanolamine (C15:0 Pe) by Phospholipase A2",
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"subsystem":"Glycerophospholipid metabolism",
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"sbo":"SBO:0000176"
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},
{
"id":"PCHOLN203_HSPLA2",
"name":"Formation of 1-Dihomo-Linolenoylglycerophosphocholine (20:3, Delta 8, 11, 14), Lysopc A C20:3 by Phospholipase A2",
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},
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},
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],
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}
},
{
"id":"ARACHETH",
"name":"Formation of O-Arachidonoyl Ethanolamine",
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},
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]
},
"annotation":{
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],
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},
{
"id":"BILIVERDt",
"name":"Transport of Biliverdin",
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]
},
"annotation":{
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],
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}
},
{
"id":"PCHOLN24_HSPLA2",
"name":"Formation of 1-Lignocericylglycerophosphocholine (24:0), Lysopc A C24 by Phospholipase A2",
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},
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}
},
{
"id":"PCHOLN261_HSPLA2",
"name":"Formation of Lysopc A C26:1 (Delta 5) by Phospholipase A2",
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},
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],
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}
},
{
"id":"ESTRSABCtc",
"name":"Estrone-Sulphate Transport by ABCa8",
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"subsystem":"Transport, extracellular",
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]
},
"annotation":{
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],
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}
},
{
"id":"PCHOLN281_HSPLA2",
"name":"Formation of Lysopc A C28:1 (Delta 5) by Phospholipase A2",
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]
},
"annotation":{
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],
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}
},
{
"id":"C02356t",
"name":"(S)-2-Aminobutanoate",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
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"subsystem":"Transport, extracellular",
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]
},
"annotation":{
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],
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}
},
{
"id":"PCHOLDOC_HSPLA2",
"name":"Formation of 1-Docosahexaenoylglycerophosphocholine by Phospholipase A2",
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"h_c":1.0,
"pchol_hs_c":-1.0,
"pcholdoc_hs_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"8398_AT1 or 5320_AT1 or 8398_AT2 or 50487_AT1 or 5321_AT1 or 81579_AT1 or 5322_AT1 or 64600_AT1 or 100137049_AT1 or 123745_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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]
},
"annotation":{
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],
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}
},
{
"id":"PCHOLDET_HSPLA2",
"name":"Formation of 1-Eicosatrienoylglycerophosphocholine (Delta 11, 14, 17) by Phospholipase A2",
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"h2o_c":-1.0,
"h_c":1.0,
"pchol_hs_c":-1.0,
"pcholet_hs_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"8398_AT1 or 5320_AT1 or 8398_AT2 or 50487_AT1 or 5321_AT1 or 81579_AT1 or 5322_AT1 or 64600_AT1 or 100137049_AT1 or 123745_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"PCHOLHEP_HSPLA2",
"name":"Formation of 1-Heptadecanoylglycerophosphocholine by Phospholipase A2",
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"h2o_c":-1.0,
"h_c":1.0,
"pchol_hs_c":-1.0,
"pcholhep_hs_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"8398_AT1 or 5320_AT1 or 8398_AT2 or 50487_AT1 or 5321_AT1 or 81579_AT1 or 5322_AT1 or 64600_AT1 or 100137049_AT1 or 123745_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"PELINL_HSPLA2",
"name":"Formation of 1-Linoleoylglycerophosphoethanolamine (Delta 9, 12) by Phospholipase A2",
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"h2o_c":-1.0,
"h_c":1.0,
"pe_hs_c":-1.0,
"pelinl_hs_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8398_AT1 or 5320_AT1 or 8398_AT2 or 50487_AT1 or 5321_AT1 or 81579_AT1 or 5322_AT1 or 64600_AT1 or 100137049_AT1 or 123745_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"C02712te",
"name":"Transport of N-Acetylmethionine, Extracellular",
"metabolites":{
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"C02712_e":1.0,
"na1_c":-1.0,
"na1_e":1.0
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"lower_bound":-1000.0,
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"gene_reaction_rule":"64849_AT1",
"subsystem":"Transport, extracellular",
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},
"annotation":{
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],
"sbo":"SBO:0000185"
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},
{
"id":"C02712tm",
"name":"Transport of N-Acetylmethionine, Intracellular",
"metabolites":{
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},
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"upper_bound":1000.0,
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},
"annotation":{
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},
{
"id":"FOLABCCte",
"name":"Folate Transport by ABCa11",
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"atp_c":-1.0,
"fol_c":-1.0,
"fol_e":1.0,
"h2o_c":-1.0,
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},
"lower_bound":0.0,
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"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"C03990tr",
"name":"Transport of Lithocholate, Intracellular",
"metabolites":{
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"HC02191_r":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
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"subsystem":"Transport, endoplasmic reticular",
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},
"annotation":{
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"sbo":"SBO:0000185"
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},
{
"id":"FOLOAT2tc",
"name":"Folate Transport by Oats",
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"so4_c":-1.0,
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},
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},
{
"id":"C03990tx",
"name":"Transport of Lithocholate, Intracellular",
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},
{
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"hco3_c":1.0,
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"annotation":{
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},
{
"id":"C04717ATP",
"name":"Transport of 13(S)-HPODE, Active",
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"annotation":{
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},
{
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},
"annotation":{
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"ec-code":[
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"kegg.reaction":[
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],
"metanetx.reaction":[
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"16646",
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"seed.reaction":[
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}
},
{
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},
{
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"h2o_c":-1.0,
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},
{
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},
{
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},
{
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"glyc3p_c":1.0
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},
{
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},
{
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"phlac_c":-1.0,
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},
{
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},
{
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},
{
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},
{
"id":"C05953t",
"name":"Transport of Prostaglandin A2, Lactate Antiport",
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"lac__L_c":1.0,
"lac__L_e":-1.0
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},
{
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},
{
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"lac__L_c":1.0,
"lac__L_e":-1.0
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"annotation":{
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"sbo":"SBO:0000185"
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},
{
"id":"12HPETATP",
"name":"Transport of 12-Hydroperoxyeicosa-5, 8, 10, 14-Tetraenoate, by FATP",
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"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"12HPETATP"
]
},
"annotation":{
"bigg.reaction":[
"12HPETATP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"15HPETATP",
"name":"Transport of 15(S)-HPETE, Active Transport",
"metabolites":{
"15HPET_c":-1.0,
"15HPET_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"15HPETATP"
]
},
"annotation":{
"bigg.reaction":[
"15HPETATP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C11695td",
"name":"Transport of Anandamide, Diffusion",
"metabolites":{
"C11695_c":-1.0,
"C11695_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C11695td"
]
},
"annotation":{
"bigg.reaction":[
"C11695td"
],
"sbo":"SBO:0000185"
}
},
{
"id":"21HPRGNLONEt1",
"name":"Transport of 21-Hydroxypregnenolone, Active Transport",
"metabolites":{
"21hprgnlone_c":-1.0,
"21hprgnlone_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"21HPRGNLONEt1"
]
},
"annotation":{
"bigg.reaction":[
"21HPRGNLONEt1"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C14768td",
"name":"Transport of 5, 6-EET, Diffusion",
"metabolites":{
"C14768_c":-1.0,
"C14768_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C14768td"
]
},
"annotation":{
"bigg.reaction":[
"C14768td"
],
"sbo":"SBO:0000185"
}
},
{
"id":"2OXOADPt",
"name":"Transport of 2-Oxoadipate by Alpha-Ketoglutarate Antiport",
"metabolites":{
"2oxoadp_c":-1.0,
"2oxoadp_e":1.0,
"akg_c":1.0,
"akg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"2OXOADPt"
]
},
"annotation":{
"bigg.reaction":[
"2OXOADPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GABABGTtc",
"name":"GABA Transport by Bgt",
"metabolites":{
"4abut_c":1.0,
"4abut_e":-1.0,
"cl_c":1.0,
"cl_e":-1.0,
"na1_c":1.0,
"na1_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6539_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GABABGTtc"
]
},
"annotation":{
"bigg.reaction":[
"GABABGTtc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"3HPPNOHGLUCte",
"name":"Transport of 3- (3-Hydroxy-Phenyl)Propionate Hydroxy Derivative Glucuronide into Urine",
"metabolites":{
"3hpppnohgluc_c":-1.0,
"3hpppnohgluc_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"3HPPNOHGLUCte"
]
},
"annotation":{
"bigg.reaction":[
"3HPPNOHGLUCte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLUB0AT3tc",
"name":"Glutamate Transport by B0At3",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"glu__L_c":1.0,
"glu__L_e":-1.0,
"na1_c":1.0,
"na1_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"348932_AT1 and 57393_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLUB0AT3tc"
]
},
"annotation":{
"bigg.reaction":[
"GLUB0AT3tc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"3HPPt",
"name":"Transpot of 3-Hydroxypropionate",
"metabolites":{
"3hpp_c":-1.0,
"3hpp_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"3HPPt"
]
},
"annotation":{
"bigg.reaction":[
"3HPPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"3MHISt1",
"name":"Transport of Methyl-Histidine by System N Transport",
"metabolites":{
"3mhis_c":-1.0,
"3mhis_e":1.0,
"na1_c":-1.0,
"na1_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"3MHISt1"
]
},
"annotation":{
"bigg.reaction":[
"3MHISt1"
],
"sbo":"SBO:0000185"
}
},
{
"id":"3MHISt2",
"name":"Transport of Methyl-Histidine by System L Transport (Lat1)",
"metabolites":{
"3mhis_c":1.0,
"3mhis_e":-1.0,
"leu__L_c":-1.0,
"leu__L_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"3MHISt2"
]
},
"annotation":{
"bigg.reaction":[
"3MHISt2"
],
"sbo":"SBO:0000185"
}
},
{
"id":"3MOXTYRt",
"name":"Transport of 3-Methoxytyramine, Diffusion",
"metabolites":{
"3moxtyr_c":-1.0,
"3moxtyr_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"3MOXTYRt"
]
},
"annotation":{
"bigg.reaction":[
"3MOXTYRt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"3UIBtd",
"name":"Transport of 3-Ureidoisobutyrate, Diffusion",
"metabolites":{
"3uib_c":-1.0,
"3uib_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"3UIBtd"
]
},
"annotation":{
"bigg.reaction":[
"3UIBtd"
],
"sbo":"SBO:0000185"
}
},
{
"id":"56DTHMt",
"name":"Transport of 5, 6-Dihydrothymine, Sodium Symport",
"metabolites":{
"56dthm_c":-1.0,
"56dthm_e":1.0,
"na1_c":-1.0,
"na1_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"56DTHMt"
]
},
"annotation":{
"bigg.reaction":[
"56DTHMt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_C14769_e",
"name":"Exchange of 8, 9-EET",
"metabolites":{
"C14769_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_C14769[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_C14769_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"C14770ATP",
"name":"Transport of 11, 12-EET, FATP",
"metabolites":{
"C14770_c":-1.0,
"C14770_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C14770ATP"
]
},
"annotation":{
"bigg.reaction":[
"C14770ATP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C14826ATP",
"name":"Transport of 12 (13)-Epome, FATP",
"metabolites":{
"C14826_c":-1.0,
"C14826_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C14826ATP"
]
},
"annotation":{
"bigg.reaction":[
"C14826ATP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE0328t",
"name":"Transport of Docosahexaenoate",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"crvnc_c":-1.0,
"crvnc_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE0328t"
]
},
"annotation":{
"bigg.reaction":[
"CE0328t"
],
"sbo":"SBO:0000185"
}
},
{
"id":"56DURAtd",
"name":"Transport of 5, 6-Dihydrouracil, Diffusion",
"metabolites":{
"56dura_c":-1.0,
"56dura_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"56DURAtd"
]
},
"annotation":{
"bigg.reaction":[
"56DURAtd"
],
"sbo":"SBO:0000185"
}
},
{
"id":"7DHCHSTEROLtd",
"name":"Transport of Cholesta-5, 7-Dien-3Beta-Ol, Diffusion",
"metabolites":{
"7dhchsterol_c":-1.0,
"7dhchsterol_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"7DHCHSTEROLtd"
]
},
"annotation":{
"bigg.reaction":[
"7DHCHSTEROLtd"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE1243ATP",
"name":"Transport of 12S-HHT, FATP",
"metabolites":{
"CE1243_c":-1.0,
"CE1243_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE1243ATP"
]
},
"annotation":{
"bigg.reaction":[
"CE1243ATP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLYB0AT3tc",
"name":"Glycine Transport by B0At3",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"gly_c":1.0,
"gly_e":-1.0,
"na1_c":1.0,
"na1_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"348932_AT1 and 57393_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
"GLYB0AT3tc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE1556td",
"name":"Transport of N-Acetyl-L-Asparagine",
"metabolites":{
"CE1556_c":-1.0,
"CE1556_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE1556td"
]
},
"annotation":{
"bigg.reaction":[
"CE1556td"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE2028t",
"name":"Transport for Beta-Hydroxy-Beta-Methylbutyrate",
"metabolites":{
"CE2028_c":-1.0,
"CE2028_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE2028t"
]
},
"annotation":{
"bigg.reaction":[
"CE2028t"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ACGLUtd",
"name":"Transport of N-Acetyl-L-Glutamate, Diffusion",
"metabolites":{
"acglu_c":-1.0,
"acglu_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ACGLUtd"
]
},
"annotation":{
"bigg.reaction":[
"ACGLUtd"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ACGLYte",
"name":"Extracellular Transport of Acetyl-Glycine ",
"metabolites":{
"acgly_c":-1.0,
"acgly_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ACGLYte"
]
},
"annotation":{
"bigg.reaction":[
"ACGLYte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ACORNt",
"name":"Diffusion of N(2)-Acetyl-L-Ornithine",
"metabolites":{
"acorn_c":-1.0,
"acorn_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ACORNt"
]
},
"annotation":{
"bigg.reaction":[
"ACORNt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"NRVNCt",
"name":"Fatty acid transport via diffusion",
"metabolites":{
"nrvnc_c":1.0,
"nrvnc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"CE4843td",
"name":"Transport of Cis, Cis-11, 14-Eicosadienoyl Coenzyme A, Diffusion",
"metabolites":{
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"eidi1114ac_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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"CE4843td"
]
},
"annotation":{
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"CE4843td"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ACTHRtc",
"name":"Intra-Cellular Transport of Acetyl-Threonine ",
"metabolites":{
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"acthr__L_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, mitochondrial",
"notes":{
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"ACTHRtc"
]
},
"annotation":{
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"ACTHRtc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE6247t",
"name":"Transport of 5, 12, 20-Trihete, Active Transport",
"metabolites":{
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"CE6247_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"H2OGLYAQPt",
"name":"Water And Glycerol Transport by Aqp",
"metabolites":{
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"glyc_e":-1.0,
"h2o_c":1.0,
"h2o_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"360_AT1 or 364_AT1 or 366_AT1 or 89872_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"CE7083t",
"name":"Transport of Leukotriene B5, Active Transport",
"metabolites":{
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"CE7083_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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"CE7083t"
]
},
"annotation":{
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"CE7083t"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ACTHRte",
"name":"Extracellular Transport of Acetyl-Threonine",
"metabolites":{
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"acthr__L_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"AND19ONEt",
"name":"Secretion of 19-Hydroxyandrost-4-Ene-3, 17-Dione",
"metabolites":{
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"and19one_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"CE7172ATP",
"name":"Transport of 14, 15-DIHETE, Active Transport",
"metabolites":{
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"CE7172_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"ILEB0AT3tc",
"name":"Iso-Leucine Transport by B0At3",
"metabolites":{
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"cl_e":-1.0,
"ile__L_c":1.0,
"ile__L_e":-1.0,
"na1_c":1.0,
"na1_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"348932_AT1 and 57393_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"DOCOHEXETHc",
"name":"Formation of Docosahexaenoyl Ethanolamide",
"metabolites":{
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"h2o_e":-1.0,
"pa_hs_e":1.0,
"pe226_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5337_AT1 or 5338_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"DOCTETETH",
"name":"Formation of Docosatetraenoyl Ethanolamide (22:4, Delta 7, 10, 13, 16)",
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"h2o_e":-1.0,
"pa_hs_e":1.0,
"pe224_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5337_AT1 or 5338_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
"original_bigg_ids":[
"DOCTETETH"
]
},
"annotation":{
"bigg.reaction":[
"DOCTETETH"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LEUB0AT3tc",
"name":"Leucine Transport by B0At3",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"leu__L_c":1.0,
"leu__L_e":-1.0,
"na1_c":1.0,
"na1_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"348932_AT1 and 57393_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LEUB0AT3tc"
]
},
"annotation":{
"bigg.reaction":[
"LEUB0AT3tc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DODECANACt",
"name":"Transport of Dodecanedioic Acid by FATP",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"dodecanac_c":-1.0,
"dodecanac_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"DODECANACt"
]
},
"annotation":{
"bigg.reaction":[
"DODECANACt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DODECANACtd",
"name":"Transport of Dodecanedioic Acid by Diffusion",
"metabolites":{
"dodecanac_c":-1.0,
"dodecanac_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"DODECANACtd"
]
},
"annotation":{
"bigg.reaction":[
"DODECANACtd"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_56dthm_e",
"name":"Exchange of 5, 6-Dihydrothymine",
"metabolites":{
"56dthm_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_56dthm[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_56dthm_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_56dura_e",
"name":"Exchange of 5, 6-Dihydrouracil",
"metabolites":{
"56dura_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_56dura[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_56dura_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_5HPET_e",
"name":"Exchange of 5(S)-HPETE",
"metabolites":{
"5HPET_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_5HPET[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_5HPET_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_acthr__L_e",
"name":"Exchange of Acetyl-Threonine",
"metabolites":{
"acthr__L_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_acthr_L[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_acthr__L_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_adpoh_e",
"name":"Exchange of 2-Hydroxyadipic Acid",
"metabolites":{
"adpoh_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_adpoh[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_adpoh_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_amet_e",
"name":"S Adenosyl L methionine exchange",
"metabolites":{
"amet_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_amet[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_amet_e"
],
"metanetx.reaction":[
"MNXR95809"
],
"sabiork":[
"13614"
],
"sbo":"SBO:0000627",
"seed.reaction":[
"rxn09826",
"rxn09784"
]
}
},
{
"id":"ELAIDCRNtd",
"name":"Transport of Elaidic Carnitine by Diffusion",
"metabolites":{
"elaidcrn_c":-1.0,
"elaidcrn_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ELAIDCRNtd"
]
},
"annotation":{
"bigg.reaction":[
"ELAIDCRNtd"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_15HPET_e",
"name":"Exchange of 15(S)-HPETE",
"metabolites":{
"15HPET_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_15HPET[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_15HPET_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_15kprostgf2_e",
"name":"Exchange of 15-Keto-Prostaglandin F2A",
"metabolites":{
"15kprostgf2_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_15kprostgf2[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_15kprostgf2_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_21hprgnlone_e",
"name":"Exchange of 21-Hydroxypregnenolone",
"metabolites":{
"21hprgnlone_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_21hprgnlone[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_21hprgnlone_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_3hmp_e",
"name":"Exchange of 3-Hydroxy-2-Methylpropanoate",
"metabolites":{
"3hmp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_3hmp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_3hmp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_3mhis_e",
"name":"Exchange of Methyl-Histidine",
"metabolites":{
"3mhis_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_3mhis[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_3mhis_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_and19one_e",
"name":"Exchange of 19-Hydroxyandrost-4-Ene-3, 17-Dione",
"metabolites":{
"and19one_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_and19one[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_and19one_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_aracheth_e",
"name":"Exchange of O-Arachidonoyl Ethanolamine",
"metabolites":{
"aracheth_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_aracheth[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_aracheth_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_C02356_e",
"name":"(S)-2-Aminobutanoate",
"metabolites":{
"C02356_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_C02356[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_C02356_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_C02712_e",
"name":"Exchange of N-Acetylmethionine",
"metabolites":{
"C02712_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_C02712[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_C02712_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_C04717_e",
"name":"Exchange of 13(S)-HPODE",
"metabolites":{
"C04717_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_C04717[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_C04717_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"LGNCFATPtc",
"name":"Lignocerate Transport by FATP",
"metabolites":{
"amp_c":1.0,
"atp_c":-1.0,
"coa_c":-1.0,
"lgnc_e":-1.0,
"ppi_c":1.0,
"ttccoa_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"376497_AT1 or 11001_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LGNCFATPtc"
]
},
"annotation":{
"bigg.reaction":[
"LGNCFATPtc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_C05957_e",
"name":"Exchange of Prostaglandin J2",
"metabolites":{
"C05957_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_C05957[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_C05957_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"METB0AT3tc",
"name":"Methionine Transport by B0At3",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"met__L_c":1.0,
"met__L_e":-1.0,
"na1_c":1.0,
"na1_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"348932_AT1 and 57393_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"METB0AT3tc"
]
},
"annotation":{
"bigg.reaction":[
"METB0AT3tc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_C06314_e",
"name":"Exchange of Lipoxin A4",
"metabolites":{
"C06314_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_C06314[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_C06314_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholet_hs_e",
"name":"Exchange of 1-Eicosatrienoylglycerophosphocholine (Delta 11, 14, 17)",
"metabolites":{
"pcholet_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholet_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholet_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_C14771_e",
"name":"Exchange of 14, 15-EET",
"metabolites":{
"C14771_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_C14771[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_C14771_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"NACSMCTte",
"name":"Nicotinate Transport by Smct1",
"metabolites":{
"na1_c":1.0,
"na1_e":-1.0,
"nac_c":1.0,
"nac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"160728_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"NACSMCTte"
]
},
"annotation":{
"bigg.reaction":[
"NACSMCTte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_CE1273_e",
"name":"Transport of 5Beta-Cholestane-3Alpha, 7Alpha, 12Alpha, 24S, 25-Pentol, ABC Transport",
"metabolites":{
"CE1273_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE1273[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_CE1273_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_CE2176_e",
"name":"Exchange of 3-O-Methyldopa",
"metabolites":{
"CE2176_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE2176[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_CE2176_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholn201_hs_e",
"name":"Exchange of 1-Eicosenoylglycerophosphocholine (Delta 11) , Sn1-Lpc (20:1)",
"metabolites":{
"pcholn201_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholn201_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholn201_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholn205_hs_e",
"name":"Exchange of 1-Eicosapentenoylglycerophosphocholine (Delta 5, 8, 11, 14, 17), Sn1-Lpc (20:5)",
"metabolites":{
"pcholn205_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholn205_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholn205_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholn226_hs_e",
"name":"Exchange of 1-Docosahexenoylglycerophosphocholine (Delta 4, 7, 10, 13, 16, 19), Sn1-Lpc (22:6)",
"metabolites":{
"pcholn226_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholn226_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholn226_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholn24_hs_e",
"name":"Exchange of 1-Lignocericylglycerophosphocholine (24:0), Lysopc A C24",
"metabolites":{
"pcholn24_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholn24_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholn24_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_eidi1114ac_e",
"name":"Exchange of Cis, Cis-11, 14-Eicosadienoyl Coenzyme A",
"metabolites":{
"eidi1114ac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE4843[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_eidi1114ac_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"PGLYCABCte",
"name":"Phosphatidylglycerol Transport by ABCa3",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pglyc_hs_c":-1.0,
"pglyc_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"21_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PGLYCABCte"
]
},
"annotation":{
"bigg.reaction":[
"PGLYCABCte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_CE6031_e",
"name":"Exchange of Androsterone Sulfate",
"metabolites":{
"CE6031_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE6031[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_CE6031_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_CE7082_e",
"name":"Exchange of 15(S)-HEPE",
"metabolites":{
"CE7082_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE7082[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_CE7082_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholn261_hs_e",
"name":"Exchange of Lysopc A C26:1 (Delta 5)",
"metabolites":{
"pcholn261_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholn261_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholn261_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholpalm_hs_e",
"name":"Exchange of 1-Palmitoylglycerophosphocholine",
"metabolites":{
"pcholpalm_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholpalm_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholpalm_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pe14_hs_e",
"name":"Exchange of 1-Myristoylglycerophosphoethanolamine (C14:0 Pe)",
"metabolites":{
"pe14_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pe14_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pe14_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pe15_hs_e",
"name":"Exchange of 1-Pentadecanoylglycerophosphoethanolamine (C15:0 Pe)",
"metabolites":{
"pe15_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pe15_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pe15_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pe161_hs_e",
"name":"Exchange of 1-Hexadecenoylglycerophosphoethanolamine (C16:1 Pe, Delta 9)",
"metabolites":{
"pe161_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pe161_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pe161_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pe203_hs_e",
"name":"Exchange of 1-Eicosatrienoylglycerophosphoethanolamine (Delta 11, 14, 17), Lpe (20:3)",
"metabolites":{
"pe203_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pe203_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pe203_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pe226_hs_e",
"name":"Exchange of 1-Docosahexenoylglyceroethanolamine (Delta 4, 7, 10, 13, 16, 19), Lpe (22:6)",
"metabolites":{
"pe226_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pe226_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pe226_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_CE7083_e",
"name":"Exchange of Leukotriene B5",
"metabolites":{
"CE7083_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE7083[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_CE7083_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_docohxeth_e",
"name":"Exchange of Docosahexaenoyl Ethanolamide",
"metabolites":{
"docohxeth_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_docohxeth[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_docohxeth_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_elaidcrn_e",
"name":"Exchange of Elaidic Carnitine",
"metabolites":{
"elaidcrn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_elaidcrn[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_elaidcrn_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_HC00900_e",
"name":"Exchange of Methylmalonate",
"metabolites":{
"HC00900_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_HC00900[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_HC00900_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hexdiac_e",
"name":"Exchange of Hexadecanediocacid",
"metabolites":{
"hexdiac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hexdiac[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hexdiac_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hgentis_e",
"name":"Exchange of Homogentisate",
"metabolites":{
"hgentis_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hgentis[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hgentis_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_leuktrB4wcooh_e",
"name":"Exchange of W-Carboxy Leukotriene B4",
"metabolites":{
"leuktrB4wcooh_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_leuktrB4wcooh[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_leuktrB4wcooh_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pe2linl_hs_e",
"name":"Exchange of 2-Linoleoylglycerophosphoethanolamine",
"metabolites":{
"pe2linl_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pe2linl_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pe2linl_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pear_hs_e",
"name":"Exchange of 1-Arachidonoyl-Sn-Glycero-3-Phosphoethanolamine",
"metabolites":{
"pear_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pear_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pear_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pendecaeth_e",
"name":"Exchange of Pentadecanoyl Thanolamide (C15:0)",
"metabolites":{
"pendecaeth_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pendecaeth[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pendecaeth_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_lineth_e",
"name":"Exchange of Linoleoyl Ethanolamide",
"metabolites":{
"lineth_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lineth[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lineth_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"PHEMEABCte",
"name":"Heme Transport by ABCg2",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pheme_c":-1.0,
"pheme_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PHEMEABCte"
]
},
"annotation":{
"bigg.reaction":[
"PHEMEABCte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_lnlccrn_e",
"name":"Exchange of Linoleyl Carnitine",
"metabolites":{
"lnlccrn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lnlccrn[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lnlccrn_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_Lpipecol_e",
"name":"Exchange of L-Pipecolic Acid",
"metabolites":{
"Lpipecol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_Lpipecol[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_Lpipecol_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pepalm_hs_e",
"name":"Exchange of 1-Palmitoylglycerophosphoethanolamine",
"metabolites":{
"pepalm_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pepalm_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pepalm_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_peste_hs_e",
"name":"Exchange of 1-Stearoylglycerophosphoethanolamine",
"metabolites":{
"peste_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_peste_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_peste_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pmeth_e",
"name":"Exchange of Palmitoylethanolamide",
"metabolites":{
"pmeth_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pmeth[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pmeth_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_lthstrl_e",
"name":"Exchange of Lathosterol",
"metabolites":{
"lthstrl_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lthstrl[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lthstrl_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_maglinl_hs_e",
"name":"Exchange of 1-Linoleoylglycerol",
"metabolites":{
"maglinl_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_maglinl_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_maglinl_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_sebacid_e",
"name":"Exchange of Sebacic Acid",
"metabolites":{
"sebacid_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_sebacid[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_sebacid_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_sphmyln180241_hs_e",
"name":"Exchange of Sphingomyelin (D18:0/24:1)",
"metabolites":{
"sphmyln180241_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_sphmyln180241_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_sphmyln180241_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_magste_hs_e",
"name":"Exchange of 1-Stearoylglycerol",
"metabolites":{
"magste_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_magste_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_magste_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_mev__R_e",
"name":"Exchange of (R)-Mevalonate",
"metabolites":{
"mev__R_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_mev_R[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_mev__R_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_sphmyln18114_hs_e",
"name":"Exchange of Sphingomyelin (D18:1/14:0)",
"metabolites":{
"sphmyln18114_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_sphmyln18114_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_sphmyln18114_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_sphmyln18115_hs_e",
"name":"Exchange of Sphingomyelin (D18:1/15:0)",
"metabolites":{
"sphmyln18115_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_sphmyln18115_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_sphmyln18115_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pailpalm_hs_e",
"name":"Exchange of 1-Palmitoylglycerophosphoinositol",
"metabolites":{
"pailpalm_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pailpalm_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pailpalm_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pailste_hs_e",
"name":"Exchange of 1-Stearoylglycerophosphoinositol",
"metabolites":{
"pailste_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pailste_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pailste_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_sphmyln18116_hs_e",
"name":"Exchange of Sphingomyelin (D18:1/16:0)",
"metabolites":{
"sphmyln18116_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_sphmyln18116_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_sphmyln18116_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pchol2linl_hs_e",
"name":"Exchange of 2-Linoleoylglycerophosphocholine",
"metabolites":{
"pchol2linl_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pchol2linl_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pchol2linl_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pchol2ole_hs_e",
"name":"Exchange of 2-Oleoylglycerophosphocholine",
"metabolites":{
"pchol2ole_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pchol2ole_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pchol2ole_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pchol2palm_hs_e",
"name":"Exchange of 2-Palmitoylglycerophosphocholine",
"metabolites":{
"pchol2palm_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pchol2palm_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pchol2palm_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholar_hs_e",
"name":"Exchange of 1-Arachidonoyl-Glycero-3-Phosphocholine",
"metabolites":{
"pcholar_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholar_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholar_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_sphmyln181181_hs_e",
"name":"Exchange of Sphingomyelin (D18:1/18:1)",
"metabolites":{
"sphmyln181181_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_sphmyln181181_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_sphmyln181181_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_sphmyln18120_hs_e",
"name":"Exchange of Sphingomyelin (D18:1/20:0)",
"metabolites":{
"sphmyln18120_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_sphmyln18120_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_sphmyln18120_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_sphmyln18121_hs_e",
"name":"Exchange of Sphingomyelin (D18:1/21:0)",
"metabolites":{
"sphmyln18121_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_sphmyln18121_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_sphmyln18121_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_sphmyln18122_hs_e",
"name":"Exchange of Sphingomyelin (D18:1/22:0)",
"metabolites":{
"sphmyln18122_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_sphmyln18122_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_sphmyln18122_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_sphmyln181221_hs_e",
"name":"Exchange of Sphingomyelin (D18:1/22:1)",
"metabolites":{
"sphmyln181221_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_sphmyln181221_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_sphmyln181221_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_subeac_e",
"name":"Exchange of Suberic Acid",
"metabolites":{
"subeac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_subeac[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_subeac_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"GALTt",
"name":"Transport of Galactitol",
"metabolites":{
"galt_c":-1.0,
"galt_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GALTt"
]
},
"annotation":{
"bigg.reaction":[
"GALTt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_tetdeca511ac_e",
"name":"Exchange of Cis-5, 8-Tetradecadienoic Acid ",
"metabolites":{
"tetdeca511ac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tetdeca511ac[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tetdeca511ac_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"PPASMCT1",
"name":"Propionate Transport by Smct1",
"metabolites":{
"na1_c":1.0,
"na1_e":-1.0,
"ppa_c":1.0,
"ppa_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"160728_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PPASMCT1"
]
},
"annotation":{
"bigg.reaction":[
"PPASMCT1"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_thrnt_e",
"name":"Exchange of L-Threonate",
"metabolites":{
"thrnt_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_thrnt[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_thrnt_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"GLYC2Pte",
"name":"Transport of Glycerol-2-Phosphate",
"metabolites":{
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},
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}
},
{
"id":"GLYCLTt",
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"upper_bound":1000.0,
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},
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"29449",
"29447"
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}
},
{
"id":"HC00319t2",
"name":"Malonate Transport, Antiport with Bicarbonate",
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},
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],
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}
},
{
"id":"HC00900t1",
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},
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],
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}
},
{
"id":"EX_ttdcrn_e",
"name":"Exchange reaction for myristoyl carnitine",
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"upper_bound":1000.0,
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},
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}
},
{
"id":"EX_txb2_e",
"name":"Exchange of Thromboxane B2",
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"txb2_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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]
},
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"sbo":"SBO:0000627"
}
},
{
"id":"EX_wharachd_e",
"name":"20-hydroxy-arachidonate exchange",
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"wharachd_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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"notes":{
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},
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"metanetx.reaction":[
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"sbo":"SBO:0000627"
}
},
{
"id":"HC00900t2",
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"upper_bound":1000.0,
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]
},
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],
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}
},
{
"id":"HC00900t3",
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"tsul_c":1.0,
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]
},
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],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_xolest181_hs_e",
"name":"Exchange of 1-Vaccenoyl-Cholesterol, Cholesterol-Ester (18:1, Delta 11)",
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},
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},
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}
},
{
"id":"PROPAT4te",
"name":"Transport of Proline via Pat4",
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"pro__L_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"120103_AT1",
"subsystem":"Transport, extracellular",
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_xolest182_hs_e",
"name":"Exchange of 1-Linoleoyl-Cholesterol, Cholesterol-Ester (18:2, Delta 9, 12)",
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},
"lower_bound":-1000.0,
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},
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}
},
{
"id":"HC00900t4",
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"pi_c":1.0,
"pi_e":-1.0
},
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"upper_bound":1000.0,
"gene_reaction_rule":"",
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]
},
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HEXDECEETH",
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"pa_hs_e":1.0,
"pe161_hs_e":-1.0
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"upper_bound":1000.0,
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},
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"sbo":"SBO:0000176"
}
},
{
"id":"EX_xolest204_hs_e",
"name":"Exchange of Cholesteryl Arachidonate, Cholesterol-Ester (20:4, Delta 5, 8, 11, 14)",
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},
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},
{
"id":"FORGLUt",
"name":"Transport of N-Formimidoyl-L-Glutamate",
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"forglu_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
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]
},
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HEXDIACATP",
"name":"Transport of Hexadecanediocacid by FATP",
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"pi_c":1.0
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]
},
"annotation":{
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}
},
{
"id":"PYRSMCT1",
"name":"Pyruvate Transport by Smct1",
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"pyr_c":1.0,
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},
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},
{
"id":"HGENTISt",
"name":"Transport of Homogentisate",
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"hgentis_e":1.0
},
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"upper_bound":1000.0,
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"subsystem":"Transport, extracellular",
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},
{
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"name":"Transport of Homocitrulline",
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},
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},
{
"id":"HXCOAx",
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"h2o_x":-1.0,
"h_x":1.0,
"hxa_x":1.0,
"hxcoa_x":-1.0
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},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"RETABCtc",
"name":"Vitamin Transport by ABCa4",
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"h2o_c":-1.0,
"h_c":1.0,
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"retinal_c":1.0,
"retinal_e":-1.0
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},
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}
},
{
"id":"LCYSTt",
"name":"Transport of L-Cysteate, Taurine Transport System",
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"Lcyst_e":-1.0,
"cl_c":1.0,
"cl_e":-1.0,
"na1_c":2.0,
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},
{
"id":"LEUKTRB4WCOOHt",
"name":"Transport of W-Carboxy Leukotriene B4, Active Transport",
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"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"leuktrB4wcooh_c":-1.0,
"leuktrB4wcooh_e":1.0,
"pi_c":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
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},
{
"id":"LEUKTRB4WOHt",
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},
{
"id":"EX_achom__L_e",
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"upper_bound":1000.0,
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},
{
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},
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},
{
"id":"EX_phacgly_e",
"name":"Exchange of Phenylacetylglycine",
"metabolites":{
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},
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"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
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},
{
"id":"ESTRIOLATP",
"name":"Transport of Estriol",
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"estriol_e":1.0,
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"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
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},
"annotation":{
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}
},
{
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},
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},
{
"id":"EX_3moxtyr_e",
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},
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"upper_bound":1000.0,
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},
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"sbo":"SBO:0000627"
}
},
{
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},
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},
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}
},
{
"id":"EX_glyc2p_e",
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},
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"upper_bound":1000.0,
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},
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}
},
{
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},
"annotation":{
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}
},
{
"id":"LNLCCRNtd",
"name":"Transport of Linoleyl Carnitine, Diffusion",
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"lnlccrn_e":1.0
},
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},
{
"id":"LPIPECOLt",
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},
"annotation":{
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},
{
"id":"EX_glyclt_e",
"name":"Glycolate exchange",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
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"metanetx.reaction":[
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"29447"
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"sabiork":[
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],
"sbo":"SBO:0000627",
"seed.reaction":[
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}
},
{
"id":"SERB0AT3tc",
"name":"Serine Transport by B0At3",
"metabolites":{
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"cl_e":-1.0,
"na1_c":1.0,
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"ser__L_c":1.0,
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},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"348932_AT1 and 57393_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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}
},
{
"id":"EX_oaa_e",
"name":"Oxaloacetate exchange",
"metabolites":{
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},
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"EX_alaarggly_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pheacgly_e",
"name":"Exchange of Phenylacetylglycine ",
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"pheacgly_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pheacgly[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pheacgly_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_bz_e",
"name":"Benzoate exchange",
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"bz_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_bz[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_bz_e"
],
"metanetx.reaction":[
"MNXR96370"
],
"rhea":[
"32812",
"32813",
"32811",
"32814"
],
"sbo":"SBO:0000627",
"seed.reaction":[
"rxn12436"
]
}
},
{
"id":"EX_alaglylys_e",
"name":"Exchange of AlaGlyLys",
"metabolites":{
"alaglylys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_alaglylys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_alaglylys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcresol_e",
"name":"P-Cresol Exchange",
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"pcresol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcresol[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcresol_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcs_e",
"name":"Exchange of P-Cresol Sulfate ",
"metabolites":{
"pcs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"NORMETEt",
"name":"Transport of L-Normetanephrine",
"metabolites":{
"normete__L_c":1.0,
"normete__L_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"NORMETEt"
]
},
"annotation":{
"bigg.reaction":[
"NORMETEt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_hisargser_e",
"name":"Exchange of HisArgSer",
"metabolites":{
"hisargser_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hisargser[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hisargser_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hiscyscys_e",
"name":"Exchange of HisCysCys",
"metabolites":{
"hiscyscys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hiscyscys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hiscyscys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_alahisala_e",
"name":"Exchange of AlaHisAla",
"metabolites":{
"alahisala_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_alahisala[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_alahisala_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hisglu_e",
"name":"Exchange of HisGlu",
"metabolites":{
"hisglu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hisglu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hisglu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"C05300t",
"name":"Transport of 16Alpha-Hydroxyestrone",
"metabolites":{
"C05300_c":-1.0,
"C05300_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C05300t"
]
},
"annotation":{
"bigg.reaction":[
"C05300t"
],
"sbo":"SBO:0000185"
}
},
{
"id":"RETINALt",
"name":"Transport of Retinal",
"metabolites":{
"retinal_c":-1.0,
"retinal_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"RETINALt"
]
},
"annotation":{
"bigg.reaction":[
"RETINALt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"MALTTTRt",
"name":"Transport of Maltotetraose, Reversible",
"metabolites":{
"maltttr_c":1.0,
"maltttr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"MALTTTRt"
]
},
"annotation":{
"bigg.reaction":[
"MALTTTRt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"1MNCAMt",
"name":"Transport of 1-Methylnicotinamide",
"metabolites":{
"1mncam_c":1.0,
"1mncam_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"1MNCAMt"
]
},
"annotation":{
"bigg.reaction":[
"1MNCAMt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_hisglugln_e",
"name":"Exchange of HisGluGln",
"metabolites":{
"hisglugln_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hisglugln[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hisglugln_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hislysala_e",
"name":"Exchange of HisLysAla",
"metabolites":{
"hislysala_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hislysala[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hislysala_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hislysglu_e",
"name":"Exchange of HisLysGlu",
"metabolites":{
"hislysglu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hislysglu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hislysglu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_C05300_e",
"name":"Exchange of 16Alpha-Hydroxyestrone",
"metabolites":{
"C05300_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_C05300[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_C05300_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_argalaala_e",
"name":"Exchange of ArgAlaAla",
"metabolites":{
"argalaala_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_argalaala[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_argalaala_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_retinal_e",
"name":"Exchange of Retinal",
"metabolites":{
"retinal_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_retinal[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_retinal_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_1mncam_e",
"name":"1-Methylnicotinamide exchange",
"metabolites":{
"1mncam_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_1mncam[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_1mncam_e"
],
"metanetx.reaction":[
"MNXR142841"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_progly_e",
"name":"L-Prolinylglycine exchange",
"metabolites":{
"progly_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_progly[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_progly_e"
],
"metanetx.reaction":[
"MNXR103191"
],
"sbo":"SBO:0000627",
"seed.reaction":[
"rxn09190"
]
}
},
{
"id":"EX_dhbpt_e",
"name":"Exchange of 6,7-Dihydrobiopterin",
"metabolites":{
"dhbpt_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_dhbpt[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_dhbpt_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hislysthr_e",
"name":"Exchange of HisLysThr",
"metabolites":{
"hislysthr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hislysthr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hislysthr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hislysval_e",
"name":"Exchange of HisLysVal",
"metabolites":{
"hislysval_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hislysval[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hislysval_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hismetgln_e",
"name":"Exchange of HisMetGln",
"metabolites":{
"hismetgln_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hismetgln[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hismetgln_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hisphearg_e",
"name":"Exchange of HisPheArg",
"metabolites":{
"hisphearg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hisphearg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hisphearg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hisprolys_e",
"name":"Exchange of HisProLys",
"metabolites":{
"hisprolys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hisprolys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hisprolys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_histrphis_e",
"name":"Exchange of HisTrpHis",
"metabolites":{
"histrphis_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_histrphis[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_histrphis_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_ileargile_e",
"name":"Exchange of IleArgIle",
"metabolites":{
"ileargile_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ileargile[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ileargile_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_argalaphe_e",
"name":"Exchange of ArgAlaPhe",
"metabolites":{
"argalaphe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_argalaphe[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_argalaphe_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_ileasp_e",
"name":"Exchange of IleAsp",
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"ileasp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ileasp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ileasp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_ileprolys_e",
"name":"Exchange of IleProLys",
"metabolites":{
"ileprolys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ileprolys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ileprolys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_prolyspro_e",
"name":"Exchange of ProLysPro",
"metabolites":{
"prolyspro_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_prolyspro[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_prolyspro_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_prophe_e",
"name":"Exchange of ProPhe",
"metabolites":{
"prophe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_prophe[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_prophe_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_argalathr_e",
"name":"Exchange of ArgAlaThr",
"metabolites":{
"argalathr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_argalathr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_argalathr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_proproarg_e",
"name":"Exchange of ProProArg",
"metabolites":{
"proproarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_proproarg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_proproarg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_propropro_e",
"name":"Exchange of ProProPro",
"metabolites":{
"propropro_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_propropro[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_propropro_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_leuasnasp_e",
"name":"Exchange of LeuAsnAsp",
"metabolites":{
"leuasnasp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_leuasnasp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_leuasnasp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_leuasplys_e",
"name":"Exchange of LeuAspLys",
"metabolites":{
"leuasplys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_leuasplys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_leuasplys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_protrplys_e",
"name":"Exchange of ProTrpLys",
"metabolites":{
"protrplys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_protrplys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_protrplys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_provalgln_e",
"name":"Exchange of ProValGln",
"metabolites":{
"provalgln_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_provalgln[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_provalgln_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_leuleutrp_e",
"name":"Exchange of LeuLeuTrp",
"metabolites":{
"leuleutrp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_leuleutrp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_leuleutrp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_argarg_e",
"name":"Exchange of ArgArg",
"metabolites":{
"argarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_argarg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_argarg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_leuproarg_e",
"name":"Exchange of LeuProArg",
"metabolites":{
"leuproarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_leuproarg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_leuproarg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_leusertrp_e",
"name":"Exchange of LeuSerTrp",
"metabolites":{
"leusertrp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_leusertrp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_leusertrp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_serlyshis_e",
"name":"Exchange of SerLysHis",
"metabolites":{
"serlyshis_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_serlyshis[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_serlyshis_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_thrglntyr_e",
"name":"Exchange of ThrGlntyr",
"metabolites":{
"thrglntyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_thrglntyr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_thrglntyr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_thrphearg_e",
"name":"Exchange of ThrPheArg",
"metabolites":{
"thrphearg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_thrphearg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_thrphearg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_thrserarg_e",
"name":"Exchange of ThrSerArg",
"metabolites":{
"thrserarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_thrserarg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_thrserarg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_leutrp_e",
"name":"Exchange of LeuTrp",
"metabolites":{
"leutrp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_leutrp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_leutrp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_thrthrarg_e",
"name":"Exchange of ThrThrArg",
"metabolites":{
"thrthrarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_thrthrarg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_thrthrarg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_leuval_e",
"name":"Exchange of LeuVal",
"metabolites":{
"leuval_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_leuval[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_leuval_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_thrtyrmet_e",
"name":"Exchange of ThrtyrMet",
"metabolites":{
"thrtyrmet_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_thrtyrmet[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_thrtyrmet_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_lysargleu_e",
"name":"Exchange of LysArgLeu",
"metabolites":{
"lysargleu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lysargleu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lysargleu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_argarglys_e",
"name":"Exchange of ArgArgLys",
"metabolites":{
"argarglys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_argarglys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_argarglys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_lyscyshis_e",
"name":"Exchange of LysCysHis",
"metabolites":{
"lyscyshis_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lyscyshis[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lyscyshis_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_lysglnphe_e",
"name":"Exchange of LysGlnPhe",
"metabolites":{
"lysglnphe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lysglnphe[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lysglnphe_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_lystrparg_e",
"name":"Exchange of LysTrpArg",
"metabolites":{
"lystrparg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lystrparg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lystrparg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_lysvalphe_e",
"name":"Exchange of LysValPhe",
"metabolites":{
"lysvalphe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lysvalphe[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lysvalphe_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpargala_e",
"name":"Exchange of TrpArgAla",
"metabolites":{
"trpargala_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trpargala[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trpargala_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpglngln_e",
"name":"Exchange of TrpGlnGln",
"metabolites":{
"trpglngln_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trpglngln[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trpglngln_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpglugly_e",
"name":"Exchange of TrpGluGly",
"metabolites":{
"trpglugly_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trpglugly[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trpglugly_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpglupro_e",
"name":"Exchange of TrpGluPro",
"metabolites":{
"trpglupro_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trpglupro[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trpglupro_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpglyleu_e",
"name":"Exchange of TrpGlyLeu",
"metabolites":{
"trpglyleu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trpglyleu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trpglyleu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpglyphe_e",
"name":"Exchange of TrpGlyPhe",
"metabolites":{
"trpglyphe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trpglyphe[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trpglyphe_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpilelys_e",
"name":"Exchange of TrpIleLys",
"metabolites":{
"trpilelys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trpilelys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trpilelys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpiletrp_e",
"name":"Exchange of TrpIleTrp",
"metabolites":{
"trpiletrp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trpiletrp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trpiletrp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpleuval_e",
"name":"Exchange of TrpLeuVal",
"metabolites":{
"trpleuval_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trpleuval[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trpleuval_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_metglntyr_e",
"name":"Exchange of MetGlntyr",
"metabolites":{
"metglntyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_metglntyr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_metglntyr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_metphearg_e",
"name":"Exchange of MetPheArg",
"metabolites":{
"metphearg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_metphearg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_metphearg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pheasnmet_e",
"name":"Exchange of PheAsnMet",
"metabolites":{
"pheasnmet_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pheasnmet[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pheasnmet_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pheasp_e",
"name":"Exchange of PheAsp",
"metabolites":{
"pheasp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pheasp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pheasp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pheleuasp_e",
"name":"Exchange of PheLeuAsp",
"metabolites":{
"pheleuasp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pheleuasp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pheleuasp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pheleuhis_e",
"name":"Exchange of PheLeuHis",
"metabolites":{
"pheleuhis_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pheleuhis[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pheleuhis_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trplys_e",
"name":"Exchange of TrpLys",
"metabolites":{
"trplys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trplys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trplys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpmetval_e",
"name":"Exchange of TrpMetVal",
"metabolites":{
"trpmetval_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trpmetval[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trpmetval_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trptyrgln_e",
"name":"Exchange of TrptyrGln",
"metabolites":{
"trptyrgln_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trptyrgln[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trptyrgln_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_phelyspro_e",
"name":"Exchange of PheLysPro",
"metabolites":{
"phelyspro_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_phelyspro[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_phelyspro_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_phephethr_e",
"name":"Exchange of PhePheThr",
"metabolites":{
"phephethr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_phephethr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_phephethr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pheproarg_e",
"name":"Exchange of PheProArg",
"metabolites":{
"pheproarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pheproarg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pheproarg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trptyrtyr_e",
"name":"Exchange of Trptyrtyr",
"metabolites":{
"trptyrtyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trptyrtyr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trptyrtyr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_phesertrp_e",
"name":"Exchange of PheSerTrp",
"metabolites":{
"phesertrp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_phesertrp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_phesertrp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tyrargser_e",
"name":"Exchange of TyrArgSer",
"metabolites":{
"tyrargser_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tyrargser[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tyrargser_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_argcysgly_e",
"name":"Exchange of ArgCysGly",
"metabolites":{
"argcysgly_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_argcysgly[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_argcysgly_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tyrcysthr_e",
"name":"Exchange of TyrCysThr",
"metabolites":{
"tyrcysthr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tyrcysthr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tyrcysthr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tyrleuarg_e",
"name":"Exchange of TyrLeuArg",
"metabolites":{
"tyrleuarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tyrleuarg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tyrleuarg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tyrphetyr_e",
"name":"Exchange of TyrPhetyr",
"metabolites":{
"tyrphetyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tyrphetyr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tyrphetyr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tyrthr_e",
"name":"Exchange of TyrThr",
"metabolites":{
"tyrthr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tyrthr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tyrthr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tyrtrpphe_e",
"name":"Exchange of TyrTrpPhe",
"metabolites":{
"tyrtrpphe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tyrtrpphe[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tyrtrpphe_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tyrtyr_e",
"name":"Exchange of Tyrtyr",
"metabolites":{
"tyrtyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tyrtyr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tyrtyr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tyrvalmet_e",
"name":"Exchange of TyrValMet",
"metabolites":{
"tyrvalmet_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tyrvalmet[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tyrvalmet_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_valarggly_e",
"name":"Exchange of ValArgGly",
"metabolites":{
"valarggly_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_valarggly[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_valarggly_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_valhisasn_e",
"name":"Exchange of ValHisAsn",
"metabolites":{
"valhisasn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_valhisasn[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_valhisasn_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_valphearg_e",
"name":"Exchange of ValPheArg",
"metabolites":{
"valphearg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_valphearg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_valphearg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_valprotrp_e",
"name":"Exchange of ValProTrp",
"metabolites":{
"valprotrp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_valprotrp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_valprotrp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_valserarg_e",
"name":"Exchange of ValSerArg",
"metabolites":{
"valserarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_valserarg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_valserarg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_phetyrgln_e",
"name":"Exchange of PhetyrGln",
"metabolites":{
"phetyrgln_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_phetyrgln[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_phetyrgln_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_phetyrlys_e",
"name":"Exchange of PhetyrLys",
"metabolites":{
"phetyrlys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_phetyrlys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_phetyrlys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_proargcys_e",
"name":"Exchange of ProArgCys",
"metabolites":{
"proargcys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_proargcys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_proargcys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_proasncys_e",
"name":"Exchange of ProAsnCys",
"metabolites":{
"proasncys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_proasncys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_proasncys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_proglnpro_e",
"name":"Exchange of ProGlnPro",
"metabolites":{
"proglnpro_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_proglnpro[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_proglnpro_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_prohis_e",
"name":"Exchange of ProHis",
"metabolites":{
"prohis_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_prohis[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_prohis_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_prohistyr_e",
"name":"Exchange of ProHistyr",
"metabolites":{
"prohistyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_prohistyr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_prohistyr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"ALAGLYLYSt",
"name":"Transport of AlaGlyLys, Extracellular",
"metabolites":{
"alaglylys_c":1.0,
"alaglylys_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ALAGLYLYSt"
]
},
"annotation":{
"bigg.reaction":[
"ALAGLYLYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ALALYSTHRt",
"name":"Transport of AlaLysThr, Extracellular",
"metabolites":{
"alalysthr_c":1.0,
"alalysthr_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ALALYSTHRt"
]
},
"annotation":{
"bigg.reaction":[
"ALALYSTHRt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARGALAALAt",
"name":"Transport of ArgAlaAla, Extracellular",
"metabolites":{
"argalaala_c":1.0,
"argalaala_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGALAALAt"
]
},
"annotation":{
"bigg.reaction":[
"ARGALAALAt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARGALAPHEt",
"name":"Transport of ArgAlaPhe, Extracellular",
"metabolites":{
"argalaphe_c":1.0,
"argalaphe_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGALAPHEt"
]
},
"annotation":{
"bigg.reaction":[
"ARGALAPHEt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARGALATHRt",
"name":"Transport of ArgAlaThr, Extracellular",
"metabolites":{
"argalathr_c":1.0,
"argalathr_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGALATHRt"
]
},
"annotation":{
"bigg.reaction":[
"ARGALATHRt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARGARGt",
"name":"Transport of ArgArg, Extracellular",
"metabolites":{
"argarg_c":1.0,
"argarg_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGARGt"
]
},
"annotation":{
"bigg.reaction":[
"ARGARGt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARGARGLYSt",
"name":"Transport of ArgArgLys, Extracellular",
"metabolites":{
"argarglys_c":1.0,
"argarglys_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGARGLYSt"
]
},
"annotation":{
"bigg.reaction":[
"ARGARGLYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARGARGMETt",
"name":"Transport of ArgArgMet, Extracellular",
"metabolites":{
"argargmet_c":1.0,
"argargmet_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGARGMETt"
]
},
"annotation":{
"bigg.reaction":[
"ARGARGMETt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARGCYSSERt",
"name":"Transport of ArgCysSer, Extracellular",
"metabolites":{
"argcysser_c":1.0,
"argcysser_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGCYSSERt"
]
},
"annotation":{
"bigg.reaction":[
"ARGCYSSERt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARGGLUPROt",
"name":"Transport of ArgGluPro, Extracellular",
"metabolites":{
"argglupro_c":1.0,
"argglupro_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGGLUPROt"
]
},
"annotation":{
"bigg.reaction":[
"ARGGLUPROt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARGHISTHRt",
"name":"Transport of ArgHisThr, Extracellular",
"metabolites":{
"arghisthr_c":1.0,
"arghisthr_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGHISTHRt"
]
},
"annotation":{
"bigg.reaction":[
"ARGHISTHRt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARGPROMETt",
"name":"Transport of ArgProMet, Extracellular",
"metabolites":{
"argpromet_c":1.0,
"argpromet_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGPROMETt"
]
},
"annotation":{
"bigg.reaction":[
"ARGPROMETt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARGPROTHRt",
"name":"Transport of ArgProThr, Extracellular",
"metabolites":{
"argprothr_c":1.0,
"argprothr_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGPROTHRt"
]
},
"annotation":{
"bigg.reaction":[
"ARGPROTHRt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLNPROGLUt",
"name":"Transport of GlnProGlu, Extracellular",
"metabolites":{
"glnproglu_c":1.0,
"glnproglu_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLNPROGLUt"
]
},
"annotation":{
"bigg.reaction":[
"GLNPROGLUt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLNTRPGLUt",
"name":"Transport of GlnTrpGlu, Extracellular",
"metabolites":{
"glntrpglu_c":1.0,
"glntrpglu_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLNTRPGLUt"
]
},
"annotation":{
"bigg.reaction":[
"GLNTRPGLUt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLNTYRLEUt",
"name":"Transport of GlntyrLeu, Extracellular",
"metabolites":{
"glntyrleu_c":1.0,
"glntyrleu_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLNTYRLEUt"
]
},
"annotation":{
"bigg.reaction":[
"GLNTYRLEUt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLUARGLEUt",
"name":"Transport of GluArgLeu, Extracellular",
"metabolites":{
"gluargleu_c":1.0,
"gluargleu_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLUARGLEUt"
]
},
"annotation":{
"bigg.reaction":[
"GLUARGLEUt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLUASNLEUt",
"name":"Transport of GluAsnLeu, Extracellular",
"metabolites":{
"gluasnleu_c":1.0,
"gluasnleu_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLUASNLEUt"
]
},
"annotation":{
"bigg.reaction":[
"GLUASNLEUt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLUGLUt",
"name":"Transport of GluGlu, Extracellular",
"metabolites":{
"gluglu_c":1.0,
"gluglu_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLUGLUt"
]
},
"annotation":{
"bigg.reaction":[
"GLUGLUt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLUILELYSt",
"name":"Transport of GluIleLys, Extracellular",
"metabolites":{
"gluilelys_c":1.0,
"gluilelys_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLUILELYSt"
]
},
"annotation":{
"bigg.reaction":[
"GLUILELYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLUMETt",
"name":"Transport of GluMet, Extracellular",
"metabolites":{
"glumet_c":1.0,
"glumet_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLUMETt"
]
},
"annotation":{
"bigg.reaction":[
"GLUMETt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLUMETHISt",
"name":"Transport of GluMetHis, Extracellular",
"metabolites":{
"glumethis_c":1.0,
"glumethis_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLUMETHISt"
]
},
"annotation":{
"bigg.reaction":[
"GLUMETHISt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ASNASNARGt",
"name":"Transport of AsnAsnArg, Extracellular",
"metabolites":{
"asnasnarg_c":1.0,
"asnasnarg_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASNASNARGt"
]
},
"annotation":{
"bigg.reaction":[
"ASNASNARGt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ASPALAARGt",
"name":"Transport of AspAlaArg, Extracellular",
"metabolites":{
"aspalaarg_c":1.0,
"aspalaarg_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASPALAARGt"
]
},
"annotation":{
"bigg.reaction":[
"ASPALAARGt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ASPASNGLUt",
"name":"Transport of AspAsnGlu, Extracellular",
"metabolites":{
"aspasnglu_c":1.0,
"aspasnglu_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASPASNGLUt"
]
},
"annotation":{
"bigg.reaction":[
"ASPASNGLUt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ASPGLUPROt",
"name":"Transport of AspGluPro, Extracellular",
"metabolites":{
"aspglupro_c":1.0,
"aspglupro_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASPGLUPROt"
]
},
"annotation":{
"bigg.reaction":[
"ASPGLUPROt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ASPGLUTRPt",
"name":"Transport of AspGluTrp, Extracellular",
"metabolites":{
"aspglutrp_c":1.0,
"aspglutrp_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASPGLUTRPt"
]
},
"annotation":{
"bigg.reaction":[
"ASPGLUTRPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ASPHISCYSt",
"name":"Transport of AspHisCys, Extracellular",
"metabolites":{
"asphiscys_c":1.0,
"asphiscys_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASPHISCYSt"
]
},
"annotation":{
"bigg.reaction":[
"ASPHISCYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ASPHISPROt",
"name":"Transport of AspHisPro, Extracellular",
"metabolites":{
"asphispro_c":1.0,
"asphispro_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASPHISPROt"
]
},
"annotation":{
"bigg.reaction":[
"ASPHISPROt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ASPLYSGLUt",
"name":"Transport of AspLysGlu, Extracellular",
"metabolites":{
"asplysglu_c":1.0,
"asplysglu_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASPLYSGLUt"
]
},
"annotation":{
"bigg.reaction":[
"ASPLYSGLUt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ASPLYSHISt",
"name":"Transport of AspLysHis, Extracellular",
"metabolites":{
"asplyshis_c":1.0,
"asplyshis_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASPLYSHISt"
]
},
"annotation":{
"bigg.reaction":[
"ASPLYSHISt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLUTHRLYSt",
"name":"Transport of GluThrLys, Extracellular",
"metabolites":{
"gluthrlys_c":1.0,
"gluthrlys_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLUTHRLYSt"
]
},
"annotation":{
"bigg.reaction":[
"GLUTHRLYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLYVALHISt",
"name":"Transport of GlyValHis, Extracellular",
"metabolites":{
"glyvalhis_c":1.0,
"glyvalhis_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLYVALHISt"
]
},
"annotation":{
"bigg.reaction":[
"GLYVALHISt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HISASPt",
"name":"Transport of HisAsp, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"hisasp_c":1.0,
"hisasp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HISASPt"
]
},
"annotation":{
"bigg.reaction":[
"HISASPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HISGLNALAt",
"name":"Transport of HisGlnAla, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"hisglnala_c":1.0,
"hisglnala_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HISGLNALAt"
]
},
"annotation":{
"bigg.reaction":[
"HISGLNALAt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HISGLYLYSt",
"name":"Transport of HisGlyLys, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"hisglylys_c":1.0,
"hisglylys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HISGLYLYSt"
]
},
"annotation":{
"bigg.reaction":[
"HISGLYLYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HISLYSALAt",
"name":"Transport of HisLysAla, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"hislysala_c":1.0,
"hislysala_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HISLYSALAt"
]
},
"annotation":{
"bigg.reaction":[
"HISLYSALAt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HISLYSILEt",
"name":"Transport of HisLysIle, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"hislysile_c":1.0,
"hislysile_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HISLYSILEt"
]
},
"annotation":{
"bigg.reaction":[
"HISLYSILEt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ASPMETASPt",
"name":"Transport of AspMetAsp, Extracellular",
"metabolites":{
"aspmetasp_c":1.0,
"aspmetasp_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASPMETASPt"
]
},
"annotation":{
"bigg.reaction":[
"ASPMETASPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ASPPROLYSt",
"name":"Transport of AspProLys, Extracellular",
"metabolites":{
"aspprolys_c":1.0,
"aspprolys_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASPPROLYSt"
]
},
"annotation":{
"bigg.reaction":[
"ASPPROLYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ASPVALASNt",
"name":"Transport of AspValAsn, Extracellular",
"metabolites":{
"aspvalasn_c":1.0,
"aspvalasn_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASPVALASNt"
]
},
"annotation":{
"bigg.reaction":[
"ASPVALASNt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CYSASNMETt",
"name":"Transport of CysAsnMet, Extracellular",
"metabolites":{
"cysasnmet_c":1.0,
"cysasnmet_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CYSASNMETt"
]
},
"annotation":{
"bigg.reaction":[
"CYSASNMETt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HISLYSVALt",
"name":"Transport of HisLysVal, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"hislysval_c":1.0,
"hislysval_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HISLYSVALt"
]
},
"annotation":{
"bigg.reaction":[
"HISLYSVALt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_argglupro_e",
"name":"Exchange of ArgGluPro",
"metabolites":{
"argglupro_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_argglupro[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_argglupro_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"HISMETt",
"name":"Transport of HisMet, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"hismet_c":1.0,
"hismet_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HISMETt"
]
},
"annotation":{
"bigg.reaction":[
"HISMETt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CYSASPPHEt",
"name":"Transport of CysAspPhe, Extracellular",
"metabolites":{
"cysaspphe_c":1.0,
"cysaspphe_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CYSASPPHEt"
]
},
"annotation":{
"bigg.reaction":[
"CYSASPPHEt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CYSGLUHISt",
"name":"Transport of CysGluHis, Extracellular",
"metabolites":{
"cysgluhis_c":1.0,
"cysgluhis_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CYSGLUHISt"
]
},
"annotation":{
"bigg.reaction":[
"CYSGLUHISt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CYSGLUTRPt",
"name":"Transport of CysGluTrp, Extracellular",
"metabolites":{
"cysglutrp_c":1.0,
"cysglutrp_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CYSGLUTRPt"
]
},
"annotation":{
"bigg.reaction":[
"CYSGLUTRPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CYSLEUTHRt",
"name":"Transport of CysLeuThr, Extracellular",
"metabolites":{
"cysleuthr_c":1.0,
"cysleuthr_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CYSLEUTHRt"
]
},
"annotation":{
"bigg.reaction":[
"CYSLEUTHRt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_argglygly_e",
"name":"Exchange of ArgGlyGly",
"metabolites":{
"argglygly_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_argglygly[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_argglygly_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"CYSSERMETt",
"name":"Transport of CysSerMet, Extracellular",
"metabolites":{
"cyssermet_c":1.0,
"cyssermet_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CYSSERMETt"
]
},
"annotation":{
"bigg.reaction":[
"CYSSERMETt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_argphearg_e",
"name":"Exchange of ArgPheArg",
"metabolites":{
"argphearg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_argphearg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_argphearg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"ILEASNHISt",
"name":"Transport of IleAsnHis, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"ileasnhis_c":1.0,
"ileasnhis_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ILEASNHISt"
]
},
"annotation":{
"bigg.reaction":[
"ILEASNHISt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ILEGLYARGt",
"name":"Transport of IleGlyArg, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"ileglyarg_c":1.0,
"ileglyarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ILEGLYARGt"
]
},
"annotation":{
"bigg.reaction":[
"ILEGLYARGt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ILEPROLYSt",
"name":"Transport of IleProLys, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"ileprolys_c":1.0,
"ileprolys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ILEPROLYSt"
]
},
"annotation":{
"bigg.reaction":[
"ILEPROLYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ILESERARGt",
"name":"Transport of IleSerArg, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"ileserarg_c":1.0,
"ileserarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ILESERARGt"
]
},
"annotation":{
"bigg.reaction":[
"ILESERARGt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LEUASNASPt",
"name":"Transport of LeuAsnAsp, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"leuasnasp_c":1.0,
"leuasnasp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LEUASNASPt"
]
},
"annotation":{
"bigg.reaction":[
"LEUASNASPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LEUASPLYSt",
"name":"Transport of LeuAspLys, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"leuasplys_c":1.0,
"leuasplys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LEUASPLYSt"
]
},
"annotation":{
"bigg.reaction":[
"LEUASPLYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LEUPROt",
"name":"Transport of LeuPro, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"leupro_c":1.0,
"leupro_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LEUPROt"
]
},
"annotation":{
"bigg.reaction":[
"LEUPROt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLNHISLYSt",
"name":"Transport of GlnHisLys, Extracellular",
"metabolites":{
"glnhislys_c":1.0,
"glnhislys_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLNHISLYSt"
]
},
"annotation":{
"bigg.reaction":[
"GLNHISLYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_argpromet_e",
"name":"Exchange of ArgProMet",
"metabolites":{
"argpromet_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_argpromet[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_argpromet_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"LEUPROARGt",
"name":"Transport of LeuProArg, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"leuproarg_c":1.0,
"leuproarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LEUPROARGt"
]
},
"annotation":{
"bigg.reaction":[
"LEUPROARGt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LEUTRPt",
"name":"Transport of LeuTrp, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"leutrp_c":1.0,
"leutrp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LEUTRPt"
]
},
"annotation":{
"bigg.reaction":[
"LEUTRPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_argprothr_e",
"name":"Exchange of ArgProThr",
"metabolites":{
"argprothr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_argprothr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_argprothr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"LEUTRPARGt",
"name":"Transport of LeuTrpArg, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"leutrparg_c":1.0,
"leutrparg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LEUTRPARGt"
]
},
"annotation":{
"bigg.reaction":[
"LEUTRPARGt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LEUVALt",
"name":"Transport of LeuVal, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"leuval_c":1.0,
"leuval_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LEUVALt"
]
},
"annotation":{
"bigg.reaction":[
"LEUVALt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_argtyrval_e",
"name":"Exchange of ArgtyrVal",
"metabolites":{
"argtyrval_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_argtyrval[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_argtyrval_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"LYSARGLEUt",
"name":"Transport of LysArgLeu, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"lysargleu_c":1.0,
"lysargleu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LYSARGLEUt"
]
},
"annotation":{
"bigg.reaction":[
"LYSARGLEUt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_argvalcys_e",
"name":"Exchange of ArgValCys",
"metabolites":{
"argvalcys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_argvalcys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_argvalcys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"SERTRPHISt",
"name":"Transport of SerTrpHis, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"sertrphis_c":1.0,
"sertrphis_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"SERTRPHISt"
]
},
"annotation":{
"bigg.reaction":[
"SERTRPHISt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LYSGLNPHEt",
"name":"Transport of LysGlnPhe, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"lysglnphe_c":1.0,
"lysglnphe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LYSGLNPHEt"
]
},
"annotation":{
"bigg.reaction":[
"LYSGLNPHEt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_argvaltrp_e",
"name":"Exchange of ArgValTrp",
"metabolites":{
"argvaltrp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_argvaltrp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_argvaltrp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"LYSGLUGLUt",
"name":"Transport of LysGluGlu, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"lysgluglu_c":1.0,
"lysgluglu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LYSGLUGLUt"
]
},
"annotation":{
"bigg.reaction":[
"LYSGLUGLUt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LYSLYSLYSt",
"name":"Transport of LysLysLys, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"lyslyslys_c":1.0,
"lyslyslys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LYSLYSLYSt"
]
},
"annotation":{
"bigg.reaction":[
"LYSLYSLYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LYSTYRILEt",
"name":"Transport of LystyrIle, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"lystyrile_c":1.0,
"lystyrile_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LYSTYRILEt"
]
},
"annotation":{
"bigg.reaction":[
"LYSTYRILEt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"THRHISHISt",
"name":"Transport of ThrHisHis, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"thrhishis_c":1.0,
"thrhishis_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"THRHISHISt"
]
},
"annotation":{
"bigg.reaction":[
"THRHISHISt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_asnasnarg_e",
"name":"Exchange of AsnAsnArg",
"metabolites":{
"asnasnarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_asnasnarg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_asnasnarg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"THRILEARGt",
"name":"Transport of ThrIleArg, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"thrilearg_c":1.0,
"thrilearg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"THRILEARGt"
]
},
"annotation":{
"bigg.reaction":[
"THRILEARGt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"THRPHEARGt",
"name":"Transport of ThrPheArg, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"thrphearg_c":1.0,
"thrphearg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"THRPHEARGt"
]
},
"annotation":{
"bigg.reaction":[
"THRPHEARGt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LYSVALPHEt",
"name":"Transport of LysValPhe, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"lysvalphe_c":1.0,
"lysvalphe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LYSVALPHEt"
]
},
"annotation":{
"bigg.reaction":[
"LYSVALPHEt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"METARGLEUt",
"name":"Transport of MetArgLeu, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"metargleu_c":1.0,
"metargleu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"METARGLEUt"
]
},
"annotation":{
"bigg.reaction":[
"METARGLEUt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"METGLNTYRt",
"name":"Transport of MetGlntyr, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"metglntyr_c":1.0,
"metglntyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"METGLNTYRt"
]
},
"annotation":{
"bigg.reaction":[
"METGLNTYRt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"THRSERARGt",
"name":"Transport of ThrSerArg, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"thrserarg_c":1.0,
"thrserarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"THRSERARGt"
]
},
"annotation":{
"bigg.reaction":[
"THRSERARGt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"THRTYRMETt",
"name":"Transport of ThrtyrMet, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"thrtyrmet_c":1.0,
"thrtyrmet_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"THRTYRMETt"
]
},
"annotation":{
"bigg.reaction":[
"THRTYRMETt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TRPARGALAt",
"name":"Transport of TrpArgAla, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"trpargala_c":1.0,
"trpargala_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TRPARGALAt"
]
},
"annotation":{
"bigg.reaction":[
"TRPARGALAt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"METGLYARGt",
"name":"Transport of MetGlyArg, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"metglyarg_c":1.0,
"metglyarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"METGLYARGt"
]
},
"annotation":{
"bigg.reaction":[
"METGLYARGt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TRPASPASPt",
"name":"Transport of TrpAspAsp, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"trpaspasp_c":1.0,
"trpaspasp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TRPASPASPt"
]
},
"annotation":{
"bigg.reaction":[
"TRPASPASPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TRPGLNGLNt",
"name":"Transport of TrpGlnGln, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"trpglngln_c":1.0,
"trpglngln_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TRPGLNGLNt"
]
},
"annotation":{
"bigg.reaction":[
"TRPGLNGLNt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TRPGLUGLYt",
"name":"Transport of TrpGluGly, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"trpglugly_c":1.0,
"trpglugly_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TRPGLUGLYt"
]
},
"annotation":{
"bigg.reaction":[
"TRPGLUGLYt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TRPGLULEUt",
"name":"Transport of TrpGluLeu, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"trpgluleu_c":1.0,
"trpgluleu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TRPGLULEUt"
]
},
"annotation":{
"bigg.reaction":[
"TRPGLULEUt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TRPGLUTYRt",
"name":"Transport of TrpGlutyr, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"trpglutyr_c":1.0,
"trpglutyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TRPGLUTYRt"
]
},
"annotation":{
"bigg.reaction":[
"TRPGLUTYRt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"METTRPPHEt",
"name":"Transport of MetTrpPhe, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"mettrpphe_c":1.0,
"mettrpphe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"METTRPPHEt"
]
},
"annotation":{
"bigg.reaction":[
"METTRPPHEt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHEASNMETt",
"name":"Transport of PheAsnMet, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"pheasnmet_c":1.0,
"pheasnmet_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PHEASNMETt"
]
},
"annotation":{
"bigg.reaction":[
"PHEASNMETt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHEASPt",
"name":"Transport of PheAsp, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"pheasp_c":1.0,
"pheasp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PHEASPt"
]
},
"annotation":{
"bigg.reaction":[
"PHEASPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHELEUt",
"name":"Transport of PheLeu, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"pheleu_c":1.0,
"pheleu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PHELEUt"
]
},
"annotation":{
"bigg.reaction":[
"PHELEUt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHELEUASPt",
"name":"Transport of PheLeuAsp, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"pheleuasp_c":1.0,
"pheleuasp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PHELEUASPt"
]
},
"annotation":{
"bigg.reaction":[
"PHELEUASPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHELEUHISt",
"name":"Transport of PheLeuHis, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"pheleuhis_c":1.0,
"pheleuhis_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PHELEUHISt"
]
},
"annotation":{
"bigg.reaction":[
"PHELEUHISt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TRPGLYPHEt",
"name":"Transport of TrpGlyPhe, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"trpglyphe_c":1.0,
"trpglyphe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TRPGLYPHEt"
]
},
"annotation":{
"bigg.reaction":[
"TRPGLYPHEt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TRPGLYVALt",
"name":"Transport of TrpGlyVal, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"trpglyval_c":1.0,
"trpglyval_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TRPGLYVALt"
]
},
"annotation":{
"bigg.reaction":[
"TRPGLYVALt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TRPILETRPt",
"name":"Transport of TrpIleTrp, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"trpiletrp_c":1.0,
"trpiletrp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TRPILETRPt"
]
},
"annotation":{
"bigg.reaction":[
"TRPILETRPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHELYSALAt",
"name":"Transport of PheLysAla, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"phelysala_c":1.0,
"phelysala_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PHELYSALAt"
]
},
"annotation":{
"bigg.reaction":[
"PHELYSALAt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHELYSPROt",
"name":"Transport of PheLysPro, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"phelyspro_c":1.0,
"phelyspro_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PHELYSPROt"
]
},
"annotation":{
"bigg.reaction":[
"PHELYSPROt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_asncyscys_e",
"name":"Exchange of AsnCysCys",
"metabolites":{
"asncyscys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_asncyscys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_asncyscys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"PHEPHEASNt",
"name":"Transport of PhePheAsn, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"phepheasn_c":1.0,
"phepheasn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PHEPHEASNt"
]
},
"annotation":{
"bigg.reaction":[
"PHEPHEASNt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHEPHETHRt",
"name":"Transport of PhePheThr, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"phephethr_c":1.0,
"phephethr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PHEPHETHRt"
]
},
"annotation":{
"bigg.reaction":[
"PHEPHETHRt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TRPLEUVALt",
"name":"Transport of TrpLeuVal, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"trpleuval_c":1.0,
"trpleuval_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TRPLEUVALt"
]
},
"annotation":{
"bigg.reaction":[
"TRPLEUVALt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TRPMETARGt",
"name":"Transport of TrpMetArg, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"trpmetarg_c":1.0,
"trpmetarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TRPMETARGt"
]
},
"annotation":{
"bigg.reaction":[
"TRPMETARGt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TRPPHEt",
"name":"Transport of TrpPhe, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"trpphe_c":1.0,
"trpphe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TRPPHEt"
]
},
"annotation":{
"bigg.reaction":[
"TRPPHEt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TRPPROLEUt",
"name":"Transport of TrpProLeu, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"trpproleu_c":1.0,
"trpproleu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TRPPROLEUt"
]
},
"annotation":{
"bigg.reaction":[
"TRPPROLEUt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TRPSERTYRt",
"name":"Transport of TrpSertyr, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"trpsertyr_c":1.0,
"trpsertyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TRPSERTYRt"
]
},
"annotation":{
"bigg.reaction":[
"TRPSERTYRt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHETHRLYSt",
"name":"Transport of PheThrLys, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"phethrlys_c":1.0,
"phethrlys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PHETHRLYSt"
]
},
"annotation":{
"bigg.reaction":[
"PHETHRLYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHETYRGLNt",
"name":"Transport of PhetyrGln, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"phetyrgln_c":1.0,
"phetyrgln_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PHETYRGLNt"
]
},
"annotation":{
"bigg.reaction":[
"PHETYRGLNt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PROARGASPt",
"name":"Transport of ProArgAsp, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"proargasp_c":1.0,
"proargasp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PROARGASPt"
]
},
"annotation":{
"bigg.reaction":[
"PROARGASPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PROASNCYSt",
"name":"Transport of ProAsnCys, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"proasncys_c":1.0,
"proasncys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PROASNCYSt"
]
},
"annotation":{
"bigg.reaction":[
"PROASNCYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TRPTHRILEt",
"name":"Transport of TrpThrIle, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"trpthrile_c":1.0,
"trpthrile_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TRPTHRILEt"
]
},
"annotation":{
"bigg.reaction":[
"TRPTHRILEt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TRPTHRTYRt",
"name":"Transport of TrpThrtyr, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"trpthrtyr_c":1.0,
"trpthrtyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TRPTHRTYRt"
]
},
"annotation":{
"bigg.reaction":[
"TRPTHRTYRt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TRPTYRGLNt",
"name":"Transport of TrptyrGln, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"trptyrgln_c":1.0,
"trptyrgln_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TRPTYRGLNt"
]
},
"annotation":{
"bigg.reaction":[
"TRPTYRGLNt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PROGLNPROt",
"name":"Transport of ProGlnPro, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"proglnpro_c":1.0,
"proglnpro_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PROGLNPROt"
]
},
"annotation":{
"bigg.reaction":[
"PROGLNPROt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PROHISt",
"name":"Transport of ProHis, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"prohis_c":1.0,
"prohis_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PROHISt"
]
},
"annotation":{
"bigg.reaction":[
"PROHISt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PROHISTYRt",
"name":"Transport of ProHistyr, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"prohistyr_c":1.0,
"prohistyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PROHISTYRt"
]
},
"annotation":{
"bigg.reaction":[
"PROHISTYRt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PROLEUARGt",
"name":"Transport of ProLeuArg, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"proleuarg_c":1.0,
"proleuarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PROLEUARGt"
]
},
"annotation":{
"bigg.reaction":[
"PROLEUARGt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PROLYSPROt",
"name":"Transport of ProLysPro, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"prolyspro_c":1.0,
"prolyspro_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PROLYSPROt"
]
},
"annotation":{
"bigg.reaction":[
"PROLYSPROt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TRPVALASPt",
"name":"Transport of TrpValAsp, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"trpvalasp_c":1.0,
"trpvalasp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TRPVALASPt"
]
},
"annotation":{
"bigg.reaction":[
"TRPVALASPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TYRALAt",
"name":"Transport of TyrAla, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"tyrala_c":1.0,
"tyrala_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TYRALAt"
]
},
"annotation":{
"bigg.reaction":[
"TYRALAt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TYRASPARGt",
"name":"Transport of TyrAspArg, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"tyrasparg_c":1.0,
"tyrasparg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TYRASPARGt"
]
},
"annotation":{
"bigg.reaction":[
"TYRASPARGt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TYRGLUt",
"name":"Transport of TyrGlu, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"tyrglu_c":1.0,
"tyrglu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TYRGLUt"
]
},
"annotation":{
"bigg.reaction":[
"TYRGLUt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TYRLEUARGt",
"name":"Transport of TyrLeuArg, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"tyrleuarg_c":1.0,
"tyrleuarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TYRLEUARGt"
]
},
"annotation":{
"bigg.reaction":[
"TYRLEUARGt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TYRPHETYRt",
"name":"Transport of TyrPhetyr, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"tyrphetyr_c":1.0,
"tyrphetyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TYRPHETYRt"
]
},
"annotation":{
"bigg.reaction":[
"TYRPHETYRt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PROPROPROt",
"name":"Transport of ProProPro, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"propropro_c":1.0,
"propropro_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PROPROPROt"
]
},
"annotation":{
"bigg.reaction":[
"PROPROPROt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PROTRPTHRt",
"name":"Transport of ProTrpThr, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"protrpthr_c":1.0,
"protrpthr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PROTRPTHRt"
]
},
"annotation":{
"bigg.reaction":[
"PROTRPTHRt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SERARGTRPt",
"name":"Transport of SerArgTrp, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"serargtrp_c":1.0,
"serargtrp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"SERARGTRPt"
]
},
"annotation":{
"bigg.reaction":[
"SERARGTRPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TYRVALMETt",
"name":"Transport of TyrValMet, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"tyrvalmet_c":1.0,
"tyrvalmet_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TYRVALMETt"
]
},
"annotation":{
"bigg.reaction":[
"TYRVALMETt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SERLYSHISt",
"name":"Transport of SerLysHis, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"serlyshis_c":1.0,
"serlyshis_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"SERLYSHISt"
]
},
"annotation":{
"bigg.reaction":[
"SERLYSHISt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"VALARGGLYt",
"name":"Transport of ValArgGly, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"valarggly_c":1.0,
"valarggly_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"VALARGGLYt"
]
},
"annotation":{
"bigg.reaction":[
"VALARGGLYt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_asnpheasp_e",
"name":"Exchange of AsnPheAsp",
"metabolites":{
"asnpheasp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_asnpheasp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_asnpheasp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"VALHISASNt",
"name":"Transport of ValHisAsn, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"valhisasn_c":1.0,
"valhisasn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"VALHISASNt"
]
},
"annotation":{
"bigg.reaction":[
"VALHISASNt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_asnphecys_e",
"name":"Exchange of AsnPheCys",
"metabolites":{
"asnphecys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_asnphecys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_asnphecys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"VALLYSTYRt",
"name":"Transport of ValLystyr, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"vallystyr_c":1.0,
"vallystyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"VALLYSTYRt"
]
},
"annotation":{
"bigg.reaction":[
"VALLYSTYRt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_asntyrthr_e",
"name":"Exchange of AsntyrThr",
"metabolites":{
"asntyrthr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_asntyrthr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_asntyrthr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"VALPROTRPt",
"name":"Transport of ValProTrp, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"valprotrp_c":1.0,
"valprotrp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"VALPROTRPt"
]
},
"annotation":{
"bigg.reaction":[
"VALPROTRPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLYLYSPHEr",
"name":"Metabolism (Formation/Degradation) of GlyLysPhe",
"metabolites":{
"gly_c":1.0,
"glylysphe_c":-1.0,
"h2o_c":-2.0,
"lys__L_c":1.0,
"phe__L_c":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
"original_bigg_ids":[
"GLYLYSPHEr"
]
},
"annotation":{
"bigg.reaction":[
"GLYLYSPHEr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"VALTRPPHEt",
"name":"Transport of ValTrpPhe, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"valtrpphe_c":1.0,
"valtrpphe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"VALTRPPHEt"
]
},
"annotation":{
"bigg.reaction":[
"VALTRPPHEt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_aspglu_e",
"name":"Exchange of AspGlu",
"metabolites":{
"aspglu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_aspglu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_aspglu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"VALVALt",
"name":"Transport of ValVal, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"valval_c":1.0,
"valval_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"VALVALt"
]
},
"annotation":{
"bigg.reaction":[
"VALVALt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ALAARGCYSr",
"name":"Metabolism (Formation/Degradation) of AlaArgCys",
"metabolites":{
"ala__L_c":1.0,
"alaargcys_c":-1.0,
"arg__L_c":1.0,
"cys__L_c":1.0,
"h2o_c":-2.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
"original_bigg_ids":[
"ALAARGCYSr"
]
},
"annotation":{
"bigg.reaction":[
"ALAARGCYSr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GLYTYRLYSr",
"name":"Metabolism (Formation/Degradation) of GlytyrLys",
"metabolites":{
"gly_c":1.0,
"glytyrlys_c":-1.0,
"h2o_c":-2.0,
"lys__L_c":1.0,
"tyr__L_c":1.0
},
"lower_bound":-1000.0,
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"id":"GLUGLUr",
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{
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},
{
"id":"GLULEUr",
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{
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{
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{
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},
{
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},
{
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{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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{
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{
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{
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},
{
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{
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{
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{
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{
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},
{
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{
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{
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{
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{
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{
"id":"TRPLYSr",
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{
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},
{
"id":"BZtm",
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{
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},
{
"id":"EX_glnhislys_e",
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},
{
"id":"TRPPROVALr",
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},
{
"id":"TRPSERTYRr",
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},
{
"id":"TRPTHRILEr",
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},
{
"id":"TRPTYRGLNr",
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{
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{
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},
{
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{
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},
{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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},
{
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{
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{
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},
{
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{
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},
{
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},
{
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]
},
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],
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}
},
{
"id":"PGLYCtm",
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]
},
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"PGLYCtm"
],
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}
},
{
"id":"SK_25hvitd2_c",
"name":"Sink 25hvitd2[c]",
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},
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]
},
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],
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}
},
{
"id":"SK_9_cis_retfa_c",
"name":"Sink 9 cis retfa[c]",
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},
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
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]
},
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"SK_9_cis_retfa_c"
],
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}
},
{
"id":"SK_glygn2_c",
"name":"Sink glygn2[c]",
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"glygn2_c":-1.0
},
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
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"sink_glygn2[c]"
]
},
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"SK_glygn2_c"
],
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}
},
{
"id":"SK_HC02193_c",
"name":"Sink for Glycolithocholate",
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},
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"sink_HC02193[c]"
]
},
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],
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}
},
{
"id":"BPNT",
"name":"3',5'-bisphosphate nucleotidase",
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"pap_c":-1.0,
"pi_c":1.0
},
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"gene_reaction_rule":"10380_AT1",
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"BPNT"
]
},
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"BPNT"
],
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],
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"3.1.3.97"
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],
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"MNXR96321"
],
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"R-HSA-176606",
"R-RNO-176606",
"R-XTR-176606",
"R-SSC-176606",
"R-TGU-176606",
"R-CEL-176606",
"R-CFA-176606",
"R-DDI-176606",
"R-BTA-176606",
"R-DME-176606",
"R-GGA-176606",
"R-MMU-176606"
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"10040",
"10043",
"10042"
],
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],
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"seed.reaction":[
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"rxn11357"
]
}
},
{
"id":"SK_lnlc_c",
"name":"Sink lnlc[c]",
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},
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]
},
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],
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}
},
{
"id":"SK_HC02195_c",
"name":"Sink for Tauroursodeoxycholate",
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},
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]
},
"annotation":{
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"SK_HC02195_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_HC02197_c",
"name":"Sink for Sulfoglycolithocholate",
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},
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
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]
},
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],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_HC02198_c",
"name":"Sink for Sulfotaurolithocholate",
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},
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
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]
},
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],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_Tyr_ggn_c",
"name":"Sink for Tyr-194 Of Apo-Glycogenin Protein (Primer For Glycogen Synthesis)",
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"Tyr_ggn_c":-1.0
},
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"gene_reaction_rule":"",
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]
},
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],
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"MNXR142912"
],
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}
},
{
"id":"DM_avite1_c",
"name":"Alpha-Tocopherol demand",
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},
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"gene_reaction_rule":"",
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"sink_avite1[c]"
]
},
"annotation":{
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],
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],
"sbo":"SBO:0000628"
}
},
{
"id":"SK_btn_c",
"name":"Sink btn[c]",
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},
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"gene_reaction_rule":"",
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"sink_btn[c]"
]
},
"annotation":{
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"SK_btn_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_c226coa_c",
"name":"Sink c226coa[c]",
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},
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]
},
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],
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}
},
{
"id":"BUTt2r",
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"h_c":1.0,
"h_e":-1.0
},
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]
},
"annotation":{
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],
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],
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}
},
{
"id":"CPPPGO",
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"o2_c":-1.0,
"pppg9_c":1.0
},
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"18258",
"18259",
"18260"
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]
}
},
{
"id":"SK_lnlccoa_c",
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},
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},
{
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"16599",
"16598",
"16600"
],
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],
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}
},
{
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"26426",
"26428"
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}
},
{
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},
{
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},
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],
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"14006",
"14005",
"14007"
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}
},
{
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},
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],
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},
{
"id":"SK_nad_c",
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},
{
"id":"SK_pmtcoa_c",
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},
{
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},
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}
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{
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}
},
{
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},
{
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},
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},
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],
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{
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},
{
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"name":"Ethanol exchange",
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},
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"35270",
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}
},
{
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},
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"28917",
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"28915"
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"sbo":"SBO:0000185",
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}
},
{
"id":"ETOHt",
"name":"Ethanol reversible transport",
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},
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"rxn09764"
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}
},
{
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"name":"Acetaldehyde exchange",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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},
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"reactome.reaction":[
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"sbo":"SBO:0000627",
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"rxn08033",
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"rxn08032"
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}
},
{
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"name":"Transport of Mevalonate-Lactone",
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"mvlac_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
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"subsystem":"Transport, extracellular",
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
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},
{
"id":"TIGGLYte",
"name":"Transport of Tiglylglycine, Extracellular",
"metabolites":{
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"tiggly_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
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},
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],
"sbo":"SBO:0000185"
}
},
{
"id":"OBDHc",
"name":"2-Oxobutanoate dehydrogenase, cytosolic",
"metabolites":{
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"co2_c":1.0,
"coa_c":-1.0,
"nad_c":-1.0,
"nadh_c":1.0,
"ppcoa_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"",
"subsystem":"Glycine, serine, alanine, and threonine metabolism",
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},
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"biocyc":[
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"metanetx.reaction":[
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"rhea":[
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"33225",
"33223",
"33224"
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"sabiork":[
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"sbo":"SBO:0000176",
"seed.reaction":[
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]
}
},
{
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"3ohglutac_m":1.0,
"coa_m":1.0,
"h2o_m":-1.0,
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},
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}
},
{
"id":"3OHGLUTACOAT3t",
"name":"Transport of 3-Hydroxy-Glutarate, Extracellular, Antiport",
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"akg_c":1.0,
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},
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"sbo":"SBO:0000185"
}
},
{
"id":"THMt3",
"name":"Thiamine transport in via proton  antiport",
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"h_e":1.0,
"thm_c":1.0,
"thm_e":-1.0
},
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"gene_reaction_rule":"80704_AT1 or 10560_AT1",
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"notes":{
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]
},
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"FTCD",
"name":"Formimidoyltransferase cyclodeaminase reversible",
"metabolites":{
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"h_c":-2.0,
"methf_c":1.0,
"nh4_c":1.0
},
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"upper_bound":1000.0,
"gene_reaction_rule":"10841_AT1 or 10841_AT2",
"subsystem":"Transport, mitochondrial",
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},
"annotation":{
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],
"ec-code":[
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"kegg.reaction":[
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"metanetx.reaction":[
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],
"rhea":[
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"22736",
"22738",
"22739"
],
"sabiork":[
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],
"sbo":"SBO:0000176",
"seed.reaction":[
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}
},
{
"id":"GLUTACOAm",
"name":"Formation of Glutaconyl Coenzyme A",
"metabolites":{
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"fadh2_m":1.0,
"glutacoa_m":1.0,
"glutcoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"GLUTCONm",
"name":"Formation of Glutaconic Acid",
"metabolites":{
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"glutacoa_m":-1.0,
"glutcon_m":1.0,
"h2o_m":-1.0,
"h_m":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Lysine metabolism",
"notes":{
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]
},
"annotation":{
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"GLUTCONm"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_taur_e",
"name":"Taurine exchange",
"metabolites":{
"taur_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_taur[e]"
]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000627",
"seed.reaction":[
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"rxn13402"
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}
},
{
"id":"3HIVAcm",
"name":"Formation of 3-Hydroxy-Isovalerate",
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"3ivcoa_m":-1.0,
"coa_m":1.0,
"h2o_m":-1.0,
"h_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Valine, leucine, and isoleucine metabolism",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_tym_e",
"name":"Tyramine exchange",
"metabolites":{
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000627",
"seed.reaction":[
"rxn09335"
]
}
},
{
"id":"3HIVActe",
"name":"Transport of 3-Hydroxy-Isovalerate, Extracellular",
"metabolites":{
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"3hivac_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"3HADICOAx",
"name":"Formation of 3-Hydroxy-Adipoyl Coa",
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"adpcoa_x":-1.0,
"h2o2_x":1.0,
"h2o_x":-1.0,
"o2_x":-1.0
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"lower_bound":0.0,
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"gene_reaction_rule":"(51_AT1 and 1891_AT1) or (51_AT1 and 1962_AT1) or (51_AT2 and 1891_AT1) or (51_AT2 and 1962_AT1)",
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"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"3HADPACx",
"name":"Formation of 3-Hydroxy-Adipate",
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"h2o_x":-1.0,
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"lower_bound":0.0,
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"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
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},
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],
"sbo":"SBO:0000176"
}
},
{
"id":"3HADPACtxc",
"name":"Transport of 3-Hydroxy-Adipate, Peroxisomal",
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"3hadpac_x":-1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"",
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},
"annotation":{
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"sbo":"SBO:0000185"
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},
{
"id":"3HADPACte",
"name":"Transport of 3-Hydroxy-Adipate, Extracellular",
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},
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"sbo":"SBO:0000185"
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},
{
"id":"EX_3hadpac_e",
"name":"Exchange of 3-Hydroxy-Adipate",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
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}
},
{
"id":"3OHSEBCOAx",
"name":"Formation of 3-Hydroxy-Sebacoyl Coa",
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"h2o_x":-1.0,
"o2_x":-1.0,
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"lower_bound":0.0,
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},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"PAFABCt",
"name":"Transport of 1-Alkyl 2-Acteylglycerol 3-Phosphocholine ",
"metabolites":{
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"atp_c":-1.0,
"h2o_c":-1.0,
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"lower_bound":0.0,
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"notes":{
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"PAILR_HSSECt",
"name":"Transport of 1-Arachidonoylglycerophosphoinositol",
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"pailar_hs_e":1.0
},
"lower_bound":0.0,
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},
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"sbo":"SBO:0000185"
}
},
{
"id":"PCHLN225_HSABCt",
"name":"Transport of 1-Docosahexenoylglycerophosphocholine (Delta 4, 7, 10, 13, 16, 19), Sn1-Lpc (22:6)",
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"subsystem":"Transport, extracellular",
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},
"annotation":{
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"sbo":"SBO:0000185"
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},
{
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"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000185"
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},
{
"id":"PCHOL2OLE_HSABCt",
"name":"Transport of 2-Oleoylglycerophosphocholine",
"metabolites":{
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"atp_c":-1.0,
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},
"lower_bound":0.0,
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"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOL2STE_HSABCt",
"name":"Transport of 2-Stearoylglycerophosphocholine",
"metabolites":{
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"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
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},
"lower_bound":0.0,
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"notes":{
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},
"annotation":{
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"sbo":"SBO:0000185"
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},
{
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},
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"notes":{
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},
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},
{
"id":"PCHOLEIC_HSABCt",
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},
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"notes":{
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},
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}
},
{
"id":"PCHOLET_HSABCt",
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},
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"notes":{
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
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"notes":{
"original_bigg_ids":[
"3OHSUBACx"
]
},
"annotation":{
"bigg.reaction":[
"3OHSUBACx"
],
"sbo":"SBO:0000176"
}
},
{
"id":"5OHHEXAc",
"name":"Formation of 5-Hydroxy-Hexanoate",
"metabolites":{
"5ohhexa_c":1.0,
"caproic_c":-1.0,
"h2o_c":1.0,
"h_c":-1.0,
"nadp_c":1.0,
"nadph_c":-1.0,
"o2_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"5OHHEXAc"
]
},
"annotation":{
"bigg.reaction":[
"5OHHEXAc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"5OHHEXAte",
"name":"Transport of 5-Hydroxy-Hexanoate, Extracellular",
"metabolites":{
"5ohhexa_c":-1.0,
"5ohhexa_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"5OHHEXAte"
]
},
"annotation":{
"bigg.reaction":[
"5OHHEXAte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLLINL_HSABCt",
"name":"Transport of 1-Linoleoylglycerophosphocholine (Delta 9, 12)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pchollinl_hs_c":-1.0,
"pchollinl_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5244_AT1 or 19_AT1 or 5205_AT1 or 57198_AT1 or 57194_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLLINL_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLLINL_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_ethmalac_e",
"name":"Exchange of Ethylmalonic Acid",
"metabolites":{
"ethmalac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ethmalac[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ethmalac_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"PCHOLN183_HSABCt",
"name":"Transport of 1-Octadeca-Trienoylglycerophosphocholine, Sn1-Lpc (18:3, Delta 9, 12, 15)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pcholn183_hs_c":-1.0,
"pcholn183_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5244_AT1 or 19_AT1 or 5205_AT1 or 57198_AT1 or 57194_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN183_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN183_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HEXGLYte",
"name":"Transport of Hexanoyl-Glycine",
"metabolites":{
"hexgly_c":-1.0,
"hexgly_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HEXGLYte"
]
},
"annotation":{
"bigg.reaction":[
"HEXGLYte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_lanost_e",
"name":"Lanosterol exchange",
"metabolites":{
"lanost_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lanost[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lanost_e"
],
"metanetx.reaction":[
"MNXR101014"
],
"sbo":"SBO:0000627",
"seed.reaction":[
"rxn12860"
]
}
},
{
"id":"EX_hexgly_e",
"name":"Exchange of Hexanoyl-Glycine",
"metabolites":{
"hexgly_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hexgly[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hexgly_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"METHSUCC",
"name":"Formation of Methyl-Succinate",
"metabolites":{
"coa_c":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"methsucc_c":1.0,
"methsuccoa_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"METHSUCC"
]
},
"annotation":{
"bigg.reaction":[
"METHSUCC"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PCHOLN203_HSABCt",
"name":"Transport of 1-Dihomo-Linolenoylglycerophosphocholine (20:3, Delta 8, 11, 14), Lysopc A C20:3",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pcholn203_hs_c":-1.0,
"pcholn203_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5244_AT1 or 19_AT1 or 5205_AT1 or 57198_AT1 or 57194_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN203_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN203_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN224_HSABCt",
"name":"Transport of 1-Docosatetraenoylglycerophosphocholine (Delta 7, 10, 13, 16), Sn1-Lpc (22:4)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pcholn224_hs_c":-1.0,
"pcholn224_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5244_AT1 or 19_AT1 or 5205_AT1 or 57198_AT1 or 57194_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN224_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN224_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN225_HSABCt",
"name":"Transport of 1-Docosapentenoylglycerophosphocholine (Delta 7, 10, 13, 16, 19), Sn1-Lpc (22:5)-W3",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pcholn225_hs_c":-1.0,
"pcholn225_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5244_AT1 or 19_AT1 or 5205_AT1 or 57198_AT1 or 57194_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN225_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN225_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN2254_HSABCt",
"name":"Transport of 1-Docosapentenoylglycerophosphocholine (Delta 4, 7, 10, 13, 16), Sn1-Lpc (22:5)-W6",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pcholn2254_hs_c":-1.0,
"pcholn2254_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5244_AT1 or 19_AT1 or 5205_AT1 or 57198_AT1 or 57194_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN2254_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN2254_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLOLE_HSABCt",
"name":"Transport of 1-Oleoylglycerophosphocholine (Delta 9)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pcholole_hs_c":-1.0,
"pcholole_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5244_AT1 or 19_AT1 or 5205_AT1 or 57198_AT1 or 57194_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLOLE_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLOLE_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLPALME_HSABCt",
"name":"Transport of 1-Palmitoleoylglycerophosphocholine (Delta 9)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pcholpalme_hs_c":-1.0,
"pcholpalme_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5244_AT1 or 19_AT1 or 5205_AT1 or 57198_AT1 or 57194_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLPALME-HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLPALME_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PE14_HSABCt",
"name":"Transport of 1-Myristoylglycerophosphoethanolamine (C14:0 Pe)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pe14_hs_c":-1.0,
"pe14_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"23250_AT1 or 286410_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PE14_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PE14_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SUBGLYc",
"name":"Formation of Suberyl-Glycine",
"metabolites":{
"coa_c":1.0,
"gly_c":-1.0,
"h_c":1.0,
"sbcoa_c":-1.0,
"subgly_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10249_AT1",
"subsystem":"Glycine, serine, alanine, and threonine metabolism",
"notes":{
"original_bigg_ids":[
"SUBGLYc"
]
},
"annotation":{
"bigg.reaction":[
"SUBGLYc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_subgly_e",
"name":"Exchange of Suberyl-Glycine",
"metabolites":{
"subgly_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_subgly[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_subgly_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"4OHBUTtmc",
"name":"Transport of 4-Hydroxy-Butyrate, Mitochondrial",
"metabolites":{
"4ohbut_c":1.0,
"4ohbut_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, mitochondrial",
"notes":{
"original_bigg_ids":[
"4OHBUTtmc"
]
},
"annotation":{
"bigg.reaction":[
"4OHBUTtmc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_4ohbut_e",
"name":"Exchange of 4-Hydroxy-Butyrate",
"metabolites":{
"4ohbut_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_4ohbut[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_4ohbut_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"12HPETUPKt",
"name":"Transport of 12-Hydroperoxyeicosa-5, 8, 10, 14-Tetraenoate, by Diffusion",
"metabolites":{
"12HPET_c":1.0,
"12HPET_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"12HPETUPKt"
]
},
"annotation":{
"bigg.reaction":[
"12HPETUPKt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"15HPETUPKt",
"name":"Transport of 15(S)-HPETE, Diffusion",
"metabolites":{
"15HPET_c":1.0,
"15HPET_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"15HPETUPKt"
]
},
"annotation":{
"bigg.reaction":[
"15HPETUPKt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"AK2LGCHOLABCt",
"name":"1-Alkyl 2-Acylglycerol 3-Phosphocholine Transport",
"metabolites":{
"adp_c":1.0,
"ak2lgchol_hs_c":-1.0,
"ak2lgchol_hs_e":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5244_AT1 or 19_AT1 or 5205_AT1 or 57198_AT1 or 57194_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"AK2LGCHOLABCt"
]
},
"annotation":{
"bigg.reaction":[
"AK2LGCHOLABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"APRGSTRNABCt",
"name":"Hydroxyprogesterone Transport, Active",
"metabolites":{
"adp_c":1.0,
"aprgstrn_c":1.0,
"aprgstrn_e":-1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"na1_c":1.0,
"na1_e":-1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"APRGSTRNABCt"
]
},
"annotation":{
"bigg.reaction":[
"APRGSTRNABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C14770UPKt",
"name":"Transport of 11, 12-EET, Diffusion",
"metabolites":{
"C14770_c":1.0,
"C14770_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C14770UPKt"
]
},
"annotation":{
"bigg.reaction":[
"C14770UPKt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PE161_HSABCt",
"name":"Transport of 1-Hexadecenoylglycerophosphoethanolamine (C16:1 Pe, Delta 9)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pe161_hs_c":-1.0,
"pe161_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"23250_AT1 or 286410_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PE161_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PE161_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PE17_HSABCt",
"name":"Transport of 1-Heptadecanoylglycerophosphoethanolamine (C17:0 Pe)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pe17_hs_c":-1.0,
"pe17_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"23250_AT1 or 286410_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PE17_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PE17_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PE203_HSABCt",
"name":"1-Eicosatrienoylglycerophosphoethanolamine (Delta 11, 14, 17), Lpe (20:3)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pe203_hs_c":-1.0,
"pe203_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"23250_AT1 or 286410_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PE203_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PE203_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PE2LINL_HSABCt",
"name":"Transport of 2-Linoleoylglycerophosphoethanolamine",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pe2linl_hs_c":-1.0,
"pe2linl_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"23250_AT1 or 286410_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PE2LINL_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PE2LINL_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE2510ABCt",
"name":"Transport of 11-Cis-Eicosenoate, Active",
"metabolites":{
"CE2510_c":1.0,
"CE2510_e":-1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"376497_AT1 or 11001_AT1 or 11000_AT1 or 10999_AT1 or 10998_AT1 or 28965_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE2510ABCt"
]
},
"annotation":{
"bigg.reaction":[
"CE2510ABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PEAR_HSABCt",
"name":"Transport of 1-Arachidonoyl-Sn-Glycero-3-Phosphoethanolamine",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pear_hs_c":-1.0,
"pear_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"23250_AT1 or 286410_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PEAR_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PEAR_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHPYRtm",
"name":"Transport of Phenylpyruvate via Proton Symport, Mitochondrial",
"metabolites":{
"h_c":1.0,
"h_m":-1.0,
"phpyr_c":1.0,
"phpyr_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51660_AT1 and 25874_AT1",
"subsystem":"Transport, mitochondrial",
"notes":{
"original_bigg_ids":[
"PHPYRtm"
]
},
"annotation":{
"bigg.reaction":[
"PHPYRtm"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_3mox4hoxm_e",
"name":"Exchange of 3-Methoxy-4-Hydroxymandelate",
"metabolites":{
"3mox4hoxm_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_3mox4hoxm[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_3mox4hoxm_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"CE4970tm",
"name":"2-Methylbutyrylglycine Transport, Mitochondrial",
"metabolites":{
"CE4970_c":1.0,
"CE4970_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, mitochondrial",
"notes":{
"original_bigg_ids":[
"CE4970tm"
]
},
"annotation":{
"bigg.reaction":[
"CE4970tm"
],
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}
},
{
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"name":"Transport of 1-Linoleoylglycerophosphoethanolamine (Delta 9, 12)",
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"h2o_c":-1.0,
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},
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},
{
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"name":"3-Methyl-Crotonyl-Glycine Transport, Mitochondrial",
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},
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}
},
{
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},
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},
{
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"name":"Transport of Sphingomyelin (D18:1/16:1), Active Transport",
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},
{
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"upper_bound":1000.0,
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},
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},
{
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},
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},
{
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},
{
"id":"SPHMYLN18121_hs_ATPt",
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}
},
{
"id":"2HYDOGOAT3t",
"name":"Transport of 2-Hydroxy-Glutarate, Extracellular, Antiport",
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"akg_c":1.0,
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},
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},
{
"id":"2HYDOGte",
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"upper_bound":1000.0,
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},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"PESTE_HSABCt",
"name":"Transport of 1-Stearoylglycerophosphoethanolamine",
"metabolites":{
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"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
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},
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}
},
{
"id":"SPHMYLN_HsSECt",
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},
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"sbo":"SBO:0000185"
}
},
{
"id":"SPHMYLN180241_hs_SECt",
"name":"Transport of Sphingomyelin (D18:0/24:1)",
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"sphmyln180241_hs_e":1.0
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"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"SPHMYLN18117_hs_SECt",
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},
"annotation":{
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}
},
{
"id":"SPHMYLN18118_hs_SECt",
"name":"Transport of Sphingomyelin (D18:1/18:0)",
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},
"annotation":{
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}
},
{
"id":"SPHMYLN18120_hs_SECt",
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},
{
"id":"SPHMYLN18123_hs_SECt",
"name":"Transport of Sphingomyelin (D18:1/23:0)",
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},
{
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"glutar_c":-1.0,
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},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
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"name":"Transport of Glutarate, Extracellular",
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"EX_thexdd_e",
"name":"Exchange of 7Z, 10Z-Hexadecadienoic Acid",
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"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
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"sbo":"SBO:0000627"
}
},
{
"id":"HEXDTRtm",
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"h_m":1.0,
"hexdtr_c":1.0,
"hexdtr_m":-1.0
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"lower_bound":0.0,
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},
"annotation":{
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"sbo":"SBO:0000185"
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},
{
"id":"SPHMYLN1824_hs_SECt",
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},
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"sbo":"SBO:0000185"
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},
{
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},
"annotation":{
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}
},
{
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},
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},
{
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},
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},
{
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"fadh2_m":1.0,
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"hpdececoa_m":1.0
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},
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},
{
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},
{
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},
{
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},
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},
{
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},
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},
{
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},
{
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"lower_bound":0.0,
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"gene_reaction_rule":"",
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},
"annotation":{
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"metanetx.reaction":[
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"sbo":"SBO:0000185"
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},
{
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},
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},
{
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},
{
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"lower_bound":0.0,
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},
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"sbo":"SBO:0000185"
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},
{
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"pcholhep_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
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},
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},
{
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"metabolites":{
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},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Tyrosine metabolism",
"notes":{
"original_bigg_ids":[
"SUCACETATc"
]
},
"annotation":{
"bigg.reaction":[
"SUCACETATc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PCHOLLINL_HSt1e",
"name":"Transport of 1-Linoleoylglycerophosphocholine (Delta 9, 12), Vescicular",
"metabolites":{
"pchollinl_hs_c":1.0,
"pchollinl_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLLINL_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLLINL_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN15_HSt1e",
"name":"Transport of 1-Pentadecanoylglycerophosphocholine, Sn1-Lpc (15:0), Vescicular",
"metabolites":{
"pcholn15_hs_c":1.0,
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},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN15_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN15_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN183_HSt1e",
"name":"Transport of 1-Octadeca-Trienoylglycerophosphocholine, Sn1-Lpc (18:3, Delta 9, 12, 15), Vescicular",
"metabolites":{
"pcholn183_hs_c":1.0,
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},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN183_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN183_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN1836_HSt1e",
"name":"Transport of 1-Octadeca-Trienoylglycerophosphocholine, Sn1-Lpc (18:3, Delta 6, 9, 12), Vescicular",
"metabolites":{
"pcholn1836_hs_c":1.0,
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},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN1836_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN1836_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN201_HSt1e",
"name":"Transport of 1-Eicosenoylglycerophosphocholine (Delta 11) , Sn1-Lpc (20:1), Vescicular",
"metabolites":{
"pcholn201_hs_c":1.0,
"pcholn201_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN201_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN201_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN225_HSt1e",
"name":"Transport of 1-Docosapentenoylglycerophosphocholine (Delta 7, 10, 13, 16, 19), Sn1-Lpc (22:5)-W3, Vescicular",
"metabolites":{
"pcholn225_hs_c":1.0,
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},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN225_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN225_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"5EIPENCte",
"name":"Transport of 5, 8, 11, 14, 17-Eicosapentenoic Acid, Extracellular Space",
"metabolites":{
"5eipenc_c":-1.0,
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"adp_c":1.0,
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"h_c":1.0,
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},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"5EIPENCte"
]
},
"annotation":{
"bigg.reaction":[
"5EIPENCte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"T4HCINNMte",
"name":"Transport of Trans-4-Coumarate, Extracellular",
"metabolites":{
"T4hcinnm_c":-1.0,
"T4hcinnm_e":1.0,
"oh1_c":1.0,
"oh1_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"55867_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"T4HCINNMte"
]
},
"annotation":{
"bigg.reaction":[
"T4HCINNMte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"AGRMte",
"name":"Transport of Agmatinium into Extracellular Space",
"metabolites":{
"agm_c":-1.0,
"agm_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6582_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"AGRMte"
]
},
"annotation":{
"bigg.reaction":[
"AGRMte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EANDRSTRNte",
"name":"Transport of 16Alpha-Hydroxydehydroepiandrosterone, Extracellular",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"eandrstrn_c":-1.0,
"eandrstrn_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5243_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"EANDRSTRNte"
]
},
"annotation":{
"bigg.reaction":[
"EANDRSTRNte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"AHANDROSTANte",
"name":"Transport of 3Alpha-Hydroxy-5Beta-Androstan-17-One, Extracellular",
"metabolites":{
"adp_c":1.0,
"ahandrostan_c":-1.0,
"ahandrostan_e":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5243_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"AHANDROSTANte"
]
},
"annotation":{
"bigg.reaction":[
"AHANDROSTANte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHLN225_HSt1e",
"name":"Transport of 1-Docosahexenoylglycerophosphocholine (Delta 4, 7, 10, 13, 16, 19), Sn1-Lpc (22:6), Vescicular",
"metabolites":{
"pcholn226_hs_c":1.0,
"pcholn226_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHLN225_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PCHLN225_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLSTE_HSt1e",
"name":"Transport of 1-Stearoylglycerophosphocholine, Vescicular",
"metabolites":{
"pcholste_hs_c":1.0,
"pcholste_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLSTE_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLSTE_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SUCACETOte",
"name":"Transport of Succinylacetone",
"metabolites":{
"sucaceto_c":-1.0,
"sucaceto_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"SUCACETOte"
]
},
"annotation":{
"bigg.reaction":[
"SUCACETOte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PE12_HSt1e",
"name":"Transport of 1-Didecanoylglycerophosphoethanolamine (C12:0 Pe), Vescicular",
"metabolites":{
"pe12_hs_c":1.0,
"pe12_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PE12_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PE12_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PE14_HSt1e",
"name":"Transport of 1-Myristoylglycerophosphoethanolamine (C14:0 Pe), Vescicular",
"metabolites":{
"pe14_hs_c":1.0,
"pe14_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PE14_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PE14_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PE15_HSt1e",
"name":"Transport of 1-Pentadecanoylglycerophosphoethanolamine (C15:0 Pe), Vescicular",
"metabolites":{
"pe15_hs_c":1.0,
"pe15_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PE15_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PE15_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C05301te",
"name":"Transport of 2-Hydroxyestradiol-17Beta, Extracellular",
"metabolites":{
"C05301_c":-1.0,
"C05301_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5243_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C05301te"
]
},
"annotation":{
"bigg.reaction":[
"C05301te"
],
"sbo":"SBO:0000185"
}
},
{
"id":"11DOCRTSLte",
"name":"Transport of 11-Deoxycortisol, Extracellular",
"metabolites":{
"11docrtsl_c":-1.0,
"11docrtsl_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5243_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"11DOCRTSLte"
]
},
"annotation":{
"bigg.reaction":[
"11DOCRTSLte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE2211te",
"name":"Transport of Allopregnanolone, Extracellular",
"metabolites":{
"CE2211_c":-1.0,
"CE2211_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5243_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE2211te"
]
},
"annotation":{
"bigg.reaction":[
"CE2211te"
],
"sbo":"SBO:0000185"
}
},
{
"id":"17AHPRGSTRNte",
"name":"Transport of 17Alpha-Hydroxyprogesterone, Extracellular",
"metabolites":{
"17ahprgstrn_c":-1.0,
"17ahprgstrn_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5243_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"17AHPRGSTRNte"
]
},
"annotation":{
"bigg.reaction":[
"17AHPRGSTRNte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PE161_HSt1e",
"name":"Transport of 1-Hexadecenoylglycerophosphoethanolamine (C16:1 Pe, Delta 9), Vescicular",
"metabolites":{
"pe161_hs_c":1.0,
"pe161_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PE161_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PE161_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PE226_HSt1e",
"name":"Transport of 1-Docosahexenoylglyceroethanolamine (Delta 4, 7, 10, 13, 16, 19), Lpe (22:6), Vescicular",
"metabolites":{
"pe226_hs_c":1.0,
"pe226_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PE226_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PE226_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C03681te",
"name":"Transport of 5Alpha-Pregnane-3, 20-Dione, Extracellular",
"metabolites":{
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"adp_c":1.0,
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"h2o_c":-1.0,
"h_c":1.0,
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},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5243_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C03681te"
]
},
"annotation":{
"bigg.reaction":[
"C03681te"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PEAR_HSt1e",
"name":"Transport of 1-Arachidonoyl-Sn-Glycero-3-Phosphoethanolamine, Vescicular",
"metabolites":{
"pear_hs_c":1.0,
"pear_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PEAR_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PEAR_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE1352te",
"name":"Transport of 17Alpha-Hydroxypregnenolone Sulfate, Extracellular",
"metabolites":{
"CE1352_c":-1.0,
"CE1352_e":1.0,
"adp_c":1.0,
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"h2o_c":-1.0,
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},
"lower_bound":0.0,
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"gene_reaction_rule":"5243_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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"CE1352te"
],
"sbo":"SBO:0000185"
}
},
{
"id":"VANILLACc",
"name":"Formation of Vanil-Lactate",
"metabolites":{
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"nad_c":1.0,
"nadh_c":-1.0,
"vanillac_c":1.0,
"vanilpyr_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Tyrosine metabolism",
"notes":{
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]
},
"annotation":{
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"VANILLACc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PELPALM_HSt1e",
"name":"Transport of 1-Palmitoylglycerophosphoethanolamine, Vescicular",
"metabolites":{
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"pepalm_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"PESTE_HSt1e",
"name":"Transport of 1-Stearoylglycerophosphoethanolamine, Vescicular",
"metabolites":{
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"peste_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"SPHMYLN_HsATPte",
"name":"Extracellular Transport of Sphingomyeline, Active Transport",
"metabolites":{
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"h_c":1.0,
"pi_c":1.0,
"sphmyln_hs_c":-1.0,
"sphmyln_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5243_AT1 or 4363_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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"SPHMYLN_HsATPte"
]
},
"annotation":{
"bigg.reaction":[
"SPHMYLN_HsATPte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SPHMYLN180241_hs_ATPt",
"name":"Transport of Sphingomyelin (D18:0/24:1), Active Transport",
"metabolites":{
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"h2o_c":-1.0,
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"pi_c":1.0,
"sphmyln180241_hs_c":-1.0,
"sphmyln180241_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5243_AT1 or 4363_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"C05769te",
"name":"Transport by Atb Binding Cassette Transporter ABCc2 into Extracellular Space",
"metabolites":{
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"adp_c":1.0,
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},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1244_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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"C05769te"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SAMHISTAe",
"name":"S-Adenosyl-L-Methionine:Histamine N-Tele-Methyltransferase, Extracellular",
"metabolites":{
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"amet_e":-1.0,
"h_e":1.0,
"hista_e":-1.0,
"mhista_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3176_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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"SAMHISTAe"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GLCRt1",
"name":"Transport by Glut-5 Transporter into Extracellular Space",
"metabolites":{
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"glcr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6518_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLCRt1"
]
},
"annotation":{
"bigg.reaction":[
"GLCRt1"
],
"sbo":"SBO:0000185"
}
},
{
"id":"2HYOXPLCte",
"name":"2-Hydroxyphenylacetate Proton Symport, Cytosol",
"metabolites":{
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"2hyoxplac_e":1.0,
"h_c":-1.0,
"h_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6566_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"2HYOXPLCte"
]
},
"annotation":{
"bigg.reaction":[
"2HYOXPLCte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"MHISTAte",
"name":"Facilitated Diffusion Through Uniport Oct1 into Extracellular Space",
"metabolites":{
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"mhista_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6581_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"MHISTAte"
]
},
"annotation":{
"bigg.reaction":[
"MHISTAte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SPHMYLN18114_hs_ATPt",
"name":"Transport of Sphingomyelin (D18:1/14:0), Active Transport",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"sphmyln18114_hs_c":-1.0,
"sphmyln18114_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5243_AT1 or 4363_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"SPHMYLN18114_hs_ATPt"
]
},
"annotation":{
"bigg.reaction":[
"SPHMYLN18114_hs_ATPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SPHMYLN18115_hs_ATPt",
"name":"Transport of Sphingomyelin (D18:1/15:0), Active Transport",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"sphmyln18115_hs_c":-1.0,
"sphmyln18115_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5243_AT1 or 4363_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"SPHMYLN18115_hs_ATPt"
]
},
"annotation":{
"bigg.reaction":[
"SPHMYLN18115_hs_ATPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SPHMYLN18116_hs_ATPt",
"name":"Transport of Sphingomyelin (D18:1/16:0), Active Transport",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"sphmyln18116_hs_c":-1.0,
"sphmyln18116_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5243_AT1 or 4363_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"SPHMYLN18116_hs_ATPt"
]
},
"annotation":{
"bigg.reaction":[
"SPHMYLN18116_hs_ATPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"VANILLACte",
"name":"Secretion of Vanil-Lactate",
"metabolites":{
"vanillac_c":-1.0,
"vanillac_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"VANILLACte"
]
},
"annotation":{
"bigg.reaction":[
"VANILLACte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"2OBUTt",
"name":"Transport by Monocarboxylate Transporter-2 into Extracellular Space",
"metabolites":{
"2obut_c":1.0,
"2obut_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9194_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"2OBUTt"
]
},
"annotation":{
"bigg.reaction":[
"2OBUTt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PPP9ABCte",
"name":"Transport by ABCg2 into Extracellular Space",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"ppp9_c":-1.0,
"ppp9_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PPP9ABCte"
]
},
"annotation":{
"bigg.reaction":[
"PPP9ABCte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"MLTHFte",
"name":"Transport by Pcet into Extracellular Space",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"mlthf_c":1.0,
"mlthf_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"113235_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"MLTHFte"
]
},
"annotation":{
"bigg.reaction":[
"MLTHFte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TYMte2",
"name":"Tyraminium Proton Symport, Cytosol",
"metabolites":{
"h_c":-1.0,
"h_e":1.0,
"tym_c":-1.0,
"tym_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"222962_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TYMte2"
]
},
"annotation":{
"bigg.reaction":[
"TYMte2"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE4890te",
"name":"Transport by Pmat Transporter into Extracellular Space",
"metabolites":{
"CE4890_c":-1.0,
"CE4890_e":1.0,
"h_c":-1.0,
"h_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"222962_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE4890te"
]
},
"annotation":{
"bigg.reaction":[
"CE4890te"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE7085te",
"name":"Transport (ATP-Dependent) into Extracellular Space",
"metabolites":{
"CE7085_c":-1.0,
"CE7085_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10257_AT1 or 4363_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE7085te"
]
},
"annotation":{
"bigg.reaction":[
"CE7085te"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE4877te",
"name":"Transport (ATP-Dependent) into Extracellular Space",
"metabolites":{
"CE4877_c":-1.0,
"CE4877_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10257_AT1 or 4363_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE4877te"
]
},
"annotation":{
"bigg.reaction":[
"CE4877te"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C05770te",
"name":"Transport by Atb Binding Cassette Transporter ABCc2 into Extracellular Space",
"metabolites":{
"C05770_c":-1.0,
"C05770_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1244_AT1 or 10058_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C05770te"
]
},
"annotation":{
"bigg.reaction":[
"C05770te"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SPHS1Pt2e",
"name":"Export Mediated by ATP Binding Cassette (ABC) Transporters",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"sphs1p_c":-1.0,
"sphs1p_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"4363_AT1 or 19_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"SPHS1Pt2e"
]
},
"annotation":{
"bigg.reaction":[
"SPHS1Pt2e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DHEAte",
"name":"Transport of 3Beta-Hydroxyandrost-5-En-17-One",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"dhea_c":-1.0,
"dhea_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"DHEAte"
]
},
"annotation":{
"bigg.reaction":[
"DHEAte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_dhea_e",
"name":"Exchange of 3Beta-Hydroxyandrost-5-En-17-One",
"metabolites":{
"dhea_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_dhea[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_dhea_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"AHANDROSTANtr",
"name":"Transport of 3Alpha-Hydroxy-5Beta-Androstan-17-One, Endoplasmatic Reticulum",
"metabolites":{
"adp_c":1.0,
"ahandrostan_c":1.0,
"ahandrostan_r":-1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
"notes":{
"original_bigg_ids":[
"AHANDROSTANtr"
]
},
"annotation":{
"bigg.reaction":[
"AHANDROSTANtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_ahandrostan_e",
"name":"Exchange of 3Alpha-Hydroxy-5Beta-Androstan-17-One",
"metabolites":{
"ahandrostan_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ahandrostan[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ahandrostan_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"ANDRSTANDRtr",
"name":"Transport of 5Alpha-Androstane-3, 17-Dione, Endoplasmatic Reticulum",
"metabolites":{
"adp_c":1.0,
"andrstandn_c":1.0,
"andrstandn_r":-1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
"notes":{
"original_bigg_ids":[
"ANDRSTANDRtr"
]
},
"annotation":{
"bigg.reaction":[
"ANDRSTANDRtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_andrstandn_e",
"name":"Exchange of 5Alpha-Androstane-3, 17-Dione",
"metabolites":{
"andrstandn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_andrstandn[e]"
]
},
"annotation":{
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"EX_andrstandn_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_CE2209_e",
"name":"Exchange of 5Alpha-Androstane-3Alpha, 17Beta-Diol",
"metabolites":{
"CE2209_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE2209[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_CE2209_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_estrone_e",
"name":"Exchange of Estrone",
"metabolites":{
"estrone_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_estrone[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_estrone_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"C05298te",
"name":"Transport of 2-Hydroxyestrone, Extracellular",
"metabolites":{
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"C05298_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C05298te"
]
},
"annotation":{
"bigg.reaction":[
"C05298te"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_C05299_e",
"name":"Exchange of 2-Methoxyestrone",
"metabolites":{
"C05299_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_C05299[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_C05299_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_C05302_e",
"name":"Exchange of 2-Methoxyestradiol-17Beta",
"metabolites":{
"C05302_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_C05302[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_C05302_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_11docrtsl_e",
"name":"Exchange of 11-Deoxycortisol",
"metabolites":{
"11docrtsl_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_11docrtsl[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_11docrtsl_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"PTRCARGte",
"name":"Putrescine Export via Putrescine/Arginine Exchanger",
"metabolites":{
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"arg__L_e":-1.0,
"ptrc_c":-1.0,
"ptrc_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6520_AT1 and 9056_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PTRCARGte"
]
},
"annotation":{
"bigg.reaction":[
"PTRCARGte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"MLTHFte2",
"name":"Transport by Rfc into Extracellular Space",
"metabolites":{
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"mlthf_e":-1.0,
"oh1_c":-1.0,
"oh1_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6573_AT1 or 6573_AT2",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"MLTHFte2"
]
},
"annotation":{
"bigg.reaction":[
"MLTHFte2"
],
"sbo":"SBO:0000185"
}
},
{
"id":"13DAMPPte",
"name":"Facilitated Diffusion Through Uniport Octs Transporters into Extracellular Space",
"metabolites":{
"13dampp_c":-1.0,
"13dampp_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6580_AT1 or 6582_AT1 or 6581_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"13DAMPPte"
]
},
"annotation":{
"bigg.reaction":[
"13DAMPPte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARGN1ASPMDte",
"name":"Transport by Y+Lat-2 into Extracellular Space",
"metabolites":{
"N1aspmd_c":-1.0,
"N1aspmd_e":1.0,
"arg__L_c":1.0,
"arg__L_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9057_AT1 and 6520_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGN1ASPMDte"
]
},
"annotation":{
"bigg.reaction":[
"ARGN1ASPMDte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"34DHPHAte",
"name":" (3, 4-Dihydroxyphenyl)Acetate (Dopac) Transport, Cytosol",
"metabolites":{
"34dhpha_c":-1.0,
"34dhpha_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9376_AT1 or 9356_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"34DHPHAte"
]
},
"annotation":{
"bigg.reaction":[
"34DHPHAte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"34DHOXMANDte",
"name":"3, 4-Dihydroxymandelate Transport, Cytosol",
"metabolites":{
"34dhoxmand_c":-1.0,
"34dhoxmand_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9376_AT1 or 9356_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"34DHOXMANDte"
]
},
"annotation":{
"bigg.reaction":[
"34DHOXMANDte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE6205te",
"name":"5-Methoxytryptophol Transport, Cytosol",
"metabolites":{
"CE6205_c":-1.0,
"CE6205_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9376_AT1 or 9356_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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"CE6205te"
]
},
"annotation":{
"bigg.reaction":[
"CE6205te"
],
"sbo":"SBO:0000185"
}
},
{
"id":"1A25DHVITD3te",
"name":"Transport As Vitamin D",
"metabolites":{
"1a25dhvitd3_c":1.0,
"1a25dhvitd3_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"949_AT1 or 948_AT1 or 29881_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"1A25DHVITD3te"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ISOBUTtm",
"name":"Transport of Isobutyrylglycine into Cytosol",
"metabolites":{
"CE4969_c":1.0,
"CE4969_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, mitochondrial",
"notes":{
"original_bigg_ids":[
"ISOBUTtm"
]
},
"annotation":{
"bigg.reaction":[
"ISOBUTtm"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ISOBUTte",
"name":"Transport of Isobutyrylglycine into Extracellular Space",
"metabolites":{
"CE4969_c":-1.0,
"CE4969_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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"ISOBUTte"
]
},
"annotation":{
"bigg.reaction":[
"ISOBUTte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"NACCYSte",
"name":"Transport of N-Acetyl-L-Cysteine into Extracellular Space",
"metabolites":{
"CE1310_c":-1.0,
"CE1310_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"NACCYSte"
]
},
"annotation":{
"bigg.reaction":[
"NACCYSte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_agm_e",
"name":"Agmatine exchange",
"metabolites":{
"agm_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_agm[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_agm_e"
],
"metanetx.reaction":[
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],
"sbo":"SBO:0000627",
"seed.reaction":[
"rxn08082"
]
}
},
{
"id":"T4HCINNMtm",
"name":"Transport of Trans-4-Coumarate, Mitochondrial",
"metabolites":{
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"T4hcinnm_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, mitochondrial",
"notes":{
"original_bigg_ids":[
"T4HCINNMtm"
]
},
"annotation":{
"bigg.reaction":[
"T4HCINNMtm"
],
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}
},
{
"id":"EX_prgnlone_e",
"name":"Exchange of Pregnenolone",
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"prgnlone_e":-1.0
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"upper_bound":1000.0,
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"EX_prgnlone[e]"
]
},
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"EX_prgnlone_e"
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}
},
{
"id":"EX_17ahprgnlone_e",
"name":"Exchange of 17Alpha-Hydroxypregnenolone",
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"17ahprgnlone_e":-1.0
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"upper_bound":1000.0,
"gene_reaction_rule":"",
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"EX_17ahprgnlone[e]"
]
},
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"EX_17ahprgnlone_e"
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}
},
{
"id":"EX_C03681_e",
"name":"Exchange of 5Alpha-Pregnane-3, 20-Dione",
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"C03681_e":-1.0
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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"EX_C03681[e]"
]
},
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"bigg.reaction":[
"EX_C03681_e"
],
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}
},
{
"id":"HC02020tr",
"name":"Transport of Cholesterol-Ester-Palm, Endoplasmatic Reticulum, within Lipoproteins",
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"HC02020_c":1.0,
"HC02020_r":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
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"HC02020tr"
]
},
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"bigg.reaction":[
"HC02020tr"
],
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}
},
{
"id":"EX_prgnlones_e",
"name":"Exchange of Pregnenolone Sulfate",
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"prgnlones_e":-1.0
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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"EX_prgnlones[e]"
]
},
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"EX_prgnlones_e"
],
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}
},
{
"id":"EX_CE1352_e",
"name":"Exchange of 17Alpha-Hydroxypregnenolone Sulfate",
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"CE1352_e":-1.0
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE1352[e]"
]
},
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"bigg.reaction":[
"EX_CE1352_e"
],
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}
},
{
"id":"XOL24OHte",
"name":"Transport of (24S)-24-Hydroxycholesterol, Extracellular Space, within Lipoproteins",
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"xol24oh_c":-1.0,
"xol24oh_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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"original_bigg_ids":[
"XOL24OHte"
]
},
"annotation":{
"bigg.reaction":[
"XOL24OHte"
],
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}
},
{
"id":"EX_xol24oh_e",
"name":"Exchange of (24S)-24-Hydroxycholesterol",
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"xol24oh_e":-1.0
},
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_xol24oh[e]"
]
},
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"bigg.reaction":[
"EX_xol24oh_e"
],
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}
},
{
"id":"XOL25OHte",
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"xol25oh_c":-1.0,
"xol25oh_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
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"original_bigg_ids":[
"XOL25OHte"
]
},
"annotation":{
"bigg.reaction":[
"XOL25OHte"
],
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}
},
{
"id":"EX_xol25oh_e",
"name":"Exchange of 25-Hydroxycholesterol",
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"xol25oh_e":-1.0
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"upper_bound":1000.0,
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"EX_xol25oh[e]"
]
},
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"EX_xol25oh_e"
],
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}
},
{
"id":"DSMSTEROLtr",
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},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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"notes":{
"original_bigg_ids":[
"DSMSTEROLtr"
]
},
"annotation":{
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"DSMSTEROLtr"
],
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}
},
{
"id":"DSMSTEROLte",
"name":"Transport of Desmosterol, Extracellular Space, within Lipoproteins",
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},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
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"original_bigg_ids":[
"DSMSTEROLte"
]
},
"annotation":{
"bigg.reaction":[
"DSMSTEROLte"
],
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}
},
{
"id":"EX_chsterols_e",
"name":"Exchange of Cholesterol Sulfate",
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"chsterols_e":-1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_chsterols[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_chsterols_e"
],
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}
},
{
"id":"EX_3ityr__L_e",
"name":"Exchange of 3-Iodo-L-Tyrosine",
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"3ityr__L_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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"EX_3ityr_L[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_3ityr__L_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_T4hcinnm_e",
"name":"EX T4hcinnm LPAREN e RPAREN ",
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"T4hcinnm_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_T4hcinnm[e]"
]
},
"annotation":{
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"EX_T4hcinnm_e"
],
"metanetx.reaction":[
"MNXR104662"
],
"sbo":"SBO:0000627",
"seed.reaction":[
"rxn12813",
"rxn12812"
]
}
},
{
"id":"4HBZtm",
"name":"4 Hydroxybenzoate mitochondrial transport",
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"4hbz_m":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
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"notes":{
"original_bigg_ids":[
"4HBZtm"
]
},
"annotation":{
"bigg.reaction":[
"4HBZtm"
],
"metanetx.reaction":[
"MNXR95013"
],
"sabiork":[
"12859"
],
"sbo":"SBO:0000185",
"seed.reaction":[
"rxn12787",
"rxn09792"
]
}
},
{
"id":"SUCSALtm",
"name":"Transport of Succinic Semialdehyde, Mitochondrial",
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"sucsal_c":1.0,
"sucsal_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, mitochondrial",
"notes":{
"original_bigg_ids":[
"SUCSALtm"
]
},
"annotation":{
"bigg.reaction":[
"SUCSALtm"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SUCSALte",
"name":"Transport of Succinic Semialdehyde, Extracellular Space",
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"sucsal_c":-1.0,
"sucsal_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"SUCSALte"
]
},
"annotation":{
"bigg.reaction":[
"SUCSALte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE7081tr",
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"adp_r":1.0,
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"h2o_r":-1.0,
"h_r":1.0,
"pi_r":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
"notes":{
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"CE7081tr"
]
},
"annotation":{
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"CE7081tr"
],
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}
},
{
"id":"CE7081tm",
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"lower_bound":0.0,
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"gene_reaction_rule":"",
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"notes":{
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"CE7081tm"
]
},
"annotation":{
"bigg.reaction":[
"CE7081tm"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_35diotyr_e",
"name":"Exchange of 3, 5-Diiodo-L-Tyrosine",
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"35diotyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_35diotyr[e]"
]
},
"annotation":{
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"EX_35diotyr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_13_cis_retn_e",
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"13_cis_retn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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"EX_13_cis_retn[e]"
]
},
"annotation":{
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"EX_13_cis_retn_e"
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}
},
{
"id":"LDL_HSSYN",
"name":"Formation of LDL",
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"chsterol_e":-5.0,
"ldl_hs_e":1.0,
"pchol_hs_e":-2.0,
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},
"lower_bound":0.0,
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"gene_reaction_rule":"",
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"notes":{
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"LDL_HSSYN"
]
},
"annotation":{
"bigg.reaction":[
"LDL_HSSYN"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LDL_HSDEG",
"name":"Degradation of LDL",
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"Rtotal3_e":1.0,
"Rtotal_e":1.0,
"chsterol_e":5.0,
"glyc_e":1.0,
"h2o_e":-1.0,
"ldl_hs_e":-1.0,
"pchol_hs_e":2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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"LDL_HSDEG"
]
},
"annotation":{
"bigg.reaction":[
"LDL_HSDEG"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HDL_HSDEG",
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"HC00007_e":1.0,
"HC00008_e":1.0,
"HC00009_e":1.0,
"Rtotal2_e":1.0,
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"Rtotal_e":1.0,
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"h2o_e":-1.0,
"hdl_hs_e":-1.0,
"pchol_hs_e":2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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"HDL_HSDEG"
]
},
"annotation":{
"bigg.reaction":[
"HDL_HSDEG"
],
"sbo":"SBO:0000176"
}
},
{
"id":"MYELIN_HSSYN",
"name":"Formation of Myelin Sheath",
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"myelin_hs_c":1.0,
"pail_hs_c":-1.0,
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"ps_hs_c":-1.0,
"sgalside_hs_c":-1.0,
"sphmyln_hs_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
"original_bigg_ids":[
"MYELIN_HSSYN"
]
},
"annotation":{
"bigg.reaction":[
"MYELIN_HSSYN"
],
"sbo":"SBO:0000176"
}
},
{
"id":"DM_myelin_hs_c",
"name":"Demand of Myelin Sheat",
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"myelin_hs_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_myelin_hs[c]"
]
},
"annotation":{
"bigg.reaction":[
"DM_myelin_hs_c"
],
"sbo":"SBO:0000628"
}
},
{
"id":"12HARACHDtr",
"name":"Transport of 12 Hydroxy Arachidonic Acid, Endoplasmatic Reticulum, Active Transport",
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"12harachd_r":-1.0,
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"atp_r":-1.0,
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"h_r":1.0,
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},
"lower_bound":0.0,
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"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
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"12HARACHDtr"
]
},
"annotation":{
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"12HARACHDtr"
],
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}
},
{
"id":"12HARACHDte",
"name":"Transport of 12 Hydroxy Arachidonic Acid, Extracellular Space, Active Transport",
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"h_c":1.0,
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},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
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}
},
{
"id":"18HARACHDte",
"name":"Transport of 18 Hydroxy Arachidonic Acid, Extracellular Space, Active Transport",
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"h_c":1.0,
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},
"lower_bound":0.0,
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"gene_reaction_rule":"",
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"notes":{
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"18HARACHDte"
]
},
"annotation":{
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"18HARACHDte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_18harachd_e",
"name":"Exchange of 18 Hydroxy Arachidonic Acid",
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"18harachd_e":-1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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"notes":{
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"EX_18harachd[e]"
]
},
"annotation":{
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"EX_18harachd_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"SQLte",
"name":"Transport of Squalene, Extracellular Space, within Chylomicron",
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"sql_c":-1.0,
"sql_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"SQLte"
]
},
"annotation":{
"bigg.reaction":[
"SQLte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HC00460te",
"name":"2, 5-Dihydroxybenzoate Diffusion, Cytosol",
"metabolites":{
"HC00460_c":-1.0,
"HC00460_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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"HC00460te"
]
},
"annotation":{
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"HC00460te"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_HC00460_e",
"name":"Exchange of 2,5-Dihydroxybenzoate",
"metabolites":{
"HC00460_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_HC00460[e]"
]
},
"annotation":{
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"EX_HC00460_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"ORN_Dte",
"name":"Transport of Ornithine, Extracellular Space",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"orn__D_c":-1.0,
"orn__D_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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"ORN_Dte"
]
},
"annotation":{
"bigg.reaction":[
"ORN_Dte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"5G2OXPTte",
"name":"Transport of 5-Guanidino-2-Oxopentanoic Acid, Extracellular",
"metabolites":{
"5g2oxpt_c":-1.0,
"5g2oxpt_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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"5G2OXPTte"
]
},
"annotation":{
"bigg.reaction":[
"5G2OXPTte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_vanillac_e",
"name":"Exchange of Vanil-Lactate",
"metabolites":{
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_vanillac[e]"
]
},
"annotation":{
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"EX_vanillac_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_CE7090_e",
"name":"Exchange of 18R-Hydroxy-5Z,8Z,11Z,14Z,16E-Eicosapentaenoic Acid",
"metabolites":{
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_CE7090[e]"
]
},
"annotation":{
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"sbo":"SBO:0000627"
}
},
{
"id":"EX_CE7096_e",
"name":"Exchange of 5,15-Dihydroxyeicosatetraenoic Acid",
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"CE7096_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_CE7096[e]"
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},
"annotation":{
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"sbo":"SBO:0000627"
}
},
{
"id":"EX_CE4877_e",
"name":"Exchange of 15-Deoxy-Prostaglandin J2",
"metabolites":{
"CE4877_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_CE4877[e]"
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},
"annotation":{
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"EX_CE4877_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_CE1447_e",
"name":"Exchange of 11-Dehydrothromboxane B2",
"metabolites":{
"CE1447_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE1447[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_CE1447_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"6HOXMELATNte",
"name":"6-Hydroxymelatonin Diffusion, Cytosol",
"metabolites":{
"6hoxmelatn_c":-1.0,
"6hoxmelatn_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"2H3MVc",
"name":"Formation of 2-Hydroxy-3-Methyl-Valerate",
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"3mop_c":-1.0,
"h_c":-1.0,
"nad_c":1.0,
"nadh_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(3945_AT1 and 3939_AT1) or 160287_AT1 or 3948_AT2 or 3939_AT1 or 3948_AT1 or 55293_AT1 or 3945_AT1 or 92483_AT1",
"subsystem":"Valine, leucine, and isoleucine metabolism",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"2H3MVc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_trypta_e",
"name":"Exchange of Tryptamine",
"metabolites":{
"trypta_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trypta[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trypta_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_CE2006_e",
"name":"Exchange of 4-Hydroxy-2-Nonenal",
"metabolites":{
"CE2006_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE2006[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_CE2006_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"GLUCYSte",
"name":"Transport (ATP-Dependent) into Extracellular Space",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"glucys_c":-1.0,
"glucys_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLUCYSte"
]
},
"annotation":{
"bigg.reaction":[
"GLUCYSte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_C10164_e",
"name":"Exchange of Picolinic Acid",
"metabolites":{
"C10164_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_C10164[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_C10164_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_n8aspmd_e",
"name":"Exchange of N(8)-Acetylspermidine",
"metabolites":{
"n8aspmd_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_n8aspmd[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_n8aspmd_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"2H3MVte",
"name":"Transport of 2-Hydroxy-3-Methyl-Valerate",
"metabolites":{
"2h3mv_c":-1.0,
"2h3mv_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"2H3MVte"
]
},
"annotation":{
"bigg.reaction":[
"2H3MVte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_CE6205_e",
"name":"Exchange of 5-Methoxytryptophol",
"metabolites":{
"CE6205_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE6205[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_CE6205_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_C09642_e",
"name":"Exchange of (-)-Salsolinol",
"metabolites":{
"C09642_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_C09642[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_C09642_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"MELATNte",
"name":"Melatonin Diffusion, Cytosol",
"metabolites":{
"melatn_c":-1.0,
"melatn_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"MELATNte"
]
},
"annotation":{
"bigg.reaction":[
"MELATNte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"2HIVc",
"name":"Formation of 2-Hydroxy-Isovalerate",
"metabolites":{
"2hiv_c":1.0,
"3mob_c":-1.0,
"h_c":-1.0,
"nad_c":1.0,
"nadh_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(3945_AT1 and 3939_AT1) or 160287_AT1 or 3948_AT2 or 3939_AT1 or 3948_AT1 or 55293_AT1 or 3945_AT1 or 92483_AT1",
"subsystem":"Valine, leucine, and isoleucine metabolism",
"notes":{
"original_bigg_ids":[
"2HIVc"
]
},
"annotation":{
"bigg.reaction":[
"2HIVc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_C05769_e",
"name":"Exchange of Coproporphyrin I",
"metabolites":{
"C05769_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_C05769[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_C05769_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"C05767te",
"name":"Assumed Passive Diffusion into Extracellular Space",
"metabolites":{
"C05767_c":-1.0,
"C05767_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C05767te"
]
},
"annotation":{
"bigg.reaction":[
"C05767te"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_C05770_e",
"name":"Exchange of Coproporphyrin Iii",
"metabolites":{
"C05770_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_C05770[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_C05770_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"2HIVte",
"name":"Transport of 2-Hydroxy-Isovalerate",
"metabolites":{
"2hiv_c":-1.0,
"2hiv_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"2HIVte"
]
},
"annotation":{
"bigg.reaction":[
"2HIVte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PPBNGte",
"name":"Assumed Passive Diffusion into Extracellular Space",
"metabolites":{
"ppbng_c":-1.0,
"ppbng_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PPBNGte"
]
},
"annotation":{
"bigg.reaction":[
"PPBNGte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_ppbng_e",
"name":"Exchange of Porphobilinogen",
"metabolites":{
"ppbng_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ppbng[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ppbng_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"12PPDRte",
"name":"Assumed Passive Diffusion into Extracellular Space",
"metabolites":{
"12ppd__R_c":-1.0,
"12ppd__R_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"12PPDRte"
]
},
"annotation":{
"bigg.reaction":[
"12PPDRte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_12ppd__R_e",
"name":"(R)-Propane-1,2-diol exchange",
"metabolites":{
"12ppd__R_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_12ppd_R[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_12ppd__R_e"
],
"biocyc":[
"META:TRANS-RXN0-467"
],
"metanetx.reaction":[
"MNXR94683"
],
"sbo":"SBO:0000627",
"seed.reaction":[
"rxn07920",
"rxn07919"
]
}
},
{
"id":"AMETAMte",
"name":"Assumed Passive Diffusion into Extracellular Space",
"metabolites":{
"ametam_c":-1.0,
"ametam_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"AMETAMte"
]
},
"annotation":{
"bigg.reaction":[
"AMETAMte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"UDPG3DOPA",
"name":"Dopamine 3-O-Glucuronidation",
"metabolites":{
"dopa3glcur_c":1.0,
"dopa_c":-1.0,
"h_c":1.0,
"udp_c":1.0,
"udpglcur_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(79586_AT1 and 22856_AT1) or 337876_AT1 or 55454_AT1 or 55790_AT1",
"subsystem":"Tyrosine metabolism",
"notes":{
"original_bigg_ids":[
"UDPG3DOPA"
]
},
"annotation":{
"bigg.reaction":[
"UDPG3DOPA"
],
"sbo":"SBO:0000176"
}
},
{
"id":"34DHPEAR",
"name":"3, 4-Dihydroxyphenylethanol:NADP+ Reductase",
"metabolites":{
"34dhpac_c":-1.0,
"34dhpe_c":1.0,
"h_c":-1.0,
"nadp_c":1.0,
"nadph_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10327_AT1",
"subsystem":"Tyrosine metabolism",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
"34DHPEAR"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_dopa4sf_e",
"name":"Exchange of Dopamine 4-O-Sulfate ",
"metabolites":{
"dopa4sf_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000627"
}
},
{
"id":"DOPA4GLCURt",
"name":"Dopamine 4-O-Glucuronide Transport",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"dopa4glcur_c":-1.0,
"dopa4glcur_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"4363_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"DOPA4GLCURt"
]
},
"annotation":{
"bigg.reaction":[
"DOPA4GLCURt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DOPA3GLCURt",
"name":"Dopamine 3-O-Glucuronide Transport",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"dopa3glcur_c":-1.0,
"dopa3glcur_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"4363_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"DOPA3GLCURt"
]
},
"annotation":{
"bigg.reaction":[
"DOPA3GLCURt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GGTe_1",
"name":"Gamma-Glutamyltransferase",
"metabolites":{
"5cysgly34dhphe_e":1.0,
"CE5026_e":-1.0,
"glu__L_e":1.0,
"h2o_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2687_AT1",
"subsystem":"Tyrosine metabolism",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
"GGTe_1"
],
"sbo":"SBO:0000176"
}
},
{
"id":"DOPACCL",
"name":"Dopamine O-Quinone Cyclization",
"metabolites":{
"CE5276_c":-1.0,
"CE5665_c":1.0,
"h_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Tyrosine metabolism",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
"DOPACCL"
],
"sbo":"SBO:0000176"
}
},
{
"id":"XYLUDte",
"name":"Assumed Passive Diffusion into Extracellular Space",
"metabolites":{
"xylu__D_c":-1.0,
"xylu__D_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"GLCNte",
"name":"Assumed Passive Diffusion into Extracellular Space",
"metabolites":{
"glcn_c":-1.0,
"glcn_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
"GLCNte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_CE0737_e",
"name":"Exchange of Malonic Dialdehyde",
"metabolites":{
"CE0737_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
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],
"sbo":"SBO:0000627"
}
},
{
"id":"DOPAOQCYS",
"name":"Dopamine-O-Quinone Cysteine Addition",
"metabolites":{
"5cysdopa_c":1.0,
"CE5276_c":-1.0,
"cys__L_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Tyrosine metabolism",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"SPHGNSte",
"name":"Passive Diffusion into Extracellular Space",
"metabolites":{
"sphings_c":-1.0,
"sphings_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"LACROX",
"name":"Leukoaminochrome Autoxidation",
"metabolites":{
"23dh1i56dio_c":1.0,
"CE5665_c":-1.0,
"h2o2_c":1.0,
"o2_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Tyrosine metabolism",
"notes":{
"original_bigg_ids":[
"LACROX"
]
},
"annotation":{
"bigg.reaction":[
"LACROX"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_2hiv_e",
"name":"Exchange of 2-Hydroxy-Isovalerate",
"metabolites":{
"2hiv_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000627"
}
},
{
"id":"4GLU56DIHDINDt",
"name":"Transport of 4-S-Glutathionyl-5, 6-Dihydroxyindoline",
"metabolites":{
"4glu56dihdind_c":-1.0,
"4glu56dihdind_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_4glu56dihdind_e",
"name":"Exchange of 4-S-Glutathionyl-5, 6-Dihydroxyindoline ",
"metabolites":{
"4glu56dihdind_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hdd2crn_e",
"name":"Exchange of Trans-Hexadec-2-Enoyl Carnitine",
"metabolites":{
"hdd2crn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000627"
}
},
{
"id":"IM4ACte",
"name":"Assumed Passive Diffusion into Extracellular Space",
"metabolites":{
"im4ac_c":1.0,
"im4ac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_im4ac_e",
"name":"Exchange of Imidazol-4-Ylacetate",
"metabolites":{
"im4ac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_CE1918_e",
"name":"Exchange of 5-Hydroxytryptophol",
"metabolites":{
"CE1918_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_mlthf_e",
"name":"Exchange of 5,10-Methylenetetrahydrofolate",
"metabolites":{
"mlthf_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_mlthf[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_mlthf_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"5CYSDOPAt",
"name":"Transport of 5-S-Cysteinyldopamine",
"metabolites":{
"5cysdopa_c":-1.0,
"5cysdopa_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"5CYSDOPAt"
]
},
"annotation":{
"bigg.reaction":[
"5CYSDOPAt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE5025t",
"name":"Transport of 5-S-Glutathionyl-Dopamine",
"metabolites":{
"CE5025_c":-1.0,
"CE5025_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10928_AT1 or 4363_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE5025t"
]
},
"annotation":{
"bigg.reaction":[
"CE5025t"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_CE5025_e",
"name":"Exchange of 5-S-Glutathionyl-Dopamine ",
"metabolites":{
"CE5025_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE5025[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_CE5025_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_CE2172_e",
"name":"Exchange of 6, 7-Dihydroxy-1, 2, 3, 4-Tetrahydroisoquinoline",
"metabolites":{
"CE2172_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE2172[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_CE2172_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_ppp9_e",
"name":"Exchange of Protoporphyrin",
"metabolites":{
"ppp9_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ppp9[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ppp9_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"AACTte",
"name":"Assumed Passive Diffusion into Extracellular Space",
"metabolites":{
"aact_c":1.0,
"aact_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"AACTte"
]
},
"annotation":{
"bigg.reaction":[
"AACTte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_aact_e",
"name":"Exchange of Ammonioacetone",
"metabolites":{
"aact_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_aact[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_aact_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"CE5629t",
"name":"Transport of 6, 7-Dihydroxy-1, 2, 3, 4-Tetrahydroisoquinoline",
"metabolites":{
"CE5629_c":-1.0,
"CE5629_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE5629t"
]
},
"annotation":{
"bigg.reaction":[
"CE5629t"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_CE5629_e",
"name":"Exchange of 6, 7-Dihydroxy-1, 2, 3, 4-Tetrahydroisoquinoline",
"metabolites":{
"CE5629_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE5629[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_CE5629_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_CE2705_e",
"name":"Exchange of Quinonoid Dihydrobiopterin",
"metabolites":{
"CE2705_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE2705[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_CE2705_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"SPHGNte",
"name":"Passive Diffusion into Extracellular Space",
"metabolites":{
"sphgn_c":1.0,
"sphgn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"SPHGNte"
]
},
"annotation":{
"bigg.reaction":[
"SPHGNte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SELMETHt2e",
"name":"Assumed Passive Diffusion into Extracellular Space",
"metabolites":{
"selmeth_c":1.0,
"selmeth_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"SELMETHt2e"
]
},
"annotation":{
"bigg.reaction":[
"SELMETHt2e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_prist_e",
"name":"Exchange of Pristanic Acid",
"metabolites":{
"prist_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_prist[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_prist_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_CE2049_e",
"name":"Exchange of 12,13-Hydroxyoctadec-9(Z)-Enoate",
"metabolites":{
"CE2049_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE2049[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_CE2049_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"ACER12r",
"name":"Alkaline Ceramidase 1 (Acer1) Or Alkaline Ceramidase 3 (Acer3)",
"metabolites":{
"Rtotal_r":1.0,
"dhcrm_hs_r":-1.0,
"h2o_r":-1.0,
"sphgn_r":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"125981_AT1 or 55331_AT1",
"subsystem":"Exchange/demand reaction",
"notes":{
"original_bigg_ids":[
"ACER12r"
]
},
"annotation":{
"bigg.reaction":[
"ACER12r"
],
"sbo":"SBO:0000176"
}
},
{
"id":"ACER23g",
"name":"Alkaline Ceramidase 3 (Acer3) Or Alkaline Ceramidase 2 (Acer2)",
"metabolites":{
"Rtotal_g":1.0,
"h2o_g":-1.0,
"phcrm_hs_g":-1.0,
"phsphings_g":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"55331_AT1 or 340485_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"ACER23g"
]
},
"annotation":{
"bigg.reaction":[
"ACER23g"
],
"sbo":"SBO:0000176"
}
},
{
"id":"BGAL1e",
"name":"Beta-Galactosidase, Plasma Membrane",
"metabolites":{
"gal_e":1.0,
"galgluside_hs_e":-1.0,
"gluside_hs_e":1.0,
"h2o_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2720_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"BGAL1e"
]
},
"annotation":{
"bigg.reaction":[
"BGAL1e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"BGAL2l",
"name":"Beta-Galactosidase, Lysosomal",
"metabolites":{
"ga1_hs_l":-1.0,
"ga2_hs_l":1.0,
"gal_l":1.0,
"h2o_l":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(5476_AT1 and 2720_AT1 and 2588_AT1 and 4758_AT1 and 5660_AT1) or (5476_AT1 and 2720_AT1 and 2588_AT1 and 4758_AT1 and 2760_AT1) or (5476_AT1 and 2720_AT1 and 5660_AT1) or (5476_AT1 and 2720_AT1 and 2760_AT1)",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"BGAL2l"
]
},
"annotation":{
"bigg.reaction":[
"BGAL2l"
],
"sbo":"SBO:0000176"
}
},
{
"id":"BGAL3l",
"name":"Beta-Galactosidase, Lysosomal",
"metabolites":{
"gal_l":1.0,
"gd1b_hs_l":-1.0,
"gd2_hs_l":1.0,
"h2o_l":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2720_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"BGAL3l"
]
},
"annotation":{
"bigg.reaction":[
"BGAL3l"
],
"sbo":"SBO:0000176"
}
},
{
"id":"DES21",
"name":"Sphingolipid C-4 Hydroxylase (Des2)",
"metabolites":{
"dhcrm_hs_c":-1.0,
"h2o_c":1.0,
"h_c":-1.0,
"nadp_c":1.0,
"nadph_c":-1.0,
"o2_c":-1.0,
"phcrm_hs_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"123099_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"DES21"
]
},
"annotation":{
"bigg.reaction":[
"DES21"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_gd3_hs_e",
"name":"Exchange/Demand Reaction",
"metabolites":{
"gd3_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_gd3_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_gd3_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"CE2047te",
"name":"Transport (ATP-Dependent) into Extracellular Space",
"metabolites":{
"CE2047_c":-1.0,
"CE2047_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE2047te"
]
},
"annotation":{
"bigg.reaction":[
"CE2047te"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_CE2047_e",
"name":"Exchange of 9,10-Hydroxyoctadec-12(Z)-Enoate",
"metabolites":{
"CE2047_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE2047[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_CE2047_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"LANOSTt",
"name":"Lanosterol reversible transport",
"metabolites":{
"lanost_c":1.0,
"lanost_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":0.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LANOSTte"
]
},
"annotation":{
"bigg.reaction":[
"LANOSTt"
],
"metanetx.reaction":[
"MNXR101014"
],
"sbo":"SBO:0000185",
"seed.reaction":[
"rxn12860"
]
}
},
{
"id":"FDPte",
"name":"Transport to Extracellular Space",
"metabolites":{
"fdp_c":-1.0,
"fdp_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"FDPte"
]
},
"annotation":{
"bigg.reaction":[
"FDPte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"2M3HBUc",
"name":"Formation of 2-Methyl-3-Hydroxy-Butyrate",
"metabolites":{
"2m3hbu_m":1.0,
"3hmbcoa_m":-1.0,
"coa_m":1.0,
"h2o_m":-1.0,
"h_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Valine, leucine, and isoleucine metabolism",
"notes":{
"original_bigg_ids":[
"2M3HBUc"
]
},
"annotation":{
"bigg.reaction":[
"2M3HBUc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_gm3_hs_e",
"name":"Exchange/Demand Reaction",
"metabolites":{
"gm3_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_gm3_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_gm3_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"GALGLUSIDEtl2",
"name":"Lactosylceramide Endocytosis",
"metabolites":{
"galgluside_hs_e":-1.0,
"galgluside_hs_l":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GALGLUSIDEtl2"
]
},
"annotation":{
"bigg.reaction":[
"GALGLUSIDEtl2"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_2m3hbu_e",
"name":"Exchange of 2-Methyl-3-Hydroxy-Butyrate",
"metabolites":{
"2m3hbu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_2m3hbu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_2m3hbu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"GBA2e",
"name":"Beta-Glucosidase, Plasma Membrane (Gba2)",
"metabolites":{
"crm_hs_e":1.0,
"glc__D_e":1.0,
"gluside_hs_e":-1.0,
"h2o_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"57704_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"GBA2e"
]
},
"annotation":{
"bigg.reaction":[
"GBA2e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GD3tl",
"name":"Ganglioside Gd3 Endocytosis",
"metabolites":{
"gd3_hs_e":-1.0,
"gd3_hs_l":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GD3tl"
]
},
"annotation":{
"bigg.reaction":[
"GD3tl"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLA2l",
"name":"Alpha-Galactosidase, Lysosomal",
"metabolites":{
"gal_l":1.0,
"galgluside_hs_l":1.0,
"h2o_l":-1.0,
"thcrm_hs_l":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2717_AT1 and 5660_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"GLA2l"
]
},
"annotation":{
"bigg.reaction":[
"GLA2l"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GLUSIDEtg",
"name":"Endocytosis of Glucosylceramide",
"metabolites":{
"adp_g":1.0,
"atp_g":-1.0,
"gluside_hs_e":-1.0,
"gluside_hs_g":1.0,
"h2o_g":-1.0,
"h_g":1.0,
"pi_g":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLUSIDEtg"
]
},
"annotation":{
"bigg.reaction":[
"GLUSIDEtg"
],
"sbo":"SBO:0000185"
}
},
{
"id":"COKEtr",
"name":"Transport of Cocaine, Endoplasmic Reticulum",
"metabolites":{
"coke_c":-1.0,
"coke_r":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
"notes":{
"original_bigg_ids":[
"COKEtr"
]
},
"annotation":{
"bigg.reaction":[
"COKEtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GM1tg",
"name":"Ganglioside Gm1 Endocytosis",
"metabolites":{
"gm1_hs_e":-1.0,
"gm1_hs_g":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GM1tg"
]
},
"annotation":{
"bigg.reaction":[
"GM1tg"
],
"sbo":"SBO:0000185"
}
},
{
"id":"2M3OVCOAm",
"name":"Formation of 2-Methyl-3-Oxo-Valeryl Coa",
"metabolites":{
"2m3ovcoa_m":1.0,
"coa_m":1.0,
"ppcoa_m":-2.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"38_AT1",
"subsystem":"Propanoate metabolism",
"notes":{
"original_bigg_ids":[
"2M3OVCOAm"
]
},
"annotation":{
"bigg.reaction":[
"2M3OVCOAm"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GM1tl",
"name":"Ganglioside Gm1 Endocytosis",
"metabolites":{
"gm1_hs_e":-1.0,
"gm1_hs_l":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GM1tl"
]
},
"annotation":{
"bigg.reaction":[
"GM1tl"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GM2tg",
"name":"Ganglioside Gm2 Endocytosis",
"metabolites":{
"gm2_hs_e":-1.0,
"gm2_hs_g":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GM2tg"
]
},
"annotation":{
"bigg.reaction":[
"GM2tg"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_5a2opntn_e",
"name":"Exchange of 5-Amino-2-Oxopentanoic Acid",
"metabolites":{
"5a2opntn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_5a2opntn[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_5a2opntn_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"5A2OPNTNte",
"name":"Transport of 5-Amino-2-Oxopentanoic Acid, Extracellular",
"metabolites":{
"5a2opntn_c":-1.0,
"5a2opntn_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"5A2OPNTNte"
]
},
"annotation":{
"bigg.reaction":[
"5A2OPNTNte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARG_Dtx",
"name":"Transport of D-Arginine, Peroxisome",
"metabolites":{
"arg__D_c":-1.0,
"arg__D_x":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, peroxisomal",
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]
},
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}
},
{
"id":"ARG_Dte",
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"upper_bound":1000.0,
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]
},
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"bigg.reaction":[
"ARG_Dte"
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}
},
{
"id":"EX_arg__D_e",
"name":"Exchange of D-Arginine",
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"upper_bound":1000.0,
"gene_reaction_rule":"",
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"EX_arg_D[e]"
]
},
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"bigg.reaction":[
"EX_arg__D_e"
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}
},
{
"id":"HEXA1l",
"name":"Hexosaminidase A, Lysosomal",
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"gm2_hs_l":-1.0,
"gm3_hs_l":1.0,
"h2o_l":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
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"original_bigg_ids":[
"HEXA1l"
]
},
"annotation":{
"bigg.reaction":[
"HEXA1l"
],
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}
},
{
"id":"HEXA2l",
"name":"Hexosaminidase A, Lysosomal",
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"gd2_hs_l":-1.0,
"gd3_hs_l":1.0,
"h2o_l":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3073_AT1 and 3074_AT1",
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"original_bigg_ids":[
"HEXA2l"
]
},
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"bigg.reaction":[
"HEXA2l"
],
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}
},
{
"id":"HEXA3e",
"name":"Hexosaminidase A, Plasma Membrane",
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"gm2_hs_e":-1.0,
"gm3_hs_e":1.0,
"h2o_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3073_AT1 and 3074_AT1 and 2760_AT1",
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"original_bigg_ids":[
"HEXA3e"
]
},
"annotation":{
"bigg.reaction":[
"HEXA3e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GD3tlc",
"name":"Transport of Gd3, Lysosomal",
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"gd3_hs_c":1.0,
"gd3_hs_l":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
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"subsystem":"Transport, lysosomal",
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"original_bigg_ids":[
"GD3tlc"
]
},
"annotation":{
"bigg.reaction":[
"GD3tlc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LANOSTtr",
"name":"Transport of Lanosterol, Endoplasmic Reticulum",
"metabolites":{
"lanost_c":1.0,
"lanost_r":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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"notes":{
"original_bigg_ids":[
"LANOSTtr"
]
},
"annotation":{
"bigg.reaction":[
"LANOSTtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_idl_hs_e",
"name":"Exchange of IDL Hs",
"metabolites":{
"idl_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_idl_hs[e]"
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},
"annotation":{
"bigg.reaction":[
"EX_idl_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_ldl_hs_e",
"name":"Exchange of LDL Hs",
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"ldl_hs_e":-1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ldl_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ldl_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hdl_hs_e",
"name":"Exchange of HDL Hs",
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"hdl_hs_e":-1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hdl_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hdl_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_HC00005_e",
"name":"Exchange of ApoB100",
"metabolites":{
"HC00005_e":-1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_HC00005[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_HC00005_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"2M3OVACm",
"name":"Formation of 2-Methyl-3-Oxo-Valerate",
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"2m3ovcoa_m":-1.0,
"coa_m":1.0,
"h2o_m":-1.0,
"h_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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"original_bigg_ids":[
"2M3OVACm"
]
},
"annotation":{
"bigg.reaction":[
"2M3OVACm"
],
"sbo":"SBO:0000176"
}
},
{
"id":"DM_gd3_hs_g",
"name":"Demand for  Gd3,  Golgi",
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"gd3_hs_g":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
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"original_bigg_ids":[
"DM_gd3_hs[g]"
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},
"annotation":{
"bigg.reaction":[
"DM_gd3_hs_g"
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}
},
{
"id":"2M3OVACtm",
"name":"Transport of 2-Methyl-3-Oxo-Valerate, Mitochondrial",
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"2m3ovac_c":1.0,
"2m3ovac_m":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
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"original_bigg_ids":[
"2M3OVACtm"
]
},
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"bigg.reaction":[
"2M3OVACtm"
],
"sbo":"SBO:0000185"
}
},
{
"id":"2M3HVACte",
"name":"Transport of 2-Methyl-3-Hydroxy-Valerate",
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"2m3hvac_c":-1.0,
"2m3hvac_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
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"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"2M3HVACte"
]
},
"annotation":{
"bigg.reaction":[
"2M3HVACte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GD3tm",
"name":"Transport of Gd3, Mitochondrial",
"metabolites":{
"gd3_hs_c":-1.0,
"gd3_hs_m":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, mitochondrial",
"notes":{
"original_bigg_ids":[
"GD3tm"
]
},
"annotation":{
"bigg.reaction":[
"GD3tm"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DM_pail35p_hs_n",
"name":"Demand for 1-Phosphatidyl-1D-Myo-Inositol 3, 5-Bisphosphate",
"metabolites":{
"pail35p_hs_n":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_pail35p_hs[n]"
]
},
"annotation":{
"bigg.reaction":[
"DM_pail35p_hs_n"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_gd3_hs_m",
"name":"Demand for  Gd3,  Mitochondria",
"metabolites":{
"gd3_hs_m":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_gd3_hs[m]"
]
},
"annotation":{
"bigg.reaction":[
"DM_gd3_hs_m"
],
"sbo":"SBO:0000628"
}
},
{
"id":"NEU21",
"name":"Sialidase, Cytosol (Neu2)",
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"acnam_c":1.0,
"gd1a_hs_c":-1.0,
"gm1_hs_c":1.0,
"h2o_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"4759_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"NEU21"
]
},
"annotation":{
"bigg.reaction":[
"NEU21"
],
"sbo":"SBO:0000176"
}
},
{
"id":"NEU23",
"name":"Sialidase, Cytosol (Neu2)",
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"acnam_c":1.0,
"gd1b_hs_c":1.0,
"gt1b_hs_c":-1.0,
"h2o_c":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"4759_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"NEU23"
]
},
"annotation":{
"bigg.reaction":[
"NEU23"
],
"sbo":"SBO:0000176"
}
},
{
"id":"NEU24",
"name":"Sialidase, Cytosol (Neu2)",
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"acnam_c":1.0,
"ga1_hs_c":1.0,
"gm1_hs_c":-1.0,
"h2o_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"4759_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"NEU24"
]
},
"annotation":{
"bigg.reaction":[
"NEU24"
],
"sbo":"SBO:0000176"
}
},
{
"id":"NEU25",
"name":"Sialidase, Cytosol (Neu2)",
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"ga2_hs_c":1.0,
"gm2_hs_c":-1.0,
"h2o_c":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"4759_AT1",
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"notes":{
"original_bigg_ids":[
"NEU25"
]
},
"annotation":{
"bigg.reaction":[
"NEU25"
],
"sbo":"SBO:0000176"
}
},
{
"id":"NEU32e",
"name":"Sialidase, Plasma Membrane (Neu3)",
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"gd1a_hs_e":-1.0,
"gm1_hs_e":1.0,
"h2o_e":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10825_AT1",
"subsystem":"Sphingolipid metabolism",
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"original_bigg_ids":[
"NEU32e"
]
},
"annotation":{
"bigg.reaction":[
"NEU32e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"DM_pcreat_c",
"name":"Demand for  Phosphocreatine,  Cytosolic",
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"pcreat_c":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
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"original_bigg_ids":[
"DM_pcreat[c]"
]
},
"annotation":{
"bigg.reaction":[
"DM_pcreat_c"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_na1_x",
"name":"Demand for  Sodium,  Peroxisomal",
"metabolites":{
"na1_x":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_na1[x]"
]
},
"annotation":{
"bigg.reaction":[
"DM_na1_x"
],
"biocyc":[
"META:TRANS-RXN-189"
],
"metanetx.reaction":[
"MNXR101804"
],
"reactome.reaction":[
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"R-MMU-3295580",
"R-GGA-5576895",
"R-GGA-2672334",
"R-BTA-2672334",
"R-DRE-2671885",
"R-MMU-2730664",
"R-BTA-3295580",
"R-BTA-2730664",
"R-CFA-3295580",
"R-XTR-2672334",
"R-RNO-2671885",
"R-HSA-2671885",
"R-RNO-2730664",
"R-SSC-2671885",
"R-HSA-3295580",
"R-SSC-2672334",
"R-TGU-2672334",
"R-DRE-5576895",
"R-CEL-2730664",
"R-HSA-5576895",
"R-MMU-2672334",
"R-BTA-5576895",
"R-TGU-2730664",
"R-CFA-2672334",
"R-HSA-2730664",
"R-CFA-5576895",
"R-XTR-2671885",
"R-XTR-5576895",
"R-CFA-2730664",
"R-DME-2730664",
"R-XTR-3295580",
"R-GGA-3295580",
"R-BTA-2671885",
"R-DRE-3295580",
"R-MMU-2671885",
"R-SSC-3295580",
"R-CEL-3295580",
"R-GGA-2671885",
"R-GGA-2730664",
"R-HSA-2672334",
"R-SSC-5576895",
"R-CEL-2671885",
"R-DME-3295580",
"R-RNO-2672334",
"R-RNO-3295580",
"R-MMU-5576895",
"R-RNO-5576895",
"R-TGU-3295580",
"R-XTR-2730664",
"R-CFA-2671885"
],
"rhea":[
"34963",
"34966",
"34965",
"34964"
],
"sabiork":[
"12962"
],
"sbo":"SBO:0000628",
"seed.reaction":[
"rxn08985",
"rxn10899"
]
}
},
{
"id":"DM_na1_g",
"name":"Demand for  Sodium,  Golgi Apparatus",
"metabolites":{
"na1_g":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_na1[g]"
]
},
"annotation":{
"bigg.reaction":[
"DM_na1_g"
],
"sbo":"SBO:0000628"
}
},
{
"id":"NEU34e",
"name":"Sialidase, Plasma Membrane (Neu3)",
"metabolites":{
"acnam_e":1.0,
"gd1b_hs_e":1.0,
"gt1b_hs_e":-1.0,
"h2o_e":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10825_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"NEU34e"
]
},
"annotation":{
"bigg.reaction":[
"NEU34e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_2m3hvac_e",
"name":"Exchange of 2-Methyl-3-Hydroxy-Valerate",
"metabolites":{
"2m3hvac_e":-1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_2m3hvac[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_2m3hvac_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"NEU35e",
"name":"Sialidase, Plasma Membrane (Neu3)",
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"gd3_hs_e":-1.0,
"gm3_hs_e":1.0,
"h2o_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10825_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"NEU35e"
]
},
"annotation":{
"bigg.reaction":[
"NEU35e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"DM_thm_m",
"name":"Demand for  Thiamin,  Mitochondrial",
"metabolites":{
"thm_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_thm[m]"
]
},
"annotation":{
"bigg.reaction":[
"DM_thm_m"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_15HPET_n",
"name":"Demand for  15S-Hydroperoxyeicosatetraenoate,  Nuclear",
"metabolites":{
"15HPET_n":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_15HPET[n]"
]
},
"annotation":{
"bigg.reaction":[
"DM_15HPET_n"
],
"sbo":"SBO:0000628"
}
},
{
"id":"NEU37e",
"name":"Sialidase, Plasma Membrane (Neu3)",
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"gd2_hs_e":-1.0,
"gm2_hs_e":1.0,
"h2o_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10825_AT1",
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"notes":{
"original_bigg_ids":[
"NEU37e"
]
},
"annotation":{
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"NEU37e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_pail_hs_e",
"name":"Exchange of 1-Phosphatidyl-1D-Myo-Inositol",
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"pail_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_pail_hs[e]"
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},
"annotation":{
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"sbo":"SBO:0000627"
}
},
{
"id":"NEU38n",
"name":"Sialidase, Nucleus (Neu3 Or Neu1)",
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"gd1a_hs_n":-1.0,
"gm1_hs_n":1.0,
"h2o_n":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10825_AT1 or 4758_AT1",
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]
},
"annotation":{
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"NEU38n"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_CE1243_e",
"name":"Exchange of (12S)-12-hydroxyheptadeca-5,8,10-trienoic acid (12S-HHT)",
"metabolites":{
"CE1243_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_CE1243[e]"
]
},
"annotation":{
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],
"sbo":"SBO:0000627"
}
},
{
"id":"3H3MGLTc",
"name":"Formation of 3-Hydroxy-3-Methyl-Glutarate",
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"coa_c":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"hmgcoa_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Valine, leucine, and isoleucine metabolism",
"notes":{
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"3H3MGLTc"
]
},
"annotation":{
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"3H3MGLTc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_galgluside_hs_e",
"name":"Exchange of Galactosyl Glucosyl Ceramide",
"metabolites":{
"galgluside_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
"annotation":{
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],
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}
},
{
"id":"EX_ga1_hs_e",
"name":"Exchange of Gibberellin A1",
"metabolites":{
"ga1_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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},
"annotation":{
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}
},
{
"id":"SMS1S2",
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},
{
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},
{
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},
{
"id":"SPHMYLNte",
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},
{
"id":"ST8SIA13e",
"name":"Alpha-N-Acetylneuraminate Alpha-2, 8-Sialyltransferase",
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},
{
"id":"NO2t2r",
"name":"Nitrite transport in via proton symport, reversible",
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},
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"seed.reaction":[
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},
{
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"name":"Ammonia Er Transport, Diffusion",
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},
{
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},
{
"id":"HMR_0002",
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},
{
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},
{
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},
{
"id":"HMR_0020",
"name":"HMR 0020",
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"xolest2_hs_r":1.0
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},
{
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},
{
"id":"HMR_0164",
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},
{
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{
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},
{
"id":"TETPENT3COAtm",
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{
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},
{
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},
{
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},
{
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},
{
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},
{
"id":"HMR_0166",
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},
{
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},
{
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{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
"id":"HMR_0178",
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},
{
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},
{
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"name":"Butyrate Coenzyme A Ligase",
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6296_AT1 or 348158_AT1 or 116285_AT1 or 54988_AT1 or 123876_AT1 or 341392_AT1",
"subsystem":"Fatty acid synthesis",
"notes":{
"original_bigg_ids":[
"HMR_0180"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0180"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GDA1tn",
"name":"Transport of Gd1A ",
"metabolites":{
"gd1a_hs_c":-1.0,
"gda1_hs_n":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, nuclear",
"notes":{
"original_bigg_ids":[
"GDA1tn"
]
},
"annotation":{
"bigg.reaction":[
"GDA1tn"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHSPHINGStg",
"name":"Phytosphingosine Transport, from Golgi to Cytosol (Flippase?)",
"metabolites":{
"phsphings_c":1.0,
"phsphings_g":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, golgi apparatus",
"notes":{
"original_bigg_ids":[
"PHSPHINGStg"
]
},
"annotation":{
"bigg.reaction":[
"PHSPHINGStg"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHSPHINGStr",
"name":"Phytosphingosine Transport, from Er to Cytosol (Flippase?)",
"metabolites":{
"phsphings_c":1.0,
"phsphings_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
"notes":{
"original_bigg_ids":[
"PHSPHINGStr"
]
},
"annotation":{
"bigg.reaction":[
"PHSPHINGStr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SK_34dhpac_c",
"name":"Sink for 3, 4-Dihydroxyphenylacetaldehyde",
"metabolites":{
"34dhpac_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_34dhpac[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_34dhpac_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"34DHPEt",
"name":"Transport of 3, 4-Dihydroxyphenylethanol via Passive Diffusion",
"metabolites":{
"34dhpe_c":1.0,
"34dhpe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"34DHPEt"
]
},
"annotation":{
"bigg.reaction":[
"34DHPEt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DM_ts3_c",
"name":"Demand for  Tachysterol 3",
"metabolites":{
"ts3_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_ts3[c]"
]
},
"annotation":{
"bigg.reaction":[
"DM_ts3_c"
],
"sbo":"SBO:0000628"
}
},
{
"id":"HMR_0183",
"name":"HMR 0183",
"metabolites":{
"M03117_c":1.0,
"M03117_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28965_AT1 or 2170_AT1 or 376497_AT1 or 948_AT1 or 11000_AT1 or 2169_AT1 or 2168_AT1 or 2173_AT1 or 2171_AT1 or 10999_AT1 or 2172_AT1 or 2167_AT1 or 646486_AT1 or 646480_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_0183"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0183"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0184",
"name":"Butyrate Coenzyme A Ligase",
"metabolites":{
"M03116_c":1.0,
"M03117_c":-1.0,
"amp_c":1.0,
"atp_c":-1.0,
"coa_c":-1.0,
"ppi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6296_AT1 or 348158_AT1 or 116285_AT1 or 54988_AT1 or 123876_AT1 or 341392_AT1",
"subsystem":"Fatty acid synthesis",
"notes":{
"original_bigg_ids":[
"HMR_0184"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0184"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0188",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
"metabolites":{
"amp_c":1.0,
"atp_c":-1.0,
"coa_c":-1.0,
"ddca_c":-1.0,
"ddcacoa_c":1.0,
"ppi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2182_AT1 or 23205_AT1 or 2181_AT1 or 81616_AT1 or 11001_AT1 or 2180_AT1 or 23305_AT1 or 51703_AT1",
"subsystem":"Fatty acid synthesis",
"notes":{
"original_bigg_ids":[
"HMR_0188"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0188"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FACOAE120",
"name":"Fatty-acid-CoA thioesterase (dodecanoate)",
"metabolites":{
"coa_c":1.0,
"ddca_c":1.0,
"ddcacoa_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"HMR_0189"
]
},
"annotation":{
"bigg.reaction":[
"FACOAE120"
],
"ec-code":[
"3.1.2.2"
],
"metanetx.reaction":[
"MNXR99128"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0194",
"name":"HMR 0194",
"metabolites":{
"M03051_c":-1.0,
"M03051_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"19_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_0194"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0194"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0200",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
"metabolites":{
"M00129_c":1.0,
"amp_c":1.0,
"atp_c":-1.0,
"coa_c":-1.0,
"ppi_c":1.0,
"ttdcea_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2182_AT1 or 23205_AT1 or 2181_AT1 or 81616_AT1 or 11001_AT1 or 2180_AT1 or 23305_AT1 or 51703_AT1",
"subsystem":"Fatty acid synthesis",
"notes":{
"original_bigg_ids":[
"HMR_0200"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0200"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0203",
"name":"HMR 0203",
"metabolites":{
"M00117_c":1.0,
"M00117_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28965_AT1 or 2170_AT1 or 376497_AT1 or 948_AT1 or 11000_AT1 or 2169_AT1 or 2168_AT1 or 2173_AT1 or 2171_AT1 or 10999_AT1 or 2172_AT1 or 2167_AT1 or 646486_AT1 or 646480_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_0203"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0203"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0206",
"name":"Palmitoyl Coenzyme A Hydrolase",
"metabolites":{
"HC10784_c":-1.0,
"M00117_c":1.0,
"coa_c":1.0,
"h2o_c":-1.0,
"h_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"HMR_0206"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0206"
],
"sbo":"SBO:0000176"
}
},
{
"id":"DM_sph1p_n",
"name":"Demand for  (2S,3R)-2-Azaniumyl-3-Hydroxyoctadecyl Phosphate",
"metabolites":{
"sph1p_n":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_sph1p[n]"
]
},
"annotation":{
"bigg.reaction":[
"DM_sph1p_n"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_sphs1p_n",
"name":"Demand for  Sphingosine 1-Phosphate",
"metabolites":{
"sphs1p_n":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_sphs1p[n]"
]
},
"annotation":{
"bigg.reaction":[
"DM_sphs1p_n"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_gda1_hs_n",
"name":"Demand for  Gda1",
"metabolites":{
"gda1_hs_n":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_gda1_hs[n]"
]
},
"annotation":{
"bigg.reaction":[
"DM_gda1_hs_n"
],
"sbo":"SBO:0000628"
}
},
{
"id":"GALSIDEtn",
"name":"Galactocerebroside Intracellular Transport",
"metabolites":{
"galside_hs_c":-1.0,
"galside_hs_n":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, nuclear",
"notes":{
"original_bigg_ids":[
"GALSIDEtn"
]
},
"annotation":{
"bigg.reaction":[
"GALSIDEtn"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0208",
"name":"HMR 0208",
"metabolites":{
"M02745_c":1.0,
"M02745_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28965_AT1 or 2170_AT1 or 376497_AT1 or 948_AT1 or 11000_AT1 or 2169_AT1 or 2168_AT1 or 2173_AT1 or 2171_AT1 or 10999_AT1 or 2172_AT1 or 2167_AT1 or 646486_AT1 or 646480_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_0208"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0208"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0210",
"name":"Palmitoyl Coenzyme A Hydrolase",
"metabolites":{
"M01141_c":-1.0,
"M02745_c":1.0,
"coa_c":1.0,
"h2o_c":-1.0,
"h_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"HMR_0210"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0210"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0214",
"name":"Palmitoyl Coenzyme A Hydrolase",
"metabolites":{
"coa_c":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"ptdca_c":1.0,
"ptdcacoa_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"HMR_0214"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0214"
],
"sbo":"SBO:0000176"
}
},
{
"id":"CERT1tn",
"name":"Ceramide Transport Protei",
"metabolites":{
"crm_hs_c":-1.0,
"crm_hs_n":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, nuclear",
"notes":{
"original_bigg_ids":[
"CERT1tn"
]
},
"annotation":{
"bigg.reaction":[
"CERT1tn"
],
"sbo":"SBO:0000185"
}
},
{
"id":"Rtotalter",
"name":"Fatty Acid Intracellular Transport",
"metabolites":{
"Rtotal_c":-1.0,
"Rtotal_r":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
"notes":{
"original_bigg_ids":[
"Rtotalter"
]
},
"annotation":{
"bigg.reaction":[
"Rtotalter"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0215",
"name":"HMR 0215",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"ptdca_c":-1.0,
"ptdca_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"19_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_0215"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0215"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DM_phsph1p_c",
"name":"Demand for  Phytosphingosine-1-Phosphate, ",
"metabolites":{
"phsph1p_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_phsph1p[c]"
]
},
"annotation":{
"bigg.reaction":[
"DM_phsph1p_c"
],
"sbo":"SBO:0000628"
}
},
{
"id":"3MGLUTRc",
"name":"Formation of 3-Methyl-Glutarate",
"metabolites":{
"3mglutac_c":-1.0,
"3mglutr_c":1.0,
"h_c":-1.0,
"nadp_c":1.0,
"nadph_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Valine, leucine, and isoleucine metabolism",
"notes":{
"original_bigg_ids":[
"3MGLUTRc"
]
},
"annotation":{
"bigg.reaction":[
"3MGLUTRc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GD1Atn",
"name":"Transport of Gd1A ",
"metabolites":{
"gd1a_hs_c":-1.0,
"gd1a_hs_n":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, nuclear",
"notes":{
"original_bigg_ids":[
"GD1Atn"
]
},
"annotation":{
"bigg.reaction":[
"GD1Atn"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ATPtg",
"name":"ADP/ATP Transporter, Golgi",
"metabolites":{
"adp_c":1.0,
"adp_g":-1.0,
"atp_c":-1.0,
"atp_g":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, golgi apparatus",
"notes":{
"original_bigg_ids":[
"ATPtg"
]
},
"annotation":{
"bigg.reaction":[
"ATPtg"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GD1Btl",
"name":"Transport of Gd1B ",
"metabolites":{
"gd1b_hs_c":-1.0,
"gd1b_hs_l":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, lysosomal",
"notes":{
"original_bigg_ids":[
"GD1Btl"
]
},
"annotation":{
"bigg.reaction":[
"GD1Btl"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DM_gd3_hs_l",
"name":"Demand for  Gd3,  Lysosomal",
"metabolites":{
"gd3_hs_l":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_gd3_hs[l]"
]
},
"annotation":{
"bigg.reaction":[
"DM_gd3_hs_l"
],
"sbo":"SBO:0000628"
}
},
{
"id":"HMR_0232",
"name":"HMR 0232",
"metabolites":{
"M01197_c":1.0,
"M01197_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28965_AT1 or 2170_AT1 or 376497_AT1 or 948_AT1 or 11000_AT1 or 2169_AT1 or 2168_AT1 or 2173_AT1 or 2171_AT1 or 10999_AT1 or 2172_AT1 or 2167_AT1 or 646486_AT1 or 646480_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_0232"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0232"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0235",
"name":"HMR 0235",
"metabolites":{
"M01197_c":-1.0,
"M01197_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"19_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_0235"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0235"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0238",
"name":"Palmitoyl Coenzyme A Hydrolase",
"metabolites":{
"coa_c":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"hpdca_c":1.0,
"hpdcacoa_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"HMR_0238"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0238"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0240",
"name":"HMR 0240",
"metabolites":{
"M00003_c":1.0,
"M00003_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28965_AT1 or 2170_AT1 or 376497_AT1 or 948_AT1 or 11000_AT1 or 2169_AT1 or 2168_AT1 or 2173_AT1 or 2171_AT1 or 10999_AT1 or 2172_AT1 or 2167_AT1 or 646486_AT1 or 646480_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_0240"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0240"
],
"sbo":"SBO:0000185"
}
},
{
"id":"3MGLUTRte",
"name":"Transport of 3-Methyl-Glutarate",
"metabolites":{
"3mglutr_c":-1.0,
"3mglutr_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"3MGLUTRte"
]
},
"annotation":{
"bigg.reaction":[
"3MGLUTRte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0243",
"name":"HMR 0243",
"metabolites":{
"M00003_c":-1.0,
"M00003_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"19_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_0243"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0243"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_3mglutr_e",
"name":"Exchange of 3-Methyl-Glutarate",
"metabolites":{
"3mglutr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_3mglutr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_3mglutr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"HMR_0244",
"name":"HMR 0244",
"metabolites":{
"M01238_c":1.0,
"M01238_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28965_AT1 or 2170_AT1 or 376497_AT1 or 948_AT1 or 11000_AT1 or 2169_AT1 or 2168_AT1 or 2173_AT1 or 2171_AT1 or 10999_AT1 or 2172_AT1 or 2167_AT1 or 646486_AT1 or 646480_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_0244"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0244"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PPIOGLYc",
"name":"Formation of Propionyl-Glycine",
"metabolites":{
"coa_m":1.0,
"gly_m":-1.0,
"h_m":1.0,
"ppcoa_m":-1.0,
"ppiogly_m":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10249_AT1",
"subsystem":"Glycine, serine, alanine, and threonine metabolism",
"notes":{
"original_bigg_ids":[
"PPIOGLYc"
]
},
"annotation":{
"bigg.reaction":[
"PPIOGLYc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0246",
"name":"Palmitoyl Coenzyme A Hydrolase",
"metabolites":{
"M01237_c":-1.0,
"M01238_c":1.0,
"coa_c":1.0,
"h2o_c":-1.0,
"h_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"HMR_0246"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0246"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0254",
"name":"HMR 0254",
"metabolites":{
"M00019_c":1.0,
"M00019_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28965_AT1 or 2170_AT1 or 376497_AT1 or 948_AT1 or 11000_AT1 or 2169_AT1 or 2168_AT1 or 2173_AT1 or 2171_AT1 or 10999_AT1 or 2172_AT1 or 2167_AT1 or 646486_AT1 or 646480_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_0254"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0254"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0256",
"name":"Palmitoyl Coenzyme A Hydrolase",
"metabolites":{
"M00019_c":1.0,
"M00020_c":-1.0,
"coa_c":1.0,
"h2o_c":-1.0,
"h_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"HMR_0256"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0256"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0289",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
"metabolites":{
"M00017_c":-1.0,
"M00018_c":1.0,
"amp_c":1.0,
"atp_c":-1.0,
"coa_c":-1.0,
"ppi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2182_AT1 or 23205_AT1 or 2181_AT1 or 81616_AT1 or 11001_AT1 or 2180_AT1 or 23305_AT1 or 51703_AT1",
"subsystem":"Fatty acid synthesis",
"notes":{
"original_bigg_ids":[
"HMR_0289"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0289"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0292",
"name":"HMR 0292",
"metabolites":{
"CE2510_c":1.0,
"CE2510_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28965_AT1 or 2170_AT1 or 376497_AT1 or 948_AT1 or 11000_AT1 or 2169_AT1 or 2168_AT1 or 2173_AT1 or 2171_AT1 or 10999_AT1 or 2172_AT1 or 2167_AT1 or 646486_AT1 or 646480_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_0292"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0292"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0302",
"name":"Palmitoyl Coenzyme A Hydrolase",
"metabolites":{
"M00123_c":-1.0,
"M01207_c":1.0,
"coa_c":1.0,
"h2o_c":-1.0,
"h_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"HMR_0302"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0302"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FACOAL1812",
"name":"Fatty-acid--CoA ligase",
"metabolites":{
"amp_c":1.0,
"atp_c":-1.0,
"coa_c":-1.0,
"ppi_c":1.0,
"vacc_c":-1.0,
"vacccoa_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2182_AT1 or 23205_AT1 or 2181_AT1 or 81616_AT1 or 11001_AT1 or 2180_AT1 or 23305_AT1 or 51703_AT1",
"subsystem":"Fatty acid synthesis",
"notes":{
"original_bigg_ids":[
"HMR_0259"
]
},
"annotation":{
"bigg.reaction":[
"FACOAL1812"
],
"metanetx.reaction":[
"MNXR99170"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0303",
"name":"HMR 0303",
"metabolites":{
"M01207_c":-1.0,
"M01207_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"19_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_0303"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0303"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0260",
"name":"Palmitoyl Coenzyme A Hydrolase",
"metabolites":{
"coa_c":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"vacc_c":1.0,
"vacccoa_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"HMR_0260"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0260"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PPIOGLYtm",
"name":"Transport of Propionyl-Glycine, Mitochondrial",
"metabolites":{
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"ppiogly_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, mitochondrial",
"notes":{
"original_bigg_ids":[
"PPIOGLYtm"
]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0267",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
"metabolites":{
"M00127_c":1.0,
"amp_c":1.0,
"atp_c":-1.0,
"coa_c":-1.0,
"elaid_c":-1.0,
"ppi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2182_AT1 or 23205_AT1 or 2181_AT1 or 81616_AT1 or 11001_AT1 or 2180_AT1 or 23305_AT1 or 51703_AT1",
"subsystem":"Fatty acid synthesis",
"notes":{
"original_bigg_ids":[
"HMR_0267"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0267"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0304",
"name":"HMR 0304",
"metabolites":{
"M02457_c":1.0,
"M02457_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28965_AT1 or 2170_AT1 or 376497_AT1 or 948_AT1 or 11000_AT1 or 2169_AT1 or 2168_AT1 or 2173_AT1 or 2171_AT1 or 10999_AT1 or 2172_AT1 or 2167_AT1 or 646486_AT1 or 646480_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"PPIOGLYte",
"name":"Transport of Propionyl-Glycine, Extracellular",
"metabolites":{
"ppiogly_c":-1.0,
"ppiogly_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0305",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
"metabolites":{
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"M02457_c":-1.0,
"amp_c":1.0,
"atp_c":-1.0,
"coa_c":-1.0,
"h_c":1.0,
"ppi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2182_AT1 or 23205_AT1 or 2181_AT1 or 81616_AT1 or 11001_AT1 or 2180_AT1 or 23305_AT1 or 51703_AT1",
"subsystem":"Fatty acid synthesis",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0306",
"name":"Palmitoyl Coenzyme A Hydrolase",
"metabolites":{
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"M02457_c":1.0,
"coa_c":1.0,
"h2o_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0319",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
"metabolites":{
"CE5155_c":1.0,
"amp_c":1.0,
"atp_c":-1.0,
"coa_c":-1.0,
"doco13ac_c":-1.0,
"ppi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2182_AT1 or 23205_AT1 or 2181_AT1 or 81616_AT1 or 11001_AT1 or 2180_AT1 or 23305_AT1 or 51703_AT1",
"subsystem":"Fatty acid synthesis",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0322",
"name":"HMR 0322",
"metabolites":{
"M01582_c":1.0,
"M01582_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28965_AT1 or 2170_AT1 or 376497_AT1 or 948_AT1 or 11000_AT1 or 2169_AT1 or 2168_AT1 or 2173_AT1 or 2171_AT1 or 10999_AT1 or 2172_AT1 or 2167_AT1 or 646486_AT1 or 646480_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0324",
"name":"Palmitoyl Coenzyme A Hydrolase",
"metabolites":{
"M00006_c":-1.0,
"M01582_c":1.0,
"coa_c":1.0,
"h2o_c":-1.0,
"h_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0325",
"name":"HMR 0325",
"metabolites":{
"M01582_c":-1.0,
"M01582_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
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},
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"gene_reaction_rule":"19_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0268",
"name":"Palmitoyl Coenzyme A Hydrolase",
"metabolites":{
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"coa_c":1.0,
"elaid_c":1.0,
"h2o_c":-1.0,
"h_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0270",
"name":"HMR 0270",
"metabolites":{
"M00115_c":1.0,
"M00115_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28965_AT1 or 2170_AT1 or 376497_AT1 or 948_AT1 or 11000_AT1 or 2169_AT1 or 2168_AT1 or 2173_AT1 or 2171_AT1 or 10999_AT1 or 2172_AT1 or 2167_AT1 or 646486_AT1 or 646480_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0271",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
"metabolites":{
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"M00115_c":-1.0,
"amp_c":1.0,
"atp_c":-1.0,
"coa_c":-1.0,
"ppi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2182_AT1 or 23205_AT1 or 2181_AT1 or 81616_AT1 or 11001_AT1 or 2180_AT1 or 23305_AT1 or 51703_AT1",
"subsystem":"Fatty acid synthesis",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0272",
"name":"Palmitoyl Coenzyme A Hydrolase",
"metabolites":{
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"M00116_c":-1.0,
"coa_c":1.0,
"h2o_c":-1.0,
"h_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
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},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0273",
"name":"HMR 0273",
"metabolites":{
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"M00115_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"19_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0276",
"name":"Palmitoyl Coenzyme A Hydrolase",
"metabolites":{
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"h2o_c":-1.0,
"h_c":1.0,
"lneldc_c":1.0,
"lneldccoa_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0277",
"name":"HMR 0277",
"metabolites":{
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"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"lneldc_c":-1.0,
"lneldc_e":1.0,
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},
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"gene_reaction_rule":"19_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0280",
"name":"Palmitoyl Coenzyme A Hydrolase",
"metabolites":{
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"M02613_c":1.0,
"coa_c":1.0,
"h2o_c":-1.0,
"h_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"MVLACc",
"name":"Formation of Mevalonate-Lactone",
"metabolites":{
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"h_c":-1.0,
"mev__R_c":-1.0,
"mvlac_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Cholesterol metabolism",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0288",
"name":"HMR 0288",
"metabolites":{
"M00017_c":1.0,
"M00017_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28965_AT1 or 2170_AT1 or 376497_AT1 or 948_AT1 or 11000_AT1 or 2169_AT1 or 2168_AT1 or 2173_AT1 or 2171_AT1 or 10999_AT1 or 2172_AT1 or 2167_AT1 or 646486_AT1 or 646480_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0811",
"name":"Alpha-N-Acetylgalactosaminidase",
"metabolites":{
"M02197_c":-1.0,
"acgal_c":1.0,
"gbside_hs_c":1.0,
"h2o_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"4668_AT1",
"subsystem":"Glycosphingolipid metabolism",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0587",
"name":"HMR 0587",
"metabolites":{
"clpn_hs_c":-1.0,
"clpn_hs_m":1.0
},
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},
{
"id":"HMR_0593",
"name":"1-Acylglycerol-3-Phosphate O-Acyltransferase",
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},
{
"id":"HMR_0391",
"name":"HMR 0391",
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},
{
"id":"HMR_0392",
"name":"HMR 0392",
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{
"id":"HMR_0393",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
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},
{
"id":"HMR_0394",
"name":"Palmitoyl Coenzyme A Hydrolase",
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{
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"name":"Linoleoyl-CoA hydrolase (18:2(9Z,12Z))",
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"annotation":{
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"biocyc":[
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"ec-code":[
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"kegg.reaction":[
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"rhea":[
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"sabiork":[
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},
{
"id":"HMR_0410",
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},
{
"id":"HMR_0415",
"name":"HMR 0415",
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},
{
"id":"HMR_0329",
"name":"HMR 0329",
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{
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},
{
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"name":"HMR 0344",
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{
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},
{
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{
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},
{
"id":"HMR_0354",
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{
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{
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{
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{
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{
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},
{
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{
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{
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{
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},
{
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{
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{
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{
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{
"id":"HMR_0434",
"name":"Palmitoyl Coenzyme A Hydrolase",
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},
{
"id":"HMR_0437",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
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},
{
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},
{
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"name":"HMR 0384",
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},
{
"id":"HMR_0386",
"name":"Palmitoyl Coenzyme A Hydrolase",
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},
{
"id":"HMR_0814",
"name":"Alpha-N-Acetylneuraminate Alpha-2, 8-Sialyltransferase",
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},
{
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"name":"HMR 0469",
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},
{
"id":"HMR_0582",
"name":"CDP-Diacylglycerol-Glycerol-3-Phosphate 3-Phosphatidyltransferase",
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},
{
"id":"HMR_0629",
"name":"Phospholipase D",
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},
{
"id":"HMR_0817",
"name":"Beta-Galactoside Alpha-2, 3-Sialyltransferase",
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},
{
"id":"HMR_0822",
"name":"HMR 0822",
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},
{
"id":"HMR_0823",
"name":"HMR 0823",
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},
{
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},
{
"id":"HMR_0641",
"name":"Acetylcholinesterase",
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},
{
"id":"HMR_0966",
"name":"HMR 0966",
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},
{
"id":"HMR_0824",
"name":"Lactosylceramide Alpha-2, 3-Sialyltransferase",
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},
{
"id":"HMR_0825",
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},
{
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"name":"HMR 0984",
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},
{
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"name":" (N-Acetylneuraminyl)-Galactosylglucosylceramide N-Acetylgalactosaminyltransferase",
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},
{
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},
{
"id":"HMR_0830",
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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{
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},
{
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},
{
"id":"HMR_0843",
"name":"Ganglioside Galactosyltransferase",
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},
{
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},
{
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},
{
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},
{
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},
{
"id":"HMR_0855",
"name":"Alpha-N-Acetylneuraminate Alpha-2, 8-Sialyltransferase",
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}
},
{
"id":"HMR_0868",
"name":"Fucosylgalactoside 3-Alpha-Galactosyltransferase",
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},
{
"id":"HMR_0870",
"name":"3-Galactosyl-N-Acetylglucosaminide 4-Alpha-L-Fucosyltransferase",
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},
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}
},
{
"id":"HMR_1081",
"name":"Leukotriene-C4 Synthase",
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]
},
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}
},
{
"id":"HMR_1084",
"name":"Gamma-Glutamyltransferase",
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},
{
"id":"HMR_1085",
"name":"Membrane Dipeptidase",
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},
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}
},
{
"id":"HMR_1095",
"name":"HMR 1095",
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]
},
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],
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}
},
{
"id":"HMR_1102",
"name":"Carbonyl Reductase (NADPH)",
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]
},
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}
},
{
"id":"HMR_1127",
"name":"Leukotriene-B4 20-Monooxygenase",
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]
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],
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}
},
{
"id":"HMR_0873",
"name":"3-Galactosyl-N-Acetylglucosaminide 4-Alpha-L-Fucosyltransferase",
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},
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}
},
{
"id":"HMR_0875",
"name":"HMR 0875",
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}
},
{
"id":"HMR_0876",
"name":"Neolactotetraosylceramide Alpha-2, 3-Sialyltransferase",
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},
{
"id":"HMR_0877",
"name":"Alpha-N-Acetylneuraminate Alpha-2, 8-Sialyltransferase",
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},
{
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"name":"HMR 1242",
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},
{
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},
{
"id":"HMR_1305",
"name":"Prostaglandin-Endoperoxide Synthase",
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},
{
"id":"HMR_1306",
"name":"HMR 1306",
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},
{
"id":"HMR_0890",
"name":"HMR 0890",
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},
{
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},
{
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},
{
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},
{
"id":"HMR_0911",
"name":"4-Galactosyl-N-Acetylglucosaminide 3-Alpha-L-Fucosyltransferase",
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},
{
"id":"HMR_0912",
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{
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},
{
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},
{
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},
{
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{
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},
{
"id":"HMR_1388",
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},
{
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},
{
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},
{
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{
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{
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{
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"metanetx.reaction":[
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"reactome.reaction":[
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"R-OSA-191299",
"R-DRE-191299",
"R-HSA-191299",
"R-ATH-191299",
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"R-SPO-191299"
],
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},
{
"id":"HMR_0657",
"name":"S-Adenosyl-L-Methionine:Phosphatidyl-N-Dimethylethanolamine N-Methyltransferase",
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},
{
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{
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{
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{
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{
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{
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{
"id":"HMR_1748",
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{
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{
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{
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{
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{
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{
"id":"HMR_0672",
"name":"Triacylglycerol Lipase",
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{
"id":"HMR_1759",
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{
"id":"HMR_1762",
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
"id":"HMR_1549",
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{
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},
{
"id":"HMR_1838",
"name":"Lithocholic acid 1beta-hydroxylase",
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},
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}
},
{
"id":"HMR_1550",
"name":"Methylsterol Monooxygenase",
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},
{
"id":"HMR_1897",
"name":"HMR 1897",
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},
{
"id":"HMR_1551",
"name":"3Beta-Hydroxysteroid-4Alpha-Carboxylate 3-Dehydrogenase (Decarboxylating)",
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},
{
"id":"HMR_1916",
"name":"HMR 1916",
"metabolites":{
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},
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],
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},
{
"id":"HMR_0765",
"name":"HMR 0765",
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{
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"name":"HMR 1927",
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},
{
"id":"HMR_1627",
"name":"Cholate Coenzyme A Ligase",
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},
{
"id":"HMR_1629",
"name":"7Alpha-Hydroxycholest-4-En-3-One 12Alpha-Hydroxylase",
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"cholcoar_x":1.0
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{
"id":"HMR_1630",
"name":"7Alpha-Hydroxycholest-4-En-3-One 12Alpha-Hydroxylase",
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{
"id":"HMR_1631",
"name":"7Alpha-Hydroxycholest-4-En-3-One 12Alpha-Hydroxylase",
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{
"id":"HMR_1637",
"name":"Acyl Coenzyme A Oxidase",
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},
{
"id":"HMR_1929",
"name":"20Alpha, 22Beta-Dihydroxycholesterol, Ferredoxin:Oxygen Oxidoreductase (Side-Chain-Cleaving)",
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},
{
"id":"HMR_1653",
"name":"Propanoyl Coenzyme A C-Acyltransferase",
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},
{
"id":"HMR_0767",
"name":"Phosphatidate Phosphatase",
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},
{
"id":"HMR_1666",
"name":"Cholate Coenzyme A Ligase",
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},
{
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},
{
"id":"HMR_1940",
"name":"Pregnenolone, Hydrogen-Donor:Oxygen Oxidoreductase (21-Hydroxylating)",
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{
"id":"HMR_1944",
"name":"Steroid 17Alpha-Monooxygenase",
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{
"id":"HMR_1949",
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{
"id":"HMR_1958",
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},
{
"id":"HMR_1962",
"name":"Alcohol Sulfotransferase",
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{
"id":"HMR_1968",
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},
{
"id":"HMR_1971",
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},
{
"id":"HMR_1996",
"name":"11Beta-Hydroxysteroid Dehydrogenase",
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},
{
"id":"HMR_0769",
"name":"HMR 0769",
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},
{
"id":"HMR_2010",
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{
"id":"HMR_2016",
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{
"id":"HMR_1980",
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},
{
"id":"HMR_1981",
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},
{
"id":"HMR_1982",
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{
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},
{
"id":"HMR_2018",
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},
{
"id":"HMR_2029",
"name":"Unspecific Monooxygenase",
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},
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},
{
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},
{
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"name":"17Beta-Estradiol 17-Dehydrogenase",
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},
{
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{
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},
{
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{
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{
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{
"id":"HMR_2210",
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},
{
"id":"HMR_0783",
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},
{
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{
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{
"id":"HMR_2218",
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{
"id":"HMR_2260",
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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},
{
"id":"HMR_0803",
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{
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{
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{
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{
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{
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},
{
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{
"id":"HMR_2350",
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{
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{
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{
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{
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},
{
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{
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{
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{
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},
{
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{
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},
{
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},
{
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{
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{
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},
{
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},
{
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{
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{
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{
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{
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},
{
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"name":"Acetyl Coenzyme A C-Acyltransferase",
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]
},
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],
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}
},
{
"id":"HMR_3075",
"name":"Enoyl Coenzyme A Hydratase",
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]
},
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],
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}
},
{
"id":"HMR_3174",
"name":"Medium-Chain Acyl Coenzyme A Dehydrogenase",
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]
},
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"bigg.reaction":[
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],
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}
},
{
"id":"HMR_2771",
"name":"Carnitine O-Palmitoyltransferase",
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},
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}
},
{
"id":"HMR_3176",
"name":"3-Hydroxyacyl Coenzyme A Dehydrogenase",
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},
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},
{
"id":"HMR_3184",
"name":"3-Hydroxyacyl Coenzyme A Dehydrogenase",
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]
},
"annotation":{
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],
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}
},
{
"id":"HMR_3096",
"name":"3-Hydroxyacyl Coenzyme A Dehydrogenase",
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]
},
"annotation":{
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],
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}
},
{
"id":"HMR_3097",
"name":"Acetyl Coenzyme A C-Acyltransferase",
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]
},
"annotation":{
"bigg.reaction":[
"HMR_3097"
],
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}
},
{
"id":"HMR_3099",
"name":"Enoyl Coenzyme A Hydratase",
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]
},
"annotation":{
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],
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}
},
{
"id":"HMR_3185",
"name":"Acetyl Coenzyme A C-Acyltransferase",
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_3189",
"name":"Acetyl Coenzyme A C-Acyltransferase",
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]
},
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],
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}
},
{
"id":"HMR_3190",
"name":"Medium-Chain Acyl Coenzyme A Dehydrogenase",
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]
},
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},
{
"id":"HMR_3191",
"name":"Enoyl Coenzyme A Hydratase",
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]
},
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],
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}
},
{
"id":"HMR_3192",
"name":"3-Hydroxyacyl Coenzyme A Dehydrogenase",
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]
},
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],
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}
},
{
"id":"HMR_3193",
"name":"Acetyl Coenzyme A C-Acyltransferase",
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]
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}
},
{
"id":"HMR_3195",
"name":"Enoyl Coenzyme A Hydratase",
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}
},
{
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"name":"Acetyl Coenzyme A C-Acyltransferase",
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]
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],
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}
},
{
"id":"HMR_3102",
"name":"Acyl Coenzyme A Oxidase",
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},
{
"id":"HMR_3106",
"name":"HMR 3106",
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}
},
{
"id":"HMR_3111",
"name":"Medium-Chain Acyl Coenzyme A Dehydrogenase",
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},
{
"id":"HMR_3200",
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},
{
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},
{
"id":"HMR_2773",
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{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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{
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{
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},
{
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{
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},
{
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},
{
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},
{
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{
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{
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},
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{
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{
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},
{
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{
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},
{
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{
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{
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{
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{
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},
{
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{
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},
{
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{
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{
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{
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},
{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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"R-DRE-389842",
"R-DDI-389842",
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"R-TGU-389842",
"R-SPO-389842",
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"R-GGA-389842",
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
"id":"HMR_8579",
"name":"Alpha-Amylase",
"metabolites":{
"M02451_e":-1.0,
"glc__D_e":1.0,
"h2o_e":-1.0,
"malttr_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"84569_AT1 or 277_AT1 or 278_AT1 or 276_AT1 or 280_AT1 or 279_AT1",
"subsystem":"Starch and sucrose metabolism",
"notes":{
"original_bigg_ids":[
"HMR_8579"
]
},
"annotation":{
"bigg.reaction":[
"HMR_8579"
],
"sbo":"SBO:0000176"
}
},
{
"id":"SO4t_e",
"name":"Sulfate transport, extracellular",
"metabolites":{
"h_c":-2.0,
"h_e":2.0,
"so4_c":-1.0,
"so4_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":0.0,
"gene_reaction_rule":"10861_AT1 or 1836_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9590"
]
},
"annotation":{
"bigg.reaction":[
"SO4t_e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9593",
"name":"HMR 9593",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"his__L_c":1.0,
"his__L_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11254_AT1 or 6536_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9593"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9593"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9604",
"name":"HMR 9604",
"metabolites":{
"4abut_c":1.0,
"4abut_e":-1.0,
"cl_c":2.0,
"cl_e":-2.0,
"na1_c":3.0,
"na1_e":-3.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6539_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9604"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9604"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9605",
"name":"HMR 9605",
"metabolites":{
"ala__L_c":1.0,
"ala__L_e":-1.0,
"h_c":-1.0,
"h_e":1.0,
"na1_c":1.0,
"na1_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"92745_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9605"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9605"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PNTOt1",
"name":"Pantothenate sodium symporter  II",
"metabolites":{
"na1_c":2.0,
"na1_e":-2.0,
"pnto__R_c":1.0,
"pnto__R_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8884_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9607"
]
},
"annotation":{
"bigg.reaction":[
"PNTOt1"
],
"metanetx.reaction":[
"MNXR103052"
],
"reactome.reaction":[
"R-DRE-199206",
"R-SSC-199206",
"R-MMU-199206",
"R-GGA-199206",
"R-XTR-199206",
"R-TGU-199206",
"R-HSA-199206",
"R-CFA-199206",
"R-DME-199206",
"R-BTA-199206",
"R-RNO-199206"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_8580",
"name":"Alpha-Amylase",
"metabolites":{
"fru_c":1.0,
"h2o_c":-1.0,
"malt_c":1.0,
"malttr_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"84569_AT1 or 277_AT1 or 278_AT1 or 276_AT1 or 280_AT1 or 279_AT1",
"subsystem":"Starch and sucrose metabolism",
"notes":{
"original_bigg_ids":[
"HMR_8580"
]
},
"annotation":{
"bigg.reaction":[
"HMR_8580"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_8588",
"name":"HMR 8588",
"metabolites":{
"malt_c":-1.0,
"malt_l":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, lysosomal",
"notes":{
"original_bigg_ids":[
"HMR_8588"
]
},
"annotation":{
"bigg.reaction":[
"HMR_8588"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9608",
"name":"HMR 9608",
"metabolites":{
"lipoate_c":1.0,
"lipoate_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8884_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9608"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9608"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HSK",
"name":"Homoserine kinase",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h_c":1.0,
"hom__L_c":-1.0,
"phom_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Glycine, serine, alanine, and threonine metabolism",
"notes":{
"original_bigg_ids":[
"HMR_9718"
]
},
"annotation":{
"bigg.reaction":[
"HSK"
],
"biocyc":[
"META:HOMOSERKIN-RXN"
],
"ec-code":[
"2.7.1.39"
],
"kegg.reaction":[
"R01771"
],
"metanetx.reaction":[
"MNXR100737"
],
"rhea":[
"13985",
"13987",
"13986",
"13988"
],
"sabiork":[
"1866"
],
"sbo":"SBO:0000176",
"seed.reaction":[
"rxn01300"
]
}
},
{
"id":"HMR_9609",
"name":"HMR 9609",
"metabolites":{
"btn_c":1.0,
"btn_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8884_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9609"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9609"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9610",
"name":"Na+/succinate symporter",
"metabolites":{
"na1_c":1.0,
"na1_e":-1.0,
"succ_c":1.0,
"succ_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9058_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9610"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9610"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9612",
"name":"HMR 9612",
"metabolites":{
"na1_c":1.0,
"na1_e":-1.0,
"srtn_c":1.0,
"srtn_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9612"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9612"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9614",
"name":"HMR 9614",
"metabolites":{
"dopa_c":1.0,
"dopa_e":-1.0,
"na1_c":1.0,
"na1_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6531_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9614"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9614"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9617",
"name":"HMR 9617",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"na1_c":1.0,
"na1_e":-1.0,
"pro__L_c":1.0,
"pro__L_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6534_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9617"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9617"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9619",
"name":"HMR 9619",
"metabolites":{
"crtn_c":1.0,
"crtn_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"55244_AT1 or 146802_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9619"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9619"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9622",
"name":"HMR 9622",
"metabolites":{
"lac__L_c":-1.0,
"lac__L_e":1.0,
"urate_c":1.0,
"urate_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"116085_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9622"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9622"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9623",
"name":"HMR 9623",
"metabolites":{
"akg_c":-1.0,
"akg_e":1.0,
"dheas_c":1.0,
"dheas_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10864_AT1 or 55867_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9623"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9623"
],
"sbo":"SBO:0000185"
}
},
{
"id":"3DHLCAt2",
"name":"3-dehydro-lithocholic acid transport via sodium cotransport",
"metabolites":{
"3dhlchol_c":1.0,
"3dhlchol_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6554_AT1 or 6555_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"3DHLCAt2"
]
},
"annotation":{
"bigg.reaction":[
"3DHLCAt2"
],
"sbo":"SBO:0000185"
}
},
{
"id":"7DHCDCHOLt",
"name":"7-Dehydrochenodeoxycholic acid transport via bicarbonate countertransport",
"metabolites":{
"7dhcdchol_c":1.0,
"7dhcdchol_e":-1.0,
"hco3_c":-1.0,
"hco3_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28234_AT1 or 10599_AT1 or 123264_AT1 or 200931_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"7DHCDCHOLt"
]
},
"annotation":{
"bigg.reaction":[
"7DHCDCHOLt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"7DHCDCHOLt2",
"name":"7-Dehydrochenodeoxycholic acid transport via sodium cotransport",
"metabolites":{
"7dhcdchol_c":1.0,
"7dhcdchol_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6554_AT1 or 6555_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"7DHCDCHOLt2"
]
},
"annotation":{
"bigg.reaction":[
"7DHCDCHOLt2"
],
"sbo":"SBO:0000185"
}
},
{
"id":"7DHCHOLabc",
"name":"7-Dehydrocholic acid ABC bile acid transporter",
"metabolites":{
"7dhchol_c":-1.0,
"7dhchol_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8647_AT1 or 8714_AT2 or 8714_AT1 or 1244_AT1 or 10257_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"7DHCHOLabc"
]
},
"annotation":{
"bigg.reaction":[
"7DHCHOLabc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"7DHCHOLt",
"name":"7-Dehydrocholic acid transport via bicarbonate countertransport",
"metabolites":{
"7dhchol_c":1.0,
"7dhchol_e":-1.0,
"hco3_c":-1.0,
"hco3_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28234_AT1 or 10599_AT1 or 123264_AT1 or 200931_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"7DHCHOLt"
]
},
"annotation":{
"bigg.reaction":[
"7DHCHOLt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"7DHCHOLt2",
"name":"7-Dehydrocholic acid transport via sodium cotransport",
"metabolites":{
"7dhchol_c":1.0,
"7dhchol_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6554_AT1 or 6555_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
"7DHCHOLt2"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9624",
"name":"HMR 9624",
"metabolites":{
"akg_c":-1.0,
"akg_e":1.0,
"estrones_c":1.0,
"estrones_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10864_AT1 or 55867_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9624"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9624"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9625",
"name":"HMR 9625",
"metabolites":{
"HC02057_c":1.0,
"HC02057_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
"notes":{
"original_bigg_ids":[
"HMR_9625"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9625"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9626",
"name":"HMR 9626",
"metabolites":{
"so4_c":1.0,
"so4_r":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
"notes":{
"original_bigg_ids":[
"HMR_9626"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9626"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9628",
"name":"HMR 9628",
"metabolites":{
"gthox_c":1.0,
"gthox_r":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
"notes":{
"original_bigg_ids":[
"HMR_9628"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9628"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CA24GSr",
"name":"UDP-Glucuronosyltransferase (UGT) (cholic acid)",
"metabolites":{
"ca24g_r":1.0,
"cholate_r":-1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10941_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
"CA24GSr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"CA24Gtr",
"name":"Glucuronidated Compound Transport (CA-24G)",
"metabolites":{
"ca24g_c":-1.0,
"ca24g_r":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CA24Gtr"
]
},
"annotation":{
"bigg.reaction":[
"CA24Gtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9631",
"name":"HMR 9631",
"metabolites":{
"mem2emgacpail_prot_hs_c":1.0,
"mem2emgacpail_prot_hs_r":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
"notes":{
"original_bigg_ids":[
"HMR_9631"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9631"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9635",
"name":"HMR 9635",
"metabolites":{
"gpi_sig_c":-1.0,
"gpi_sig_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9635"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9635"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9638",
"name":"HMR 9638",
"metabolites":{
"4abutn_c":-1.0,
"4abutn_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9638"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9638"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CA3Sabc",
"name":"Cholic acid 3-sulfate ABC bile acid transporter",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"ca3s_c":-1.0,
"ca3s_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8714_AT2 or 8714_AT1 or 10257_AT1 or 1244_AT1 or 9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"CA3Sabc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9720",
"name":"HMR 9720",
"metabolites":{
"dolichol__L_c":-1.0,
"dolichol__L_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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"HMR_9720"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9720"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CASULT",
"name":"Cholic acid sulfotransferase",
"metabolites":{
"ca3s_c":1.0,
"cholate_c":-1.0,
"h_c":1.0,
"pap_c":1.0,
"paps_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6822_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"CASULT"
]
},
"annotation":{
"bigg.reaction":[
"CASULT"
],
"sbo":"SBO:0000176"
}
},
{
"id":"CDCA24Gte",
"name":"Glucuronidated bile acid excretion (CDCA-24G)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"cdca24g_c":-1.0,
"cdca24g_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8647_AT1 or 8714_AT2 or 8714_AT1 or 1244_AT1 or 9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
"CDCA24Gte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9640",
"name":"HMR 9640",
"metabolites":{
"galgluside_hs_c":-1.0,
"galgluside_hs_e":1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9640"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9640"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9642",
"name":"HMR 9642",
"metabolites":{
"adprbp_c":-1.0,
"adprbp_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9642"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9642"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9644",
"name":"HMR 9644",
"metabolites":{
"M01881_c":-1.0,
"M01881_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9644"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9644"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9647",
"name":"HMR 9647",
"metabolites":{
"M03131_c":-1.0,
"M03131_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9647"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9647"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9648",
"name":"HMR 9648",
"metabolites":{
"n5m2masn_c":-1.0,
"n5m2masn_e":1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9648"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9648"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HC02220t",
"name":"Chenodeoxycholic acid 3-sulfate transport via bicarbonate countertransport",
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"HC02220_c":1.0,
"HC02220_e":-1.0,
"hco3_c":-1.0,
"hco3_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28234_AT1 or 10599_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HC02220t"
]
},
"annotation":{
"bigg.reaction":[
"HC02220t"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CDCA6AH",
"name":"Chenodeoxycholic acid 6alpha-hydroxylase",
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"C02528_c":-1.0,
"h2o_c":1.0,
"h_c":-1.0,
"hyochol_c":1.0,
"nadp_c":1.0,
"nadph_c":-1.0,
"o2_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1576_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"CDCA6AH"
]
},
"annotation":{
"bigg.reaction":[
"CDCA6AH"
],
"sbo":"SBO:0000176"
}
},
{
"id":"COPROSTabc",
"name":"Coprostanol ABC bile acid transporter",
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"adp_c":1.0,
"atp_c":-1.0,
"coprost_c":-1.0,
"coprost_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8647_AT1 or 8714_AT2 or 8714_AT1 or 1244_AT1 or 10257_AT1",
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"notes":{
"original_bigg_ids":[
"COPROSTabc"
]
},
"annotation":{
"bigg.reaction":[
"COPROSTabc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"COPROSTt",
"name":"Coprostanol transport via bicarbonate countertransport",
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"coprost_e":-1.0,
"hco3_c":-1.0,
"hco3_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28234_AT1 or 10599_AT1 or 123264_AT1 or 200931_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"COPROSTt"
]
},
"annotation":{
"bigg.reaction":[
"COPROSTt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"COPROSTt2",
"name":"Coprostanol transport via sodium cotransport",
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"coprost_c":1.0,
"coprost_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6554_AT1 or 6555_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"COPROSTt2"
]
},
"annotation":{
"bigg.reaction":[
"COPROSTt2"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DCA24GSr",
"name":"UDP-Glucuronosyltransferase (UGT) ER (deoxycholic acid)",
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"dca24g_r":1.0,
"dchac_r":-1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"7364_AT1 or 10941_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"DCA24GSr"
]
},
"annotation":{
"bigg.reaction":[
"DCA24GSr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_9656",
"name":"HMR 9656",
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"hretn_c":-1.0,
"hretn_e":1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9656"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9656"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9660",
"name":"HMR 9660",
"metabolites":{
"core5_c":-1.0,
"core5_e":1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9660"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9660"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9661",
"name":"HMR 9661",
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"core7_c":-1.0,
"core7_e":1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9661"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9661"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9663",
"name":"HMR 9663",
"metabolites":{
"mem2emgacpail_prot_hs_c":-1.0,
"mem2emgacpail_prot_hs_e":1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_9663"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9663"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DCA3GSr",
"name":"UDP-Glucuronosyltransferase (UGT) ER (deoxycholic acid)",
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"dchac_r":-1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"7364_AT1 or 10941_AT1",
"subsystem":"Bile acid synthesis",
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"DCA3GSr"
]
},
"annotation":{
"bigg.reaction":[
"DCA3GSr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"DCA3Sabc",
"name":"Deoxycholic acid 3-sulfate ABC bile acid transporter",
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"atp_c":-1.0,
"dca3s_c":-1.0,
"dca3s_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8714_AT2 or 8714_AT1 or 10257_AT1 or 1244_AT1 or 9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
"DCA3Sabc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DCA3St",
"name":"Deoxycholic acid 3-sulfate transport via bicarbonate countertransport",
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"dca3s_e":-1.0,
"hco3_c":-1.0,
"hco3_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28234_AT1 or 10599_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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"DCA3St"
]
},
"annotation":{
"bigg.reaction":[
"DCA3St"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DM_icdchol_c",
"name":"DM icdchol(c)",
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"icdchol_c":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_icdchol[c]"
]
},
"annotation":{
"bigg.reaction":[
"DM_icdchol_c"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_lca24g_c",
"name":"DM lca24g(c)",
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"lca24g_c":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_lca24g[c]"
]
},
"annotation":{
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],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_3dhdchol_c",
"name":"DM 3dhdchol(c)",
"metabolites":{
"3dhdchol_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
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"DM_3dhdchol[c]"
]
},
"annotation":{
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],
"sbo":"SBO:0000628"
}
},
{
"id":"HMR_9726",
"name":"5-Formyltetrahydrofolate:L-Glutamate N-Formiminotransferase",
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"forglu_c":1.0,
"glu__L_c":-1.0,
"thf_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10841_AT1",
"subsystem":"Folate metabolism",
"notes":{
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"HMR_9726"
]
},
"annotation":{
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"HMR_9726"
],
"sbo":"SBO:0000176"
}
},
{
"id":"DM_7dhcdchol_c",
"name":"DM 7dhcdchol(c)",
"metabolites":{
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
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"DM_7dhcdchol[c]"
]
},
"annotation":{
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],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_7dhchol_c",
"name":"DM 7dhchol(c)",
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_lca3g_c",
"name":"DM lca3g(c)",
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_tcdca3s_c",
"name":"DM tcdca3s(c)",
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_thyochol_c",
"name":"DM thyochol(c)",
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"thyochol_c":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
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]
},
"annotation":{
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],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_ca24g_c",
"name":"DM ca24g(c)",
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
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]
},
"annotation":{
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],
"sbo":"SBO:0000628"
}
},
{
"id":"ADD",
"name":"Adenine deaminase",
"metabolites":{
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"h2o_c":-1.0,
"h_c":-1.0,
"hxan_c":1.0,
"nh4_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Purine catabolism",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
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],
"biocyc":[
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],
"ec-code":[
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],
"kegg.reaction":[
"R01244"
],
"metanetx.reaction":[
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],
"rhea":[
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"23689",
"23688",
"23691"
],
"sbo":"SBO:0000176",
"seed.reaction":[
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]
}
},
{
"id":"DM_ca3s_c",
"name":"DM ca3s(c)",
"metabolites":{
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},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_dca24g_c",
"name":"DM dca24g(c)",
"metabolites":{
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},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_dca3s_c",
"name":"DM dca3s(c)",
"metabolites":{
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},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_uchol_c",
"name":"DM uchol(c)",
"metabolites":{
"uchol_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_uchol[c]"
]
},
"annotation":{
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],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_gca3s_c",
"name":"DM gca3s(c)",
"metabolites":{
"gca3s_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_udca3s_c",
"name":"DM udca3s(c)",
"metabolites":{
"udca3s_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000628"
}
},
{
"id":"HMR_9803",
"name":"3-Oxopropionyl Coenzyme A:NAD+ Oxidoreductase",
"metabolites":{
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"h2o_m":1.0,
"h_m":-2.0,
"malcoa_m":-1.0,
"nadp_m":1.0,
"nadph_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Propanoate metabolism",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_12dhchol_e",
"name":"EX 12dhchol(e)",
"metabolites":{
"12dhchol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_12dhchol[e]"
]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_3dhchol_e",
"name":"EX 3dhchol(e)",
"metabolites":{
"3dhchol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000627"
}
},
{
"id":"DM_gcdca3s_c",
"name":"DM gcdca3s(c)",
"metabolites":{
"gcdca3s_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_gdca3s_c",
"name":"DM gdca3s(c)",
"metabolites":{
"gdca3s_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_gdca3s[c]"
]
},
"annotation":{
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],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_gudca3s_c",
"name":"DM gudca3s(c)",
"metabolites":{
"gudca3s_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_gudca3s[c]"
]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_hca24g_c",
"name":"DM hca24g(c)",
"metabolites":{
"hca24g_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_hca24g[c]"
]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000628"
}
},
{
"id":"EX_3dhlchol_e",
"name":"EX 3dhlchol(e)",
"metabolites":{
"3dhlchol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_3dhlchol[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_3dhlchol_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_7dhcdchol_e",
"name":"EX 7dhcdchol(e)",
"metabolites":{
"7dhcdchol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_7dhcdchol[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_7dhcdchol_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_ca24g_e",
"name":"EX ca24g(e)",
"metabolites":{
"ca24g_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ca24g[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ca24g_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_ca3s_e",
"name":"EX ca3s(e)",
"metabolites":{
"ca3s_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ca3s[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ca3s_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_cdca24g_e",
"name":"EX cdca24g(e)",
"metabolites":{
"cdca24g_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_cdca24g[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_cdca24g_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_coprost_e",
"name":"EX coprost(e)",
"metabolites":{
"coprost_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_coprost[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_coprost_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_dca3s_e",
"name":"EX dca3s(e)",
"metabolites":{
"dca3s_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_dca3s[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_dca3s_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hdca24g_e",
"name":"EX hdca24g(e)",
"metabolites":{
"hdca24g_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hdca24g[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hdca24g_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hdca6g_e",
"name":"EX hdca6g(e)",
"metabolites":{
"hdca6g_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hdca6g[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hdca6g_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"DM_hca6g_c",
"name":"DM hca6g(c)",
"metabolites":{
"hca6g_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_hca6g[c]"
]
},
"annotation":{
"bigg.reaction":[
"DM_hca6g_c"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_hdca24g_c",
"name":"DM hdca24g(c)",
"metabolites":{
"hdca24g_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_hdca24g[c]"
]
},
"annotation":{
"bigg.reaction":[
"DM_hdca24g_c"
],
"sbo":"SBO:0000628"
}
},
{
"id":"EX_icdchol_e",
"name":"EX icdchol(e)",
"metabolites":{
"icdchol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_icdchol[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_icdchol_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"HDCA24Gte",
"name":"Glucuronidated bile acid excretion (HDCA-24G)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"hdca24g_c":-1.0,
"hdca24g_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8647_AT1 or 8714_AT2 or 8714_AT1 or 1244_AT1 or 9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HDCA24Gte"
]
},
"annotation":{
"bigg.reaction":[
"HDCA24Gte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9804",
"name":"HMR 9804",
"metabolites":{
"3hpcoa_m":-1.0,
"M03168_m":1.0,
"h_m":1.0,
"nadp_m":-1.0,
"nadph_m":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51171_AT1 or 80270_AT1 or 10202_AT1 or 10553_AT1 or 7923_AT1 or 157506_AT1 or 130752_AT1 or 145226_AT1 or 84869_AT1 or 1487_AT1 or 112724_AT1 or 56898_AT1 or 374875_AT1 or 121214_AT1 or 195814_AT1 or 3291_AT1 or 100288072_AT1 or 93517_AT1 or 51741_AT1 or 1645_AT1 or 340811_AT1 or 128_AT1 or 57016_AT1 or 51170_AT1 or 1109_AT1 or 7923_AT1 or 7923_AT1 or 441282_AT1 or 7923_AT1 or 7923_AT1 or 7923_AT1 or 57665_AT1",
"subsystem":"Propanoate metabolism",
"notes":{
"original_bigg_ids":[
"HMR_9804"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9804"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HDCA24Gtr",
"name":"Glucuronidated Compound Transport (HDCA-24G)",
"metabolites":{
"hdca24g_c":-1.0,
"hdca24g_r":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"0",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HDCA24Gtr"
]
},
"annotation":{
"bigg.reaction":[
"HDCA24Gtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HDCA6GSc",
"name":"UDP-Glucuronosyltransferase (UGT) cytosolic (hyodeoxycholic acid)",
"metabolites":{
"M02155_c":-1.0,
"h_c":1.0,
"hdca6g_c":1.0,
"udp_c":1.0,
"udpglcur_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"7363_AT1 or 7364_AT1 or 10941_AT1 or 79799_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"HDCA6GSc"
]
},
"annotation":{
"bigg.reaction":[
"HDCA6GSc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HDCA6Gtr",
"name":"Glucuronidated Compound Transport (HDCA-6G)",
"metabolites":{
"hdca6g_c":-1.0,
"hdca6g_r":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HDCA6Gtr"
]
},
"annotation":{
"bigg.reaction":[
"HDCA6Gtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HYOCHOLt",
"name":"Hyocholic acid transport via bicarbonate countertransport",
"metabolites":{
"hco3_c":-1.0,
"hco3_e":1.0,
"hyochol_c":1.0,
"hyochol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28234_AT1 or 10599_AT1 or 123264_AT1 or 200931_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HYOCHOLt"
]
},
"annotation":{
"bigg.reaction":[
"HYOCHOLt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_lca3g_e",
"name":"EX lca3g(e)",
"metabolites":{
"lca3g_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lca3g[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lca3g_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tca3s_e",
"name":"EX tca3s(e)",
"metabolites":{
"tca3s_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tca3s[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tca3s_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tdca3s_e",
"name":"EX tdca3s(e)",
"metabolites":{
"tdca3s_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tdca3s[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tdca3s_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_thyochol_e",
"name":"EX thyochol(e)",
"metabolites":{
"thyochol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_thyochol[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_thyochol_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tudca3s_e",
"name":"EX tudca3s(e)",
"metabolites":{
"tudca3s_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tudca3s[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tudca3s_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"HYOCHOLt2",
"name":"Hyocholic acid transport via sodium cotransport",
"metabolites":{
"hyochol_c":1.0,
"hyochol_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6554_AT1 or 6555_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HYOCHOLt2"
]
},
"annotation":{
"bigg.reaction":[
"HYOCHOLt2"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ICDCHOLt2",
"name":"Isochenodeoxycholic acid transport via sodium cotransport",
"metabolites":{
"icdchol_c":1.0,
"icdchol_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6554_AT1 or 6555_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ICDCHOLt2"
]
},
"annotation":{
"bigg.reaction":[
"ICDCHOLt2"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_9807",
"name":"5-Phosphonooxy-L-Lysine Phospho-Lyase",
"metabolites":{
"L2aadp6sa_c":1.0,
"M03167_c":-1.0,
"h2o_c":-1.0,
"nh4_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"85007_AT1",
"subsystem":"Miscellaneous",
"notes":{
"original_bigg_ids":[
"HMR_9807"
]
},
"annotation":{
"bigg.reaction":[
"HMR_9807"
],
"sbo":"SBO:0000176"
}
},
{
"id":"ISOCHOLt",
"name":"Isocholic acid transport via bicarbonate countertransport",
"metabolites":{
"hco3_c":-1.0,
"hco3_e":1.0,
"isochol_c":1.0,
"isochol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28234_AT1 or 10599_AT1 or 123264_AT1 or 200931_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ISOCHOLt"
]
},
"annotation":{
"bigg.reaction":[
"ISOCHOLt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GCA3St",
"name":"Glycocholic acid 3-sulfate transport via bicarbonate countertransport",
"metabolites":{
"gca3s_c":1.0,
"gca3s_e":-1.0,
"hco3_c":-1.0,
"hco3_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28234_AT1 or 10599_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GCA3St"
]
},
"annotation":{
"bigg.reaction":[
"GCA3St"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GCASULT",
"name":"Glycocholic acid sulfotransferase",
"metabolites":{
"gca3s_c":1.0,
"gchola_c":-1.0,
"h_c":1.0,
"pap_c":1.0,
"paps_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6822_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"GCASULT"
]
},
"annotation":{
"bigg.reaction":[
"GCASULT"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_mem2emgacpail_prot_hs_e",
"name":"HMR 9712",
"metabolites":{
"mem2emgacpail_prot_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"sink_xolest2_hs[l]"
]
},
"annotation":{
"bigg.reaction":[
"EX_mem2emgacpail_prot_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"GCDCA3Sabc",
"name":"Glycochenodeoxycholic acid 3-sulfate ABC bile acid transporter",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"gcdca3s_c":-1.0,
"gcdca3s_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8714_AT2 or 8714_AT1 or 10257_AT1 or 1244_AT1 or 9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GCDCA3Sabc"
]
},
"annotation":{
"bigg.reaction":[
"GCDCA3Sabc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GDCA3St",
"name":"Glycodeoxycholic acid 3-sulfate via bicarbonate countertransport",
"metabolites":{
"gdca3s_c":1.0,
"gdca3s_e":-1.0,
"hco3_c":-1.0,
"hco3_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28234_AT1 or 10599_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GDCA3St"
]
},
"annotation":{
"bigg.reaction":[
"GDCA3St"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GUDCASULT",
"name":"Glycoursodeoxycholic acid sulfotransferase",
"metabolites":{
"HC02196_c":-1.0,
"gudca3s_c":1.0,
"h_c":1.0,
"pap_c":1.0,
"paps_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6822_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"GUDCASULT"
]
},
"annotation":{
"bigg.reaction":[
"GUDCASULT"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HCA24GSr",
"name":"UDP-Glucuronosyltransferase (UGT) (hyocholic acid)",
"metabolites":{
"hca24g_r":1.0,
"hyochol_r":-1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"7364_AT1 or 10941_AT1 or 79799_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"HCA24GSr"
]
},
"annotation":{
"bigg.reaction":[
"HCA24GSr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HCA24Gtr",
"name":"Glucuronidated Compound Transport (HCA-24G)",
"metabolites":{
"hca24g_c":-1.0,
"hca24g_r":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HCA24Gtr"
]
},
"annotation":{
"bigg.reaction":[
"HCA24Gtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HCA6Gte",
"name":"Glucuronidated bile acid excretion (HCA-6G)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"hca6g_c":-1.0,
"hca6g_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8647_AT1 or 8714_AT2 or 8714_AT1 or 1244_AT1 or 9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HCA6Gte"
]
},
"annotation":{
"bigg.reaction":[
"HCA6Gte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HCA6Gtr",
"name":"Glucuronidated Compound Transport (HCA-6G)",
"metabolites":{
"hca6g_c":-1.0,
"hca6g_r":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HCA6Gtr"
]
},
"annotation":{
"bigg.reaction":[
"HCA6Gtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LCA24Gte",
"name":"Glucuronidated bile acid excretion (LCA-24G)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"lca24g_c":-1.0,
"lca24g_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8647_AT1 or 8714_AT2 or 8714_AT1 or 1244_AT1 or 9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LCA24Gte"
]
},
"annotation":{
"bigg.reaction":[
"LCA24Gte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LCA24Gtr",
"name":"Glucuronidated Compound Transport (LCA-24G)",
"metabolites":{
"lca24g_c":-1.0,
"lca24g_r":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LCA24Gtr"
]
},
"annotation":{
"bigg.reaction":[
"LCA24Gtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LCA3GSr",
"name":"UDP-Glucuronosyltransferase (UGT) ER (lithocholic acid)",
"metabolites":{
"HC02191_r":-1.0,
"lca3g_r":1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"7364_AT1 or 10941_AT1 or 79799_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"LCA3GSr"
]
},
"annotation":{
"bigg.reaction":[
"LCA3GSr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TCASULT",
"name":"Taurocholic acid sulfotransferase",
"metabolites":{
"h_c":1.0,
"pap_c":1.0,
"paps_c":-1.0,
"tca3s_c":1.0,
"tchola_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6822_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"TCASULT"
]
},
"annotation":{
"bigg.reaction":[
"TCASULT"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_1635",
"name":"Alpha-Methylacyl Coenzyme A Racemase",
"metabolites":{
"cholcoar_m":-1.0,
"cholcoas_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"23600_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"HMR_1635"
]
},
"annotation":{
"bigg.reaction":[
"HMR_1635"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TCDCA3Sabc",
"name":"Taurochenodeoxycholic acid 3-sulfate ABC bile acid transporter",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"tcdca3s_c":-1.0,
"tcdca3s_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8714_AT2 or 8714_AT1 or 10257_AT1 or 1244_AT1 or 9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TCDCA3Sabc"
]
},
"annotation":{
"bigg.reaction":[
"TCDCA3Sabc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TCDCA3St",
"name":"Taurochenodeoxycholic acid 3-sulfate transport via bicarbonate countertransport",
"metabolites":{
"hco3_c":-1.0,
"hco3_e":1.0,
"tcdca3s_c":1.0,
"tcdca3s_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28234_AT1 or 10599_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TCDCA3St"
]
},
"annotation":{
"bigg.reaction":[
"TCDCA3St"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TCDCA6AH",
"name":"Taurochenodeoxycholic acid 6alpha-hydroxylase",
"metabolites":{
"h2o_c":1.0,
"nadp_c":1.0,
"nadph_c":-1.0,
"o2_c":-1.0,
"tdchola_c":-1.0,
"thyochol_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1576_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"TCDCA6AH"
]
},
"annotation":{
"bigg.reaction":[
"TCDCA6AH"
],
"sbo":"SBO:0000176"
}
},
{
"id":"UDCA3Sabc",
"name":"Ursodeoxycholic acid 3-sulfate ABC bile acid transporter",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"udca3s_c":-1.0,
"udca3s_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8714_AT2 or 8714_AT1 or 10257_AT1 or 1244_AT1 or 9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"UDCA3Sabc"
]
},
"annotation":{
"bigg.reaction":[
"UDCA3Sabc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TDCA3Sabc",
"name":"Taurodeoxycholic acid 3-sulfate ABC bile acid transporter",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"tdca3s_c":-1.0,
"tdca3s_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8714_AT2 or 8714_AT1 or 10257_AT1 or 1244_AT1 or 9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TDCA3Sabc"
]
},
"annotation":{
"bigg.reaction":[
"TDCA3Sabc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"UDCA3St",
"name":"Ursodeoxycholic acid 3-sulfate transport via bicarbonate countertransport",
"metabolites":{
"hco3_c":-1.0,
"hco3_e":1.0,
"udca3s_c":1.0,
"udca3s_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28234_AT1 or 10599_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"UDCA3St"
]
},
"annotation":{
"bigg.reaction":[
"UDCA3St"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TDCA3St",
"name":"Taurodeoxycholic acid 3-sulfate transport via bicarbonate countertransport",
"metabolites":{
"hco3_c":-1.0,
"hco3_e":1.0,
"tdca3s_c":1.0,
"tdca3s_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28234_AT1 or 10599_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TDCA3St"
]
},
"annotation":{
"bigg.reaction":[
"TDCA3St"
],
"sbo":"SBO:0000185"
}
},
{
"id":"UDCHOLt",
"name":"Ursodeoxycholic acid transport via bicarbonate countertransport",
"metabolites":{
"HC02194_c":1.0,
"HC02194_e":-1.0,
"hco3_c":-1.0,
"hco3_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28234_AT1 or 10599_AT1 or 123264_AT1 or 200931_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"UDCHOLt"
]
},
"annotation":{
"bigg.reaction":[
"UDCHOLt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C14STR",
"name":"C 14 sterol reductase",
"metabolites":{
"44mctr_c":-1.0,
"44mzym_c":1.0,
"h_c":-1.0,
"nadp_c":1.0,
"nadph_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3930_AT1 or 7108_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
"original_bigg_ids":[
"HMR_1484"
]
},
"annotation":{
"bigg.reaction":[
"C14STR"
],
"metanetx.reaction":[
"MNXR96383"
],
"sbo":"SBO:0000176"
}
},
{
"id":"THYOCHOLabc",
"name":"Taurohyocholic acid ABC bile acid transporter",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"thyochol_c":-1.0,
"thyochol_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8647_AT1 or 8714_AT2 or 8714_AT1 or 1244_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"THYOCHOLabc"
]
},
"annotation":{
"bigg.reaction":[
"THYOCHOLabc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"THYOCHOLt",
"name":"Taurohyocholic acid transport via bicarbonate countertransport",
"metabolites":{
"hco3_c":-1.0,
"hco3_e":1.0,
"thyochol_c":1.0,
"thyochol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28234_AT1 or 10599_AT1 or 123264_AT1 or 200931_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"THYOCHOLt"
]
},
"annotation":{
"bigg.reaction":[
"THYOCHOLt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_1467",
"name":"Presqualene-Diphosphate Diphosphate-Lyase (Reducing, Squalene-Forming)",
"metabolites":{
"HC01118_c":-1.0,
"h_c":-1.0,
"nadp_c":1.0,
"nadph_c":-1.0,
"ppi_c":1.0,
"sql_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2222_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
"original_bigg_ids":[
"HMR_1467"
]
},
"annotation":{
"bigg.reaction":[
"HMR_1467"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TUDCA3St",
"name":"Tauroursodeoxycholic acid 3-sulfate transport via bicarbonate countertransport",
"metabolites":{
"hco3_c":-1.0,
"hco3_e":1.0,
"tudca3s_c":1.0,
"tudca3s_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28234_AT1 or 10599_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TUDCA3St"
]
},
"annotation":{
"bigg.reaction":[
"TUDCA3St"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_1644",
"name":"3Alpha, 7Alpha, 12Alpha-Trihydroxy-5Beta-Cholest-24-Enoyl Coenzyme A Hydratase",
"metabolites":{
"HC01459_m":1.0,
"cholcoads_m":-1.0,
"h2o_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3295_AT1",
"subsystem":"Steroid metabolism",
"notes":{
"original_bigg_ids":[
"HMR_1644"
]
},
"annotation":{
"bigg.reaction":[
"HMR_1644"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TUDCASULT",
"name":"Tauroursodeoxycholic acid sulfotransferase",
"metabolites":{
"HC02195_c":-1.0,
"h_c":1.0,
"pap_c":1.0,
"paps_c":-1.0,
"tudca3s_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6822_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"TUDCASULT"
]
},
"annotation":{
"bigg.reaction":[
"TUDCASULT"
],
"sbo":"SBO:0000176"
}
},
{
"id":"UCHOLabc",
"name":"Ursocholic acid ABC bile acid transporter",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"uchol_c":-1.0,
"uchol_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8647_AT1 or 8714_AT2 or 8714_AT1 or 1244_AT1 or 10257_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"UCHOLabc"
]
},
"annotation":{
"bigg.reaction":[
"UCHOLabc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"UCHOLt",
"name":"Ursocholic acid transport via bicarbonate countertransport",
"metabolites":{
"hco3_c":-1.0,
"hco3_e":1.0,
"uchol_c":1.0,
"uchol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28234_AT1 or 10599_AT1 or 123264_AT1 or 200931_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"UCHOLt"
]
},
"annotation":{
"bigg.reaction":[
"UCHOLt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"12HTACRtep",
"name":"Exit of 12-hydroxy tacrolimus into portal blood",
"metabolites":{
"12htacr_c":-1.0,
"12htacr_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"12HTACRtep"
]
},
"annotation":{
"bigg.reaction":[
"12HTACRtep"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_1500",
"name":"3Beta-Hydroxysteroid 3-Dehydrogenase",
"metabolites":{
"4mzym_int2_c":-1.0,
"HC02110_c":1.0,
"h_c":-3.0,
"nadp_c":-1.0,
"nadph_c":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51478_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
"original_bigg_ids":[
"HMR_1500"
]
},
"annotation":{
"bigg.reaction":[
"HMR_1500"
],
"sbo":"SBO:0000176"
}
},
{
"id":"1331TAALThr",
"name":"Demethylation of 13-O-desmethyl-tacrolimus to 13,31-O-Didesmethyl-tacrolimus in hepatocytes",
"metabolites":{
"1331tacr_r":1.0,
"13dmt_r":-1.0,
"ahcys_r":-1.0,
"amet_r":1.0,
"h_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"1331TAALThr"
]
},
"annotation":{
"bigg.reaction":[
"1331TAALThr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"1331TACRhr",
"name":"Demethylation of 31-O-desmethyl-tacrolimus to 13,31-O-Didesmethyl-tacrolimus in hepatocytes",
"metabolites":{
"1331tacr_r":1.0,
"31dmt_r":-1.0,
"ahcys_r":-1.0,
"amet_r":1.0,
"h_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"1331TACRhr"
]
},
"annotation":{
"bigg.reaction":[
"1331TACRhr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"1331TACRteb",
"name":"Efflux of 13,31-O-Didesmethyl-tacrolimus into bile",
"metabolites":{
"1331tacr_c":-1.0,
"1331tacr_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"1331TACRteb"
]
},
"annotation":{
"bigg.reaction":[
"1331TACRteb"
],
"sbo":"SBO:0000185"
}
},
{
"id":"13DMThr",
"name":"Demthylation of tacrolimus to 13-O-desmethyl tacrolimus in hepatocytes",
"metabolites":{
"13dmt_r":1.0,
"ahcys_r":-1.0,
"amet_r":1.0,
"h_r":-1.0,
"tacr_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"13DMThr"
]
},
"annotation":{
"bigg.reaction":[
"13DMThr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"13DMTtu",
"name":"Efflux of 13-O-desmethyl tacrolimus into intestinal lumen by ABC transporter",
"metabolites":{
"13dmt_c":-1.0,
"13dmt_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"13DMTtu"
]
},
"annotation":{
"bigg.reaction":[
"13DMTtu"
],
"sbo":"SBO:0000185"
}
},
{
"id":"3HPVSTETteb",
"name":"Efflux of 3-S-hydroxy-pravastatin-tetranor into bile",
"metabolites":{
"3hpvstet_c":-1.0,
"3hpvstet_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1244_AT1 or 9429_AT1 or 8647_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"3HPVSTETteb"
]
},
"annotation":{
"bigg.reaction":[
"3HPVSTETteb"
],
"sbo":"SBO:0000185"
}
},
{
"id":"3HPVSTETtev",
"name":"Exit of 3-S-hydroxy-pravastatin-tetranor into hepatic vein",
"metabolites":{
"3hpvstet_c":-1.0,
"3hpvstet_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"3HPVSTETtev"
]
},
"annotation":{
"bigg.reaction":[
"3HPVSTETtev"
],
"sbo":"SBO:0000185"
}
},
{
"id":"3HPVSteb",
"name":"Efflux of 3-S-hydroxy-pravastatin into bile",
"metabolites":{
"3hpvs_c":-1.0,
"3hpvs_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1244_AT1 or 9429_AT1 or 8647_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"3HPVSteb"
]
},
"annotation":{
"bigg.reaction":[
"3HPVSteb"
],
"sbo":"SBO:0000185"
}
},
{
"id":"3HPVStep",
"name":"3-hydroxy pravastatin exit into portal blood",
"metabolites":{
"3hpvs_c":-1.0,
"3hpvs_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"3HPVStep"
]
},
"annotation":{
"bigg.reaction":[
"3HPVStep"
],
"sbo":"SBO:0000185"
}
},
{
"id":"13DMTtep",
"name":"Exit of 13-O-desmethyl tacrolimus into portal blood",
"metabolites":{
"13dmt_c":-1.0,
"13dmt_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"13DMTtep"
]
},
"annotation":{
"bigg.reaction":[
"13DMTtep"
],
"sbo":"SBO:0000185"
}
},
{
"id":"14HMDZALThr",
"name":"Oxidation of 4-OH-midazolam to 1,4-Dihydroxy-midazolam in hepatocytes",
"metabolites":{
"14hmdz_r":1.0,
"4ohmdz_r":-1.0,
"h2o_r":1.0,
"h_r":-1.0,
"nadp_r":1.0,
"nadph_r":-1.0,
"o2_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1576_AT1 or 1577_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"14HMDZALThr"
]
},
"annotation":{
"bigg.reaction":[
"14HMDZALThr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"14HMDZhr",
"name":"Oxidation of 1-OH-midazolam to 1,4-Dihydroxy-midazolam in hepatocytes",
"metabolites":{
"14hmdz_r":1.0,
"1ohmdz_r":-1.0,
"h2o_r":1.0,
"h_r":-1.0,
"nadp_r":1.0,
"nadph_r":-1.0,
"o2_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1576_AT1 or 1577_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"14HMDZhr"
]
},
"annotation":{
"bigg.reaction":[
"14HMDZhr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"1513DTALThr",
"name":"Demthylation of 15-O-desmethyl tacrolimus to 13,15-O-didesmethyl tacrolimus in hepatocytes",
"metabolites":{
"1513tacr_r":1.0,
"15dmt_r":-1.0,
"ahcys_r":-1.0,
"amet_r":1.0,
"h_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"1513DTALThr"
]
},
"annotation":{
"bigg.reaction":[
"1513DTALThr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"3HSMVACIDhep",
"name":"Conversion of 3-hydroxy simvastatin lactone to acid form",
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"h2o_c":-1.0,
"h_c":1.0
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"gene_reaction_rule":"5446_AT1",
"subsystem":"Drug metabolism",
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]
},
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],
"sbo":"SBO:0000176"
}
},
{
"id":"3HSMVhep",
"name":"Acid catalyzed rearrangement of 6-beta-hydroxy-simvastatin to 3-hydroxy simvastatin",
"metabolites":{
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"6hsmv_r":-1.0
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"upper_bound":1000.0,
"gene_reaction_rule":"1576_AT1 or 1577_AT1 or 1558_AT1 or 1565_AT1",
"subsystem":"Drug metabolism",
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"3ISPVShc",
"name":"Isomerization of pravastatin to 3-alpha-iso-pravastatin in hepatocytes",
"metabolites":{
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"pvs_c":-1.0
},
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
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]
},
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],
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}
},
{
"id":"3ISPVSteb",
"name":"Efflux of 3-alpha-iso-pravastatin into bile",
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]
},
"annotation":{
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],
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}
},
{
"id":"4BHGLZhr",
"name":"Oxidation of gliclazide to 4-beta-OH-gliclazide in hepatocytes",
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"glz_r":-1.0,
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"h_r":-1.0,
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"subsystem":"Drug metabolism",
"notes":{
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]
},
"annotation":{
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"4BHGLZhr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"1513DTACRhr",
"name":"Demthylation of 13-O-desmethyl tacrolimus to 13,15-O-didesmethyl tacrolimus in hepatocytes",
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"1513tacr_r":1.0,
"ahcys_r":-1.0,
"amet_r":1.0,
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"subsystem":"Drug metabolism",
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"1513TACRtu",
"name":"Efflux of 13,15-O-didesmethyl tacrolimus into intestinal lumen by ABC transporter",
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"subsystem":"Drug metabolism",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"1513TACRtu"
],
"sbo":"SBO:0000185"
}
},
{
"id":"1531TACRtev",
"name":"Exit of 15, 31-O-Didesmethyl-tacrolimus into hepatic vein",
"metabolites":{
"1531tacr_c":-1.0,
"1531tacr_e":1.0
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"upper_bound":1000.0,
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"subsystem":"Drug metabolism",
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]
},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"1531TALThr",
"name":"Demethylation of 31-O-desmethyl tacrolimus to 15, 31-O-Didesmethyl-tacrolimus in hepatocytes",
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"ahcys_r":-1.0,
"amet_r":1.0,
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"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
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"1531TALThr"
]
},
"annotation":{
"bigg.reaction":[
"1531TALThr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"15DMThr",
"name":"Demethylation of tacrolimus to 15-O-desmethyl tacrolimus in hepatocytes",
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"ahcys_r":-1.0,
"amet_r":1.0,
"h_r":-1.0,
"tacr_r":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"15DMThr"
]
},
"annotation":{
"bigg.reaction":[
"15DMThr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"4BHGLZtev",
"name":"Excretion of 4-beta-OH-gliclazide into hepatic vein",
"metabolites":{
"4bhglz_c":-1.0,
"4bhglz_e":1.0
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
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]
},
"annotation":{
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"4BHGLZtev"
],
"sbo":"SBO:0000185"
}
},
{
"id":"4HATVACIDhc",
"name":"Conversion of 4-hydroxy-atorvastatin-lactone to its acid form in hepatocytes",
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"4hatvlac_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5446_AT1",
"subsystem":"Drug metabolism",
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},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"15DMTtu",
"name":"Efflux of 15-O-desmethyl tacrolimus into intestinal lumen by ABC transporter",
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"15dmt_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
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"subsystem":"Drug metabolism",
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"15DMTtu"
]
},
"annotation":{
"bigg.reaction":[
"15DMTtu"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_nadh_e",
"name":"Exchange of Nicotinamide Adenine Dinucleotide - Reduced",
"metabolites":{
"nadh_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_nadh[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_nadh_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"1HIBUP_Sthv",
"name":"Release of 1-hydroxy-ibuprofen into hepatic vein",
"metabolites":{
"1hibup__S_c":-1.0,
"1hibup__S_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"1HMDGLUChr",
"name":"Glucuronidation of 1-OH-midazolam in enterocytes",
"metabolites":{
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"1ohmdz_r":-1.0,
"h_r":1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"54657_AT1 or 7363_AT1 or 7364_AT1",
"subsystem":"Drug metabolism",
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"2HATVACIDOXDhc",
"name":"Oxidation of atorvastatin acid to 2-hydroxy-atorvastatin-acid in hepatocytes",
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"atvacid_r":-1.0,
"h2o_r":1.0,
"h_r":-1.0,
"nadp_r":1.0,
"nadph_r":-1.0,
"o2_r":-1.0
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"subsystem":"Drug metabolism",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"2HATVACIDthc",
"name":"Uptake of 2-hydroxy-atorvastatin-acid into hepatocytes",
"metabolites":{
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"hco3_c":-1.0,
"hco3_e":1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
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"subsystem":"Drug metabolism",
"notes":{
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"2HATVACIDthc"
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},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"2HATVLACGLUChr",
"name":"Glucuronidation of 2-hydroxy-atorvastatin-lactone in hepatocytes",
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"2hatvlacgluc_r":1.0,
"h_r":1.0,
"udp_r":1.0,
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"subsystem":"Drug metabolism",
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},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"2HATVLACGLUCteb",
"name":"Efflux of 2-hydroxy-atorvastatin-lactone-glucuronide into bile",
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"2hatvlacgluc_e":1.0,
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"h_c":1.0,
"pi_c":1.0
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"subsystem":"Drug metabolism",
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"2HATVLACOXDhc",
"name":"Oxidation of atorvastatin lactone to 2-hydroxy-atorvastatin-lactone in hepatocytes",
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"atvlac_r":-1.0,
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"o2_r":-1.0
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},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"2HATVLACthc",
"name":"Uptake of 2-hydroxy-atorvastatin-lactone into hepatocytes",
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"hco3_c":-1.0,
"hco3_e":1.0
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"subsystem":"Drug metabolism",
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"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"4HATVLACOXDhc",
"name":"Oxidation of atorvastatin lactone to 4-hydroxy-atorvastatin-lactone in hepatocytes",
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"atvlac_r":-1.0,
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"o2_r":-1.0
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"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"56DHPVShc",
"name":"Oxidation of triol metabolite to 3-keto-5,6,-dihydroxy-pravastatin in hepatocytes",
"metabolites":{
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"h2o_r":2.0,
"h_r":-1.0,
"nadp_r":1.0,
"nadph_r":-1.0,
"o2_r":-1.0,
"tripvs_r":-1.0
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"subsystem":"Drug metabolism",
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},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"56DHPVStev",
"name":"Exit of 3-keto-5,6,-dihydroxy-pravastatin into hepatic vein",
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"56dhpvs_e":1.0
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
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"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"56EPPVStev",
"name":"Exit of 5,6-epoxy-3-alpha-iso-pravastatin into hepatic vein",
"metabolites":{
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"56eppvs_e":1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"5OHFVSGLUhc",
"name":"Glucuronidation of 5-hydroxy-fluvastatin",
"metabolites":{
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"5ohfvsglu_r":1.0,
"h_r":1.0,
"udp_r":1.0,
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"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
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},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"5OHFVShc",
"name":"Oxidation of fluvastatin to 5-hydroxy-fluvastatin in hepatocytes",
"metabolites":{
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"fvs_r":-1.0,
"h2o_r":1.0,
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"o2_r":-1.0
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"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"5OHFVSteb",
"name":"Efflux of 5-hydroxy-fluvastatin into bile for excretion into faeces",
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"6AHGLZABCt",
"name":"Excretion of 6-alpha-OH-gliclazide into bile",
"metabolites":{
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"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"6AHGLZhr",
"name":"Oxidation of gliclazide to 6-alpha-OH-gliclazide in hepatocytes",
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},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"6BHGLZABCt",
"name":"Excretion of 6-beta-OH-gliclazide into bile",
"metabolites":{
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"6CSMVACIDhep",
"name":"Conversion of 6-beta-carboxy simvastatin lactone to acid form",
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"h2o_c":-1.0,
"h_c":1.0
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"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"6CSMVACIDteb",
"name":"Efflux of 6-beta-carboxy-simvastatin-acid form into bile",
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"gene_reaction_rule":"",
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"2HIBUPGLUC_Sthv",
"name":"Release of 2-hydroxy S-ibuprofen-glucuronide into hepatic vein",
"metabolites":{
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"2hibupglu__S_e":1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
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},
"annotation":{
"bigg.reaction":[
"2HIBUPGLUC_Sthv"
],
"sbo":"SBO:0000185"
}
},
{
"id":"31DMThr",
"name":"Demethylation of tacrolimus to 31-O-desmethyl tacrolimus in hepatocytes",
"metabolites":{
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"ahcys_r":-1.0,
"amet_r":1.0,
"h_r":-1.0,
"tacr_r":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
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"subsystem":"Drug metabolism",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"31DMThr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"31DMTtu",
"name":"Efflux of 31-O-desmethyl tacrolimus into intestinal lumen by ABC transporter",
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"31dmt_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
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"31DMTtu"
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},
"annotation":{
"bigg.reaction":[
"31DMTtu"
],
"sbo":"SBO:0000185"
}
},
{
"id":"31DMTtep",
"name":"Exit of 31-O-desmethyl tacrolimus into portal blood",
"metabolites":{
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"31dmt_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
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"subsystem":"Drug metabolism",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"31DMTtep"
],
"sbo":"SBO:0000185"
}
},
{
"id":"35DHPVShc",
"name":"Conversion of pravastatin to 3-alpha-5-beta-dihydroxy pravastatin in entercoytes",
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"h2o_r":2.0,
"h_r":-1.0,
"nadp_r":2.0,
"nadph_r":-2.0,
"o2_r":-2.0,
"pvs_r":-1.0
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"lower_bound":0.0,
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"subsystem":"Drug metabolism",
"notes":{
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]
},
"annotation":{
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"35DHPVShc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"35DHPVStep",
"name":"3-alpha-5-beta-dihydroxy pravastatin exit into portal blood",
"metabolites":{
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"35dhpvs_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
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"subsystem":"Drug metabolism",
"notes":{
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"35DHPVStep"
]
},
"annotation":{
"bigg.reaction":[
"35DHPVStep"
],
"sbo":"SBO:0000185"
}
},
{
"id":"6EPVShc",
"name":"Isomerization of pravastatin to 6-epi-pravastatin in hepatocytes",
"metabolites":{
"6epvs_c":1.0,
"pvs_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
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"6EPVShc"
]
},
"annotation":{
"bigg.reaction":[
"6EPVShc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"6HLVSTAChep",
"name":"Conversion of lactone form of 6-beta-hydroxy-lovastatin to acid form",
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"6hlvstacid_c":1.0,
"h2o_c":-1.0,
"h_c":1.0
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"subsystem":"Drug metabolism",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"6HLVSTAChep"
],
"sbo":"SBO:0000176"
}
},
{
"id":"6HLVSTthep",
"name":"Uptake of 6-beta-hydroxy-lovastatin by hepatocytes",
"metabolites":{
"6hlvst_c":1.0,
"6hlvst_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"6HLVSTthep"
],
"sbo":"SBO:0000185"
}
},
{
"id":"6HMSMVACIDhep",
"name":"Conversion of 6-beta-hydroxy-methyl simvastatin lactone to acid form",
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"6hmsmvacid_c":1.0,
"h2o_c":-1.0,
"h_c":1.0
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"lower_bound":0.0,
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"gene_reaction_rule":"5446_AT1",
"subsystem":"Drug metabolism",
"notes":{
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},
"annotation":{
"bigg.reaction":[
"6HMSMVACIDhep"
],
"sbo":"SBO:0000176"
}
},
{
"id":"35DHPVSthc",
"name":"Uptake of 3-alpha-5-beta-dihydroxy pravastatin by hepatocytes",
"metabolites":{
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"35dhpvs_e":-1.0,
"hco3_c":-1.0,
"hco3_e":1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10599_AT1 or 11309_AT1",
"subsystem":"Drug metabolism",
"notes":{
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]
},
"annotation":{
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"35DHPVSthc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"3HIBUPGLUC_Sthv",
"name":"Release of 3-hydroxy S-ibuprofen-glucuronide into hepatic vein",
"metabolites":{
"3hibupglu__S_c":-1.0,
"3hibupglu__S_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
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},
"annotation":{
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"3HIBUPGLUC_Sthv"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_glc__D_e",
"name":"D-Glucose exchange",
"metabolites":{
"glc__D_e":-1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_glc_D[e]"
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},
"annotation":{
"bigg.reaction":[
"EX_glc__D_e"
],
"biocyc":[
"META:TRANS-RXN0-574"
],
"metanetx.reaction":[
"MNXR100188"
],
"sabiork":[
"7002",
"601"
],
"sbo":"SBO:0000627",
"seed.reaction":[
"rxn09875",
"rxn09679",
"rxn08617"
]
}
},
{
"id":"3HIBUP_Rthv",
"name":"Release of R-3-hydroxy-ibuprofen into hepatic vein",
"metabolites":{
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"3hibup__R_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
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"subsystem":"Drug metabolism",
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"3HIBUP_Sthv",
"name":"Release of S-3-hydroxy-ibuprofen into hepatic vein",
"metabolites":{
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"6HMSMVhep",
"name":"Oxidation of 6-exomethylene simvastatin to 6-beta-hydroxy methyl simvastatin",
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"6msmv_r":-1.0,
"h2o2_r":1.0,
"h2o_r":-1.0,
"h_r":-1.0,
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"nadph_r":-1.0,
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"lower_bound":0.0,
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"subsystem":"Drug metabolism",
"notes":{
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]
},
"annotation":{
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"6HMSMVhep"
],
"sbo":"SBO:0000176"
}
},
{
"id":"6HSMVACIDhep",
"name":"Conversion of 6-beta-hydroxy simvastatin lactone to acid form",
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"6hsmvacid_c":1.0,
"h2o_c":-1.0,
"h_c":1.0
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"gene_reaction_rule":"5446_AT1",
"subsystem":"Drug metabolism",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"6MELACAChep",
"name":"Conversion of lactone form of 6-exomethylene-lovastatin to acid form",
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"6melvst_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0
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"lower_bound":0.0,
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"subsystem":"Drug metabolism",
"notes":{
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]
},
"annotation":{
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"6MELACAChep"
],
"sbo":"SBO:0000176"
}
},
{
"id":"6MELVSTthep",
"name":"Uptake of 6-exomethylene-lovastatin by hepatocytes",
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"6melvst_e":-1.0
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"3HLVSTACtbc",
"name":"Release of 3-hydroxy-lovastatin acid form into bile",
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},
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"sbo":"SBO:0000185"
}
},
{
"id":"6OHFVSGLUtev",
"name":"Exit of 6-hydroxy-fluvastatin-glucuronide into hepatic vein for excretion in urine",
"metabolites":{
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"6ohfvsglu_e":1.0
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"sbo":"SBO:0000185"
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},
{
"id":"12DHCHOLabc",
"name":"12-Dehydrocholic acid ABC bile acid transporter",
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"12dhchol_e":1.0,
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"atp_c":-1.0,
"h2o_c":-1.0,
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"subsystem":"Transport, extracellular",
"notes":{
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"annotation":{
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},
{
"id":"6OHFVShc",
"name":"Oxidation of fluvastatin to 6-hydroxy-fluvastatin in hepatocytes",
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"sbo":"SBO:0000176"
}
},
{
"id":"7AHGLZtev",
"name":"Excretion of 7-alpha-OH-gliclazide into hepatic vein",
"metabolites":{
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"7ahglz_e":1.0
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"upper_bound":1000.0,
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"7BHGLZABCt",
"name":"Excretion of 7-beta-OH-gliclazide into bile",
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"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"ATVLAChc",
"name":"Lactonization of atorvastatin in hepatocytes",
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"atp_c":-1.0,
"atvacid_c":-1.0,
"atvlac_c":1.0,
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"subsystem":"Drug metabolism",
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"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"ATVLACtdhc",
"name":"Passive diffusion of atorvastatin lactone into hepatocytes",
"metabolites":{
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"atvlac_e":-1.0
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"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"Am1CSAteb",
"name":"Efflux of AM1-cyclosporine into bile",
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"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"CARBIBUP_SGLUthv",
"name":"Release of S-carboxy ibuprofen glucuronide into hepatic vein",
"metabolites":{
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"caribupglu__S_e":1.0
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"lower_bound":-1000.0,
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"sbo":"SBO:0000185"
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},
{
"id":"CARIBUP_Rthv",
"name":"Release of R-carboxy ibuprofen into hepatic vein",
"metabolites":{
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"7BHGLZGLCABCt",
"name":"Excretion of 7-beta-OH-gliclazide-glucuronide into bile",
"metabolites":{
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"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"7BHGLZGLChr",
"name":"Glucuronidation of 7-beta-OH-gliclazide-glucuronide in hepatocytes",
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"h_r":1.0,
"udp_r":1.0,
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"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"7BHGLZGLCtev",
"name":"Excretion of 7-beta-OH-gliclazide-glucuronide into hepatic vein",
"metabolites":{
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},
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"sbo":"SBO:0000185"
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},
{
"id":"7HPVSteb",
"name":"Efflux of 7-hydroxy-3-alpha-iso-pravastatin into bile",
"metabolites":{
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"7hpvs_e":1.0,
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"subsystem":"Drug metabolism",
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"CRGLZABCt",
"name":"Excretion of carboxy-gliclazide into bile",
"metabolites":{
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"atp_c":-1.0,
"crglz_c":-1.0,
"crglz_e":1.0,
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"CRGLZhr",
"name":"Oxidation of methyl-hydroxy-gliclazide to carboxy-gliclazide in hepatocytes",
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"h2o_r":1.0,
"h_r":1.0,
"mhglz_r":-1.0,
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"lower_bound":0.0,
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"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
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},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"7HPVStev",
"name":"Exit of 7-hydroxy-3-alpha-iso-pravastatin into hepatic vein",
"metabolites":{
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"7hpvs_e":1.0
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"lower_bound":-1000.0,
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"ALLOP2tu",
"name":"Uptake of allopurinol by the enterocytes",
"metabolites":{
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"id":"CRVS1M24hc",
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{
"id":"ACMPtu",
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{
"id":"3DHCAS",
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{
"id":"ACMPGLUChr",
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{
"id":"ACMPGLUTdt",
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"id":"CRVS23M24hc",
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{
"id":"CRVSATPthc",
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"id":"CRVSM1hc",
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{
"id":"CRVSM22hc",
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{
"id":"ACMPGLUTthc",
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"id":"ACMPGLUthc",
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{
"id":"AM19CShr",
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{
"id":"AM19CSteb",
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{
"id":"AM1A4NCSteb",
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},
{
"id":"AM1ACCStev",
"name":"Efflux of AM1Ac-cyclosporine into hepatic vein",
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{
"id":"AM1ACShr",
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{
"id":"CRVSM23hc",
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{
"id":"CRVSM23hr",
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{
"id":"CRVSM23tev",
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{
"id":"CRVSM24teb",
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{
"id":"CRVSM31hc",
"name":"Spontaneous conversion of glucuronide to cerivastatin-M31 in hepatocytes",
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{
"id":"CSAtd",
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{
"id":"CVM1GLUChc",
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{
"id":"AM1ACSteb",
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{
"id":"AM1ALCShr",
"name":"Formation of AM1AL-cyclosporine in hepatocytes",
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{
"id":"AM1ALCSteb",
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{
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{
"id":"CYSAMPtev",
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{
"id":"AM1C4N9CShc",
"name":"Demethylation of AM1c9 to AM1c4N9 in hepatocytes (alternative mechanism)",
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},
{
"id":"DELACCRVSM23hc",
"name":"De-lactonization of cerivastatin-M31 to cerivastatin-M23 in hepatocytes",
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},
{
"id":"AM1C4N9CSteb",
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},
{
"id":"3DHCDCAS",
"name":"3-dehydro-chenodehydroxycholic acid formation",
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},
{
"id":"AM1C9CShr",
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{
"id":"AM1C9CSteb",
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},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"AM1C9CSteb"
]
},
"annotation":{
"bigg.reaction":[
"AM1C9CSteb"
],
"sbo":"SBO:0000185"
}
},
{
"id":"AM1C9CStev",
"name":"Efflux of AM1c9-cyclosporine into hepatic vein",
"metabolites":{
"am1c9cs_c":-1.0,
"am1c9cs_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"AM1C9CStev"
]
},
"annotation":{
"bigg.reaction":[
"AM1C9CStev"
],
"sbo":"SBO:0000185"
}
},
{
"id":"AM1CCShr",
"name":"Oxidation of cyclosporine to AM1c in hepatocytes",
"metabolites":{
"am1ccs_r":1.0,
"csa_r":-1.0,
"h2o_r":1.0,
"h_r":-1.0,
"nadp_r":1.0,
"nadph_r":-1.0,
"o2_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"AM1CCShr"
]
},
"annotation":{
"bigg.reaction":[
"AM1CCShr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"AM1CCSteb",
"name":"Efflux of AM1c-cyclosporine into bile",
"metabolites":{
"adp_c":1.0,
"am1ccs_c":-1.0,
"am1ccs_e":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"AM1CCSteb"
]
},
"annotation":{
"bigg.reaction":[
"AM1CCSteb"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DEOXFVShc",
"name":"Formation of deoxy-fluvastatin-dinor",
"metabolites":{
"accoa_x":1.0,
"coa_x":-1.0,
"deoxfvs_x":1.0,
"fvs_x":-1.0,
"h2o2_x":1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1 or 1962_AT1 or 3295_AT1 or 30_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"DEOXFVShc"
]
},
"annotation":{
"bigg.reaction":[
"DEOXFVShc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"DEOXFVStev",
"name":"Exit of deoxy-fluvastatin-dinor into hepatic vein for excretion in urine",
"metabolites":{
"deoxfvs_c":-1.0,
"deoxfvs_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"DEOXFVStev"
]
},
"annotation":{
"bigg.reaction":[
"DEOXFVStev"
],
"sbo":"SBO:0000185"
}
},
{
"id":"AM1CGLChr",
"name":"Glucuronidation of AM1c in hepatocytes",
"metabolites":{
"am1ccs_r":-1.0,
"am1cglc_r":1.0,
"h_r":1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"AM1CGLChr"
]
},
"annotation":{
"bigg.reaction":[
"AM1CGLChr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"3DHCHOLabc",
"name":"3-Dehydrocholic acid  ABC bile acid transporter",
"metabolites":{
"3dhchol_c":-1.0,
"3dhchol_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8647_AT1 or 8714_AT2 or 8714_AT1 or 1244_AT1 or 10257_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"3DHCHOLabc"
]
},
"annotation":{
"bigg.reaction":[
"3DHCHOLabc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"AM1CSAtep",
"name":"Efflux of AM1 (cyclosporine) into portal blood",
"metabolites":{
"am1csa_c":-1.0,
"am1csa_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"AM1CSAtep"
]
},
"annotation":{
"bigg.reaction":[
"AM1CSAtep"
],
"sbo":"SBO:0000185"
}
},
{
"id":"AM4N9CShc",
"name":"Demethylation of AM9 to AM4N9 in hepatocytes",
"metabolites":{
"ahcys_c":-1.0,
"am4n9cs_c":1.0,
"am9csa_c":-1.0,
"amet_c":1.0,
"h_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"AM4N9CShc"
]
},
"annotation":{
"bigg.reaction":[
"AM4N9CShc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"AM4N9CStev",
"name":"Efflux of AM4N9-cyclosporine into hepatic vein",
"metabolites":{
"am4n9cs_c":-1.0,
"am4n9cs_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"AM4N9CStev"
]
},
"annotation":{
"bigg.reaction":[
"AM4N9CStev"
],
"sbo":"SBO:0000185"
}
},
{
"id":"AM4NC9CSteb",
"name":"Efflux of AM4N9-cyclosporine into bile",
"metabolites":{
"adp_c":1.0,
"am4n9cs_c":-1.0,
"am4n9cs_e":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"AM4NC9CSteb"
]
},
"annotation":{
"bigg.reaction":[
"AM4NC9CSteb"
],
"sbo":"SBO:0000185"
}
},
{
"id":"AM4NCShr",
"name":"Demethylation of cyclosporine to AM4N in hepatocytes",
"metabolites":{
"ahcys_c":-1.0,
"am4ncs_c":1.0,
"amet_c":1.0,
"csa_c":-1.0,
"h_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"AM4NCShr"
]
},
"annotation":{
"bigg.reaction":[
"AM4NCShr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"AM4NCSteb",
"name":"Efflux of AM4N-cyclosporine into bile",
"metabolites":{
"adp_c":1.0,
"am4ncs_c":-1.0,
"am4ncs_e":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"AM4NCSteb"
]
},
"annotation":{
"bigg.reaction":[
"AM4NCSteb"
],
"sbo":"SBO:0000185"
}
},
{
"id":"AM4NCStep",
"name":"Efflux of AM4N (cyclosporine) into portal blood",
"metabolites":{
"am4ncs_c":-1.0,
"am4ncs_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"AM4NCStep"
]
},
"annotation":{
"bigg.reaction":[
"AM4NCStep"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ATVACIDOATPtu",
"name":"Uptake of atorvastatin by enterocytes",
"metabolites":{
"atvacid_c":1.0,
"atvacid_e":-1.0,
"hco3_c":-1.0,
"hco3_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11309_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"ATVACIDOATPtu"
]
},
"annotation":{
"bigg.reaction":[
"ATVACIDOATPtu"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ATVACIDtdu",
"name":"Passive diffusion of atorvastatin into enterocytes",
"metabolites":{
"atvacid_c":1.0,
"atvacid_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"ATVACIDtdu"
]
},
"annotation":{
"bigg.reaction":[
"ATVACIDtdu"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ATVACIDtu",
"name":"Efflux of atorvastatin acid by P-gp from the enterocytes into lumen",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"atvacid_c":-1.0,
"atvacid_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5243_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"ATVACIDtu"
]
},
"annotation":{
"bigg.reaction":[
"ATVACIDtu"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ATVLACGLCURhc",
"name":"Glucuronidation of atorvastatin lactone to atorvastain lactone ether glucuronide (G3) in hepatocytes",
"metabolites":{
"atvlac_r":-1.0,
"atvlacgluc_r":1.0,
"h_r":1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"54659_AT1 or 54657_AT1 or 54658_AT1 or 54576_AT1 or 7364_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"ATVLACGLCURhc"
]
},
"annotation":{
"bigg.reaction":[
"ATVLACGLCURhc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_3hlvstacid_e",
"name":"Exchange reaction for 3-hydroxy-lovastatin acid form in bile",
"metabolites":{
"3hlvstacid_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_3hlvstacid[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_3hlvstacid_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_3hpvs_e",
"name":"Exchange reaction for 3-hydroxy pravastatin in portal blood",
"metabolites":{
"3hpvs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_3hpvs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_3hpvs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"DESFVSteb",
"name":"Efflux of N-desisopropyl-fluvastatin into bile for excretion into faeces",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"desfvs_c":-1.0,
"desfvs_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"DESFVSteb"
]
},
"annotation":{
"bigg.reaction":[
"DESFVSteb"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DHGLZABCt",
"name":"Excretion of dehydro-gliclazide into bile",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"dhglz_c":-1.0,
"dhglz_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"DHGLZABCt"
]
},
"annotation":{
"bigg.reaction":[
"DHGLZABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DHGLZhc",
"name":"Dehydrogenation of gliclazide to dehydro-gliclazide in hepatocytes",
"metabolites":{
"dhglz_c":1.0,
"glz_c":-1.0,
"h_c":1.0,
"nadp_c":-1.0,
"nadph_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"DHGLZhc"
]
},
"annotation":{
"bigg.reaction":[
"DHGLZhc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"DSPVSteb",
"name":"Efflux of desacyl dehydro-pravastatin into bile",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"dspvs_c":-1.0,
"dspvs_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1244_AT1 or 9429_AT1 or 8647_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"DSPVSteb"
]
},
"annotation":{
"bigg.reaction":[
"DSPVSteb"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EPOXTACteb",
"name":"Efflux of 31-O-Desmethyl,19-Hydroxy,37, 39-Epoxy-tacrolimus into bile",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"epoxtac_c":-1.0,
"epoxtac_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"EPOXTACteb"
]
},
"annotation":{
"bigg.reaction":[
"EPOXTACteb"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EPOXTACtev",
"name":"Exit of 31-O-Desmethyl,19-Hydroxy,37, 39-Epoxy-tacrolimus into hepatic vein",
"metabolites":{
"epoxtac_c":-1.0,
"epoxtac_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"EPOXTACtev"
]
},
"annotation":{
"bigg.reaction":[
"EPOXTACtev"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_13dmt_e",
"name":"Exchange reaction for 13-O-desmethyl tacrolimus in intestinal lumen",
"metabolites":{
"13dmt_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_13dmt[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_13dmt_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_1513tacr_e",
"name":"Exchange reaction for 13,15-O-didesmethyl tacrolimus in intestinal lumen",
"metabolites":{
"1513tacr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_1513tacr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_1513tacr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_1hibupglu__S_e",
"name":"Exchange reaction for 1-hydroxy S-ibuprofen-glucuronide in hepatic vein",
"metabolites":{
"1hibupglu__S_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_1hibupglu_S[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_1hibupglu__S_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_2hatvacidgluc_e",
"name":"Exchange reaction for 2-hydroxy-atorvastatin-acyl-glucuronide in bile",
"metabolites":{
"2hatvacidgluc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_2hatvacidgluc[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_2hatvacidgluc_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_2hibupglu__S_e",
"name":"Exchange reaction for 2-hydroxy S-ibuprofen-glucuronide in hepatic vein",
"metabolites":{
"2hibupglu__S_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_2hibupglu_S[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_2hibupglu__S_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_31dmt_e",
"name":"Exchange reaction for 31-O-desmethyl tacrolimus in intestinal lumen",
"metabolites":{
"31dmt_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_31dmt[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_31dmt_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_35dsmv_e",
"name":"Exchange reaction for 3,5-dihydrodiol-simvastatin-lactone form in bile",
"metabolites":{
"35dsmv_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_35dsmv[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_35dsmv_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_3hibup__R_e",
"name":"Exchange reaction for R-3-hydroxy-ibuprofen in hepatic vein",
"metabolites":{
"3hibup__R_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_3hibup_R[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_3hibup__R_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_3ohacmp_e",
"name":"Exchange reaction for 3-OH-acetaminophen in hepatic vein",
"metabolites":{
"3ohacmp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_3ohacmp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_3ohacmp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_4hatvacid_e",
"name":"Exchange reaction for 4-hydroxy-atorvastatin-acid in portal blood",
"metabolites":{
"4hatvacid_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_4hatvacid[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_4hatvacid_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_4hmdgluc_e",
"name":"Exchange reaction for 4-OH-midazolam-glucuronide in hepatic vein",
"metabolites":{
"4hmdgluc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_4hmdgluc[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_4hmdgluc_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_56dhpvs_e",
"name":"Exchange reaction of 3-keto-5,6,-dihydroxy-pravastatin in hepatic vein",
"metabolites":{
"56dhpvs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_56dhpvs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_56dhpvs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"3DHCHOLt",
"name":"3-Dehydrocholic acid  transport via bicarbonate countertransport",
"metabolites":{
"3dhchol_c":1.0,
"3dhchol_e":-1.0,
"hco3_c":-1.0,
"hco3_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28234_AT1 or 10599_AT1 or 123264_AT1 or 200931_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"3DHCHOLt"
]
},
"annotation":{
"bigg.reaction":[
"3DHCHOLt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_5ohfvs_e",
"name":"Exchnage reaction for 5-hydroxy-fluvastatin in bile",
"metabolites":{
"5ohfvs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_5ohfvs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_5ohfvs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_6epvs_e",
"name":"Exchange reaction for 6-epi-pravastatin in portal blood",
"metabolites":{
"6epvs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_6epvs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_6epvs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_lvst_e",
"name":"Exchange reaction for lovastatin in intestinal lumen",
"metabolites":{
"lvst_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lvst[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lvst_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_meracmp_e",
"name":"Exchange reaction for acetaminophen-mercapturate-conjugate in portal blood",
"metabolites":{
"meracmp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_meracmp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_meracmp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_nfdac_e",
"name":"Exchange reaction of acid metabolite of nifedipine in portal vein",
"metabolites":{
"nfdac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_nfdac[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_nfdac_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_oxyp_e",
"name":"Exchange reaction for oxypurinol in portal blood",
"metabolites":{
"oxyp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_oxyp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_oxyp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_ptvstm3_e",
"name":"Exchange reaction for pitavastatin-M3 in bile",
"metabolites":{
"ptvstm3_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ptvstm3[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ptvstm3_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_6hmsmvacid_e",
"name":"Exchange reaction for6-beta-hydroxy-methyl-simvastatin-acid form in bile",
"metabolites":{
"6hmsmvacid_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_6hmsmvacid[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_6hmsmvacid_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_6ohfvs_e",
"name":"Exchnage reaction for 6-hydroxy-fluvastatin in bile",
"metabolites":{
"6ohfvs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_6ohfvs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_6ohfvs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_7ahglz_e",
"name":"Exchange reaction for 7-alpha-OH-gliclazide in hepatic vein",
"metabolites":{
"7ahglz_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_7ahglz[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_7ahglz_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_7bhglz_e",
"name":"Exchange reaction for 7-beta-OH-gliclazide in hepatic vein",
"metabolites":{
"7bhglz_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_7bhglz[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_7bhglz_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_7hpvs_e",
"name":"Exchange reaction of 7-hydroxy-3-alpha-iso-pravastatin in hepatic vein",
"metabolites":{
"7hpvs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_7hpvs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_7hpvs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_acmpglut_e",
"name":"Exchange reaction for acetaminophen-glutathione-conjugate in intestinal lumen",
"metabolites":{
"acmpglut_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_acmpglut[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_acmpglut_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_am19cs_e",
"name":"Exchange reaction for AM19-cyclosporine in hepatic vein",
"metabolites":{
"am19cs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_am19cs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_am19cs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pvs_e",
"name":"Exchange reaction for pravastatin in intestinal lumen",
"metabolites":{
"pvs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pvs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pvs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pvsgluc_e",
"name":"Exchange reaction of pravastatin glucuronide in hepatic vein",
"metabolites":{
"pvsgluc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pvsgluc[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pvsgluc_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_smv_e",
"name":"Exchange reaction for simvastatin in intestinal lumen",
"metabolites":{
"smv_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_smv[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_smv_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_smvacid_e",
"name":"Exchange reaction for simvastatin dihydroxy acid form in hepatic vein",
"metabolites":{
"smvacid_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_smvacid[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_smvacid_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"3DHCHOLt2",
"name":"3-Dehydrocholic acid  transport via sodium cotransport",
"metabolites":{
"3dhchol_c":1.0,
"3dhchol_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6554_AT1 or 6555_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"3DHCHOLt2"
]
},
"annotation":{
"bigg.reaction":[
"3DHCHOLt2"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_sulpacmp_e",
"name":"Exchange reaction for acetaminophen-sulphate in hepatic vein",
"metabolites":{
"sulpacmp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_sulpacmp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_sulpacmp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tacr_e",
"name":"Exchange reaction for tacrolimus in intestinal lumen",
"metabolites":{
"tacr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tacr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tacr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_thrfvs_e",
"name":"Exchange reaction for threo-isomer of fluvastain in hepatic vein",
"metabolites":{
"thrfvs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_thrfvs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_thrfvs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"3DHDCAabc",
"name":"3-dehydro-deoxycholic acid ABC bile acid transporter",
"metabolites":{
"3dhdchol_c":-1.0,
"3dhdchol_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8647_AT1 or 8714_AT2 or 8714_AT1 or 1244_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"3DHDCAabc"
]
},
"annotation":{
"bigg.reaction":[
"3DHDCAabc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_tmd_e",
"name":"Exchange reaction for torasemide in intestinal lumen",
"metabolites":{
"tmd_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tmd[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tmd_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tmdm1_e",
"name":"Exchange reaction for Torasemide-M1 in hepatic vein",
"metabolites":{
"tmdm1_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tmdm1[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tmdm1_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tmdm3_e",
"name":"Exchange reaction for Torasemide-M3 in hepatic vein",
"metabolites":{
"tmdm3_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tmdm3[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tmdm3_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_am1alcs_e",
"name":"Exchange reaction for AM1AL (cyclosporine) in portal blood",
"metabolites":{
"am1alcs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_am1alcs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_am1alcs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_am1c4n9cs_e",
"name":"Exchange reaction for AM1c4N9-cyclosporine in bile",
"metabolites":{
"am1c4n9cs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_am1c4n9cs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_am1c4n9cs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_am1cglc_e",
"name":"Exchange reaction for AM1c-glucuronide in bile",
"metabolites":{
"am1cglc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_am1cglc[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_am1cglc_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_am1csa_e",
"name":"Exchange reaction for AM1 (cyclosporine) in portal blood",
"metabolites":{
"am1csa_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_am1csa[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_am1csa_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tripvs_e",
"name":"Exchange reaction of triol metabolite of pravastatin in hepatic vein",
"metabolites":{
"tripvs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tripvs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tripvs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_am4ncs_e",
"name":"Exchange reaction for AM4N (cyclosporine) in portal blood",
"metabolites":{
"am4ncs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_am4ncs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_am4ncs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_am9csa_e",
"name":"Exchange reaction for AM9 (cyclosporine) in portal blood",
"metabolites":{
"am9csa_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_am9csa[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_am9csa_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"FVSGLUChc",
"name":"Glucuronidation of fluvastatin",
"metabolites":{
"fvs_r":-1.0,
"fvsgluc_r":1.0,
"h_r":1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"FVSGLUChc"
]
},
"annotation":{
"bigg.reaction":[
"FVSGLUChc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_atvacid_e",
"name":"Exchange reaction for atorvastatin in intestinal lumen",
"metabolites":{
"atvacid_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_atvacid[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_atvacid_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"FVSTETGLUhc",
"name":"Glucuronidation of des-isopropyl-dihydro-fluvastatin-tetranor",
"metabolites":{
"fvstet_r":-1.0,
"fvstetglu_r":1.0,
"h_r":1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"FVSTETGLUhc"
]
},
"annotation":{
"bigg.reaction":[
"FVSTETGLUhc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_caribup__R_e",
"name":"Exchange reaction for R-carboxy ibuprofen in hepatic vein",
"metabolites":{
"caribup__R_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_caribup_R[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_caribup__R_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"FVSTETGLUtev",
"name":"Exit of des-isopropyl-dihydro-fluvastatin-tetranor-glucuronide into hepatic vein for excretion in urine",
"metabolites":{
"fvstetglu_c":-1.0,
"fvstetglu_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"FVSTETGLUtev"
]
},
"annotation":{
"bigg.reaction":[
"FVSTETGLUtev"
],
"sbo":"SBO:0000185"
}
},
{
"id":"FVSTETtev",
"name":"Exit of des-isopropyl-dihydro-fluvastatin-tetranor into hepatic vein for excretion in urine",
"metabolites":{
"fvstet_c":-1.0,
"fvstet_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"FVSTETtev"
]
},
"annotation":{
"bigg.reaction":[
"FVSTETtev"
],
"sbo":"SBO:0000185"
}
},
{
"id":"FVShc",
"name":"Hydrolysis of lactone to fluvastatin in hepatocytes",
"metabolites":{
"fvs_r":1.0,
"h2o_r":-1.0,
"tlacfvs_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"FVShc"
]
},
"annotation":{
"bigg.reaction":[
"FVShc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FVStep",
"name":"Efflux of fluvastatin from enterocytes into portal blood",
"metabolites":{
"fvs_c":-1.0,
"fvs_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"FVStep"
]
},
"annotation":{
"bigg.reaction":[
"FVStep"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLZABCteb",
"name":"Excretion of gliclazide into bile",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"glz_c":-1.0,
"glz_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"GLZABCteb"
]
},
"annotation":{
"bigg.reaction":[
"GLZABCteb"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_crvs_e",
"name":"Exchange reaction for cerivastatin in intestinal lumen",
"metabolites":{
"crvs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_crvs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_crvs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_crvsm24_e",
"name":"Exchange reaction for cerivastatin-M24 in hepatic vein",
"metabolites":{
"crvsm24_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_crvsm24[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_crvsm24_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_csa_e",
"name":"Exchange reaction for cyclosporine in intestinal lumen",
"metabolites":{
"csa_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_csa[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_csa_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_dhglz_e",
"name":"Exchange reaction for dehydro-gliclazide in hepatic vein",
"metabolites":{
"dhglz_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_dhglz[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_dhglz_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_dspvs_e",
"name":"Exchange reaction of desacyl dehydro-pravastatin in hepatic vein",
"metabolites":{
"dspvs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_dspvs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_dspvs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_epoxtac_e",
"name":"Exchange reaction for 31-O-Desmethyl,19-Hydroxy,37, 39-Epoxy-tacrolimus in hepatic vein",
"metabolites":{
"epoxtac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_epoxtac[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_epoxtac_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"GTACMPhr",
"name":"Glucuronidation of thiomethyl-acetaminophen conjugate in hepatocytes",
"metabolites":{
"gtacmp_r":1.0,
"h_r":1.0,
"tmacmp_r":-1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"GTACMPhr"
]
},
"annotation":{
"bigg.reaction":[
"GTACMPhr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GTACMPtev",
"name":"Efflux of glucuronide-thiomethyl-acetaminophen conjugate into hepatic vein",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"gtacmp_c":-1.0,
"gtacmp_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"GTACMPtev"
]
},
"annotation":{
"bigg.reaction":[
"GTACMPtev"
],
"sbo":"SBO:0000185"
}
},
{
"id":"IBUPGT_HEP",
"name":"Glucuronidation of ibuprofen in hepatocytes",
"metabolites":{
"ibup__S_r":-1.0,
"ibupgluc_r":1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"54659_AT1 or 54600_AT1 or 7364_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"IBUPGT_HEP"
]
},
"annotation":{
"bigg.reaction":[
"IBUPGT_HEP"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_fvs_e",
"name":"Exchange reaction for fluvastatin in intestinal lumen",
"metabolites":{
"fvs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_fvs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_fvs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"3DHDCAt2",
"name":"3-dehydro-deoxycholic acid transport via sodium cotransport",
"metabolites":{
"3dhdchol_c":1.0,
"3dhdchol_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6554_AT1 or 6555_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"3DHDCAt2"
]
},
"annotation":{
"bigg.reaction":[
"3DHDCAt2"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_fvstetglu_e",
"name":"Exchange reaction for des-isopropyl-dihydro-fluvastatin-tetranor-glucuronide in hepatic vein",
"metabolites":{
"fvstetglu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_fvstetglu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_fvstetglu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_glc3meacp_e",
"name":"Exchange reaction for glucuronide-conjugate of 3-methoxy-acetaminophen in hepatic vein",
"metabolites":{
"glc3meacp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_glc3meacp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_glc3meacp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_glz_e",
"name":"Exchange reaction for gliclazide in intestinal lumen",
"metabolites":{
"glz_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_glz[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_glz_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_gtacmp_e",
"name":"Exchange reaction for glucuronide-thiomethyl-acetaminophen conjugate in hepatic vein",
"metabolites":{
"gtacmp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_gtacmp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_gtacmp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_ibup__R_e",
"name":"Exchange reaction for ibuprofen R in intestinal lumen",
"metabolites":{
"ibup__R_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ibup_R[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ibup__R_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"IBUP_RCYP2hep",
"name":"Oxidation of R-ibuprofen to 2-hydroxy-ibuprofen in heaptocytes",
"metabolites":{
"2hibup__R_r":1.0,
"h2o_r":1.0,
"h_r":-1.0,
"ibup__R_r":-1.0,
"nadp_r":1.0,
"nadph_r":-1.0,
"o2_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1559_AT1 or 1558_AT1 or 1576_AT1 or 1557_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"IBUP_RCYP2hep"
]
},
"annotation":{
"bigg.reaction":[
"IBUP_RCYP2hep"
],
"sbo":"SBO:0000176"
}
},
{
"id":"IBUP_RCYPCARhep",
"name":"Oxidation of R-3-hydroxy ibuprofen to R-carboxy ibuprofen",
"metabolites":{
"3hibup__R_c":-1.0,
"caribup__R_c":1.0,
"h2o_c":1.0,
"h_c":1.0,
"o2_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1559_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"IBUP_RCYPCARhep"
]
},
"annotation":{
"bigg.reaction":[
"IBUP_RCYPCARhep"
],
"sbo":"SBO:0000176"
}
},
{
"id":"IBUP_Rtdu",
"name":"Passive diffusion of ibuprofen R",
"metabolites":{
"ibup__R_c":1.0,
"ibup__R_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"IBUP_Rtdu"
]
},
"annotation":{
"bigg.reaction":[
"IBUP_Rtdu"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_ibupgluc_e",
"name":"Exchange reaction for ibuprofen acyl glucuronide in portal blood",
"metabolites":{
"ibupgluc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ibupgluc[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ibupgluc_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_isolvstacid_e",
"name":"Exchange reaction for 3-hydroxy-iso-delta-4,5-hydroxy acid form of lovastatin in bile",
"metabolites":{
"isolvstacid_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_isolvstacid[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_isolvstacid_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_lst4exp_e",
"name":"Exchange reaction for Losartan-E3174 in portal blood",
"metabolites":{
"lst4exp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lst4exp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lst4exp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"IBUP_SCONJhep",
"name":"Taurine conjugation of S-ibuprofen",
"metabolites":{
"coa_c":1.0,
"h_c":1.0,
"ibupcoa__S_c":-1.0,
"taur_c":-1.0,
"tauribup__S_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"IBUP_SCONJhep"
]
},
"annotation":{
"bigg.reaction":[
"IBUP_SCONJhep"
],
"sbo":"SBO:0000176"
}
},
{
"id":"IBUP_SCYP1hep",
"name":"Oxidation of S-ibuprofen to 1-hydroxy ibuprofen",
"metabolites":{
"1hibup__S_r":1.0,
"h2o_r":1.0,
"h_r":-1.0,
"ibup__S_r":-1.0,
"nadp_r":1.0,
"nadph_r":-1.0,
"o2_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1559_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"IBUP_SCYP1hep"
]
},
"annotation":{
"bigg.reaction":[
"IBUP_SCYP1hep"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_lstn_e",
"name":"Exchange reaction for losartan in intestinal lumen",
"metabolites":{
"lstn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lstn[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lstn_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_lstnm1_e",
"name":"Exchange reaction for Losartan-M1 in hepatic vein",
"metabolites":{
"lstnm1_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lstnm1[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lstnm1_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"IBUP_SCYP2hep",
"name":"Oxidation of S-ibuprofen to 2-hydroxy-ibuprofen in heaptocytes",
"metabolites":{
"2hibup__S_r":1.0,
"h2o_r":1.0,
"h_r":-1.0,
"ibup__S_r":-1.0,
"nadp_r":1.0,
"nadph_r":-1.0,
"o2_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1559_AT1 or 1558_AT1 or 1576_AT1 or 1557_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"IBUP_SCYP2hep"
]
},
"annotation":{
"bigg.reaction":[
"IBUP_SCYP2hep"
],
"sbo":"SBO:0000176"
}
},
{
"id":"3DHLCAabc",
"name":"3-dehydro-lithocholic acid ABC bile acid transporter",
"metabolites":{
"3dhlchol_c":-1.0,
"3dhlchol_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8647_AT1 or 8714_AT2 or 8714_AT1 or 1244_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"3DHLCAabc"
]
},
"annotation":{
"bigg.reaction":[
"3DHLCAabc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"IBUP_SCYPCARhep",
"name":"Oxidation of S-3-hydroxy ibuprofen to S-carboxy ibuprofen",
"metabolites":{
"3hibup__S_c":-1.0,
"caribup_s_c":1.0,
"h2o_c":1.0,
"h_c":1.0,
"o2_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1559_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"IBUP_SCYPCARhep"
]
},
"annotation":{
"bigg.reaction":[
"IBUP_SCYPCARhep"
],
"sbo":"SBO:0000176"
}
},
{
"id":"IBUP_Stbc",
"name":"Biliary excretion of ibuprofen from hepatocytes",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"ibup__S_c":-1.0,
"ibup__S_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"IBUP_Stbc"
]
},
"annotation":{
"bigg.reaction":[
"IBUP_Stbc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ISOLVSTAChep",
"name":"Acid catalyzed rearrangement of 6-beta-hydroxy-lovastatin-acid form",
"metabolites":{
"6hlvstacid_c":-1.0,
"isolvstacid_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"ISOLVSTAChep"
]
},
"annotation":{
"bigg.reaction":[
"ISOLVSTAChep"
],
"sbo":"SBO:0000176"
}
},
{
"id":"ISOLVSTtbc",
"name":"Release of 3-hydroxy-iso-delta-4,5-hydroxy acid form of lovastatin into bile",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"isolvstacid_c":-1.0,
"isolvstacid_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5243_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"ISOLVSTtbc"
]
},
"annotation":{
"bigg.reaction":[
"ISOLVSTtbc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LST4EXPTDhc",
"name":"Uptake of Losartan-E3174 into hepatocytes via diffusion",
"metabolites":{
"lst4exp_c":1.0,
"lst4exp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"LST4EXPTDhc"
]
},
"annotation":{
"bigg.reaction":[
"LST4EXPTDhc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LST4EXPthc",
"name":"Uptake of Losartan-E3174 into hepatocytes",
"metabolites":{
"cl_c":-1.0,
"cl_e":1.0,
"lst4exp_c":1.0,
"lst4exp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"LST4EXPthc"
]
},
"annotation":{
"bigg.reaction":[
"LST4EXPthc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LSTN1GLUCtev",
"name":"Efflux of Losartan-N1-glucuronide into hepatic vein",
"metabolites":{
"lstn1gluc_c":-1.0,
"lstn1gluc_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"LSTN1GLUCtev"
]
},
"annotation":{
"bigg.reaction":[
"LSTN1GLUCtev"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LSTNtu",
"name":"Efflux of losartan by P-gp from the enterocytes into lumen",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"lstn_c":-1.0,
"lstn_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5243_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"LSTNtu"
]
},
"annotation":{
"bigg.reaction":[
"LSTNtu"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LSTNM1hr",
"name":"Oxidation of losartan to Losartan-M1 in hepatocytes",
"metabolites":{
"h2o_r":1.0,
"h_r":-1.0,
"lstn_r":-1.0,
"lstnm1_r":1.0,
"nadp_r":1.0,
"nadph_r":-1.0,
"o2_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1559_AT1 or 1576_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"LSTNM1hr"
]
},
"annotation":{
"bigg.reaction":[
"LSTNM1hr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LSTNM1tev",
"name":"Efflux of Losartan-M1 into hepatic vein",
"metabolites":{
"lstnm1_c":-1.0,
"lstnm1_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"LSTNM1tev"
]
},
"annotation":{
"bigg.reaction":[
"LSTNM1tev"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PVStep",
"name":"Pravastatin exit into portal blood",
"metabolites":{
"pvs_c":-1.0,
"pvs_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"PVStep"
]
},
"annotation":{
"bigg.reaction":[
"PVStep"
],
"sbo":"SBO:0000185"
}
},
{
"id":"RSVATPtu",
"name":"Efflux of rosuvastatin by BCRP from the enterocytes into lumen",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
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},
"annotation":{
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],
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}
},
{
"id":"RSVLAChv",
"name":"Spontaneous conversion to rosuvastatin-5S-lactone in hepatocytes",
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}
},
{
"id":"LSTNM2hr",
"name":"Oxidation of losartan to Losartan-M2 in hepatocytes",
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}
},
{
"id":"LSTNM2tev",
"name":"Efflux of Losartan-M2 into hepatic vein",
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],
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}
},
{
"id":"RSVSPONhc",
"name":"Conversion of lactone to open acid form of rosuvastatin",
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],
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}
},
{
"id":"RSVhc",
"name":"Beta-glucuronidase of rosuvastatin-glucuronide in hepatocytes",
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}
},
{
"id":"LSTNM4hr",
"name":"Glucuronidation of losartan-M6 to losartan-M4 in hepatocytes",
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],
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}
},
{
"id":"LSTNM4tev",
"name":"Efflux of Losartan-M4 (glucuronide derivative) into hepatic vein",
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}
},
{
"id":"RSVtu",
"name":"Uptake of rosuvastatin by enterocytes",
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}
},
{
"id":"S3MEACMPhc",
"name":"Sulphation of 3-methoxy-acetaminophen in hepatocytes",
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"ahcys_c":-1.0,
"amet_c":1.0,
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"paps_c":-1.0,
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}
},
{
"id":"LSTNM5hr",
"name":"Oxidation of losartan to Losartan-M5 in hepatocytes",
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}
},
{
"id":"S3MEACMPtev",
"name":"Efflux of sulphate-conjugate-3-methoxy-acetaminophen into hepatic vein",
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}
},
{
"id":"LSTNM5tev",
"name":"Efflux of Losartan-M5 into hepatic vein",
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}
},
{
"id":"SMVACIDhep",
"name":"Beta-glucuronidation of simvastatin-acyl-glucuronide to simvastatin dihydroxy acid form",
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"annotation":{
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],
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}
},
{
"id":"LSTNM7thc",
"name":"Uptake of Losartan-N2-glucuronide / Losartan-M7 into hepatocytes",
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"cl_e":1.0,
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],
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}
},
{
"id":"SMVtu",
"name":"Efflux of simvastatin by P-gp from the enterocytes into lumen",
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"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"LSTNRATt",
"name":"Uptake of losartan via antiport into enterocytes",
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"cl_e":1.0,
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"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"3DHLCAS",
"name":"3-dehydro-lithocholic acid formation",
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"h2o_c":2.0,
"h_c":-1.0,
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},
"annotation":{
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},
{
"id":"LVACLAChep",
"name":"Reconversion of open acid form to lactone form of lovastatin",
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},
{
"id":"LVSTACIDhep",
"name":"Conversion of pro-durg lovastatin to active hydroxyacid form in hepatocytes",
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},
{
"id":"SMVLAChep",
"name":"Conversion of open acid form to lactone form of simvastatin",
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},
{
"id":"SMVtv",
"name":"Uptake of simvastatin by enterocytes",
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},
{
"id":"SULPACMPtev",
"name":"Efflux of acetaminophen-sulphate into hepatic vein",
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},
{
"id":"THRFVStev",
"name":"Exit of threo-isomer of fluvastain into hepatic vein for excretion in urine",
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"annotation":{
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"sbo":"SBO:0000185"
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},
{
"id":"TLACFVStev",
"name":"Exit of trans-lactone-fluvastatin into hepatic vein for excretion in urine",
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},
{
"id":"TMDM1OATt",
"name":"Efflux of Torasemide-M1 into hepatic vein",
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"sbo":"SBO:0000185"
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},
{
"id":"TMDM1hr",
"name":"Tolyl methylhydroxylation of torasemide in hepatocytes",
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},
{
"id":"TMDM3OATt",
"name":"Efflux of Torasemide-M3 into hepatic vein",
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},
{
"id":"LVSTACOXD6MEhep",
"name":"Hydroxylation of lovastatin-hydroxyacid form to 6-beta-hydroxy-lovastatin-acid form",
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{
"id":"LVSTOXD3Hhep",
"name":"Oxidation of lovastatin to 3-hydroxy-lovastatin in hepatocytes",
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},
{
"id":"LVSTOXD6Hhep",
"name":"Oxidation of lovastatin to 6-beta-hydroxy-lovastatin in hepatocytes",
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},
{
"id":"MDZtu",
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},
{
"id":"MERACMPthc",
"name":"Uptake of acetaminophen-mercapturate-conjugate by the hepatocytes",
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},
{
"id":"MHGLZhr",
"name":"Oxidation of gliclazide to methyl-hydroxy-gliclazide in hepatocytes",
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},
{
"id":"NDERSVhc",
"name":"Demethylation of rosuvastatin in hepatocytes",
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},
{
"id":"NFDDMEThr",
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"nfdnpy_r":-1.0
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},
{
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]
},
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}
},
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},
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},
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"crn_m":1.0
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},
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},
{
"id":"ADRNLPVESSEC_1",
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"adrnl_c":-1.0,
"adrnl_e":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
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},
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},
{
"id":"ADRNt",
"name":"Fatty acid transport via diffusion",
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"adrn_e":-1.0
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"upper_bound":1000.0,
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},
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}
},
{
"id":"ADSK",
"name":"Adenylyl-sulfate kinase",
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"aps_c":-1.0,
"atp_c":-1.0,
"h_c":1.0,
"paps_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"9060_AT1 or 9061_AT1",
"subsystem":"Nucleotide interconversion",
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},
"annotation":{
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],
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"kegg.reaction":[
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"metanetx.reaction":[
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"R-CFA-174389",
"R-DRE-174389",
"R-HSA-174389",
"R-SCE-174389",
"R-XTR-174389",
"R-TGU-174389",
"R-SPO-174389",
"R-CEL-174389",
"R-RNO-174389",
"R-ATH-174389",
"R-MMU-174389",
"R-SSC-174389",
"R-OSA-174389",
"R-DME-174389",
"R-BTA-174389"
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"rhea":[
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"24152",
"24154",
"24153"
],
"sabiork":[
"237"
],
"sbo":"SBO:0000176",
"seed.reaction":[
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]
}
},
{
"id":"ADSL1r",
"name":"Adenylsuccinate lyase",
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"dcamp_c":-1.0,
"fum_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"158_AT1 or 158_AT2",
"subsystem":"Nucleotide interconversion",
"notes":{
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},
"annotation":{
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],
"biocyc":[
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"kegg.reaction":[
"R01083"
],
"metanetx.reaction":[
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"reactome.reaction":[
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"R-CEL-73828",
"R-DME-73828",
"R-PFA-73828",
"R-OSA-73828",
"R-RNO-73828",
"R-TGU-73828",
"R-ATH-73828",
"R-XTR-73828",
"R-MMU-73828",
"R-BTA-73828",
"R-SCE-73828",
"R-DRE-73828",
"R-GGA-73828",
"R-HSA-73828",
"R-SPO-73828",
"R-SSC-73828",
"R-DDI-73828"
],
"rhea":[
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"16853",
"16856",
"16855"
],
"sabiork":[
"306"
],
"sbo":"SBO:0000176",
"seed.reaction":[
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]
}
},
{
"id":"AFLATOXINte",
"name":"Xenobiotic transport",
"metabolites":{
"aflatoxin_c":1.0,
"aflatoxin_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"AFLATOXINte"
]
},
"annotation":{
"bigg.reaction":[
"AFLATOXINte"
],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
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"name":"N-acetyllactosaminide beta-1,3-N-acetylglucosaminyltransferase, Golgi apparatus",
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"ksii_core4_pre4_g":-1.0,
"ksii_core4_pre5_g":1.0,
"uacgam_g":-1.0,
"udp_g":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10678_AT2 or 11041_AT1 or 10678_AT1 or 374907_AT2 or 93010_AT1 or 374907_AT1 or 146712_AT1 or 79369_AT1 or 10331_AT1",
"subsystem":"Keratan sulfate synthesis",
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},
"annotation":{
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"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"AG13T1g",
"name":"N-acetyllactosaminide beta-1,3-N-acetylglucosaminyltransferase, Golgi apparatus",
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"ksii_core2_pre3_g":1.0,
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"udp_g":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11041_AT1 or 10678_AT1 or 93010_AT1 or 374907_AT2 or 374907_AT1 or 146712_AT1 or 10331_AT1 or 10678_AT2 or 79369_AT1",
"subsystem":"Keratan sulfate synthesis",
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},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"AG13T3g",
"name":"N-acetyllactosaminide beta-1,3-N-acetylglucosaminyltransferase, Golgi apparatus",
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},
"lower_bound":0.0,
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"AGPAT1_1",
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"alpa_hs_c":-1.0,
"coa_c":1.0,
"h_c":-2.0,
"pa_hs_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10555_AT1 or 137964_AT1 or 56895_AT1 or 56894_AT2 or 56894_AT1 or 55326_AT1 or 10554_AT1 or 129642_AT1",
"subsystem":"Triacylglycerol synthesis",
"notes":{
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"AGPAT1"
]
},
"annotation":{
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"AGPAT1_1"
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"sbo":"SBO:0000176"
}
},
{
"id":"AGTix",
"name":"Alanine---glyoxylate aminotransferase, glyoxysome",
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"glx_x":-1.0,
"gly_x":1.0,
"pyr_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"189_AT1",
"subsystem":"Alanine and aspartate metabolism",
"notes":{
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},
"annotation":{
"bigg.reaction":[
"AGTix"
],
"biocyc":[
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],
"ec-code":[
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],
"kegg.reaction":[
"R00369"
],
"metanetx.reaction":[
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],
"reactome.reaction":[
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"R-RNO-389684",
"R-SCE-389684",
"R-DDI-389684",
"R-GGA-389684",
"R-DRE-389684",
"R-CFA-904864",
"R-CEL-904864",
"R-DME-904864",
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"R-OSA-904864",
"R-SPO-904864",
"R-CEL-389684",
"R-CFA-389684",
"R-SSC-904864",
"R-OSA-389684",
"R-ATH-904864",
"R-DME-389684",
"R-BTA-389684",
"R-GGA-904864",
"R-MMU-904864",
"R-TGU-904864",
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"R-HSA-389684",
"R-XTR-389684",
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"rhea":[
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"24251",
"24250",
"24249"
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"sabiork":[
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"sbo":"SBO:0000176",
"seed.reaction":[
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}
},
{
"id":"AHANDROSTANGLCtr",
"name":"Glucuronidated compound transport",
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"ahandrostanglc_r":1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
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},
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"metanetx.reaction":[
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"sbo":"SBO:0000185"
}
},
{
"id":"AHCYStr",
"name":"S-Adenosyl-L-homocysteine intracellular diffusion",
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"ahcys_r":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
"notes":{
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},
"annotation":{
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}
},
{
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"name":"Beta-N-acetylhexosaminidase, lysosomal",
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"h2o_l":-2.0,
"m2mn_l":1.0,
"n2m2mn_l":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3073_AT1 or 3074_AT1 or (3073_AT1 and 3074_AT1)",
"subsystem":"N-glycan degradation",
"notes":{
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},
"annotation":{
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"metanetx.reaction":[
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"sbo":"SBO:0000176"
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},
{
"id":"AKGDm",
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"co2_m":1.0,
"coa_m":-1.0,
"nad_m":-1.0,
"nadh_m":1.0,
"succoa_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(4967_AT2 and 1738_AT1 and 8050_AT1 and 1743_AT1) or (4967_AT1 and 1738_AT1 and 8050_AT1 and 1743_AT1)",
"subsystem":"Citric acid cycle",
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},
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"biocyc":[
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"ec-code":[
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"2.3.1.61",
"1.8.1.4",
"1.2.4.2"
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"kegg.reaction":[
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"metanetx.reaction":[
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"reactome.reaction":[
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"R-XTR-71401",
"R-SCE-71401",
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"R-DDI-71401",
"R-CFA-71401",
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"R-BTA-71401",
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"R-MMU-71401",
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"rhea":[
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"27788",
"27786",
"27787"
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"sabiork":[
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"sbo":"SBO:0000176",
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}
},
{
"id":"AKGtp",
"name":"AKG transporter  peroxisome",
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"akg_x":1.0
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"upper_bound":1000.0,
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"sbo":"SBO:0000185",
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}
},
{
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"h_c":-1.0,
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"prgstrn_c":-1.0
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},
{
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"xoldioloneh_c":-1.0,
"xoltriol_c":1.0
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"lower_bound":0.0,
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},
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},
{
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"xoldiolone_c":-1.0,
"xoldioloneh_c":1.0
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"lower_bound":0.0,
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},
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},
{
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"na1_e":-1.0
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},
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"metanetx.reaction":[
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},
{
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"na1_c":1.0,
"na1_e":-1.0
},
"lower_bound":0.0,
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},
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},
{
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"gln__L_e":1.0
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},
{
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"gly_e":1.0
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},
{
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{
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{
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{
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},
{
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{
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},
{
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},
{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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},
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},
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},
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},
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},
{
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},
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}
},
{
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}
},
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},
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}
},
{
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},
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}
},
{
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}
},
{
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},
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}
},
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},
{
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},
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},
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}
},
{
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},
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}
},
{
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}
},
{
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},
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},
{
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},
{
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},
{
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}
},
{
"id":"EX_2425dhvitd3_e",
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},
{
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},
{
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},
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
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},
{
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},
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},
{
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},
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},
{
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},
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"gene_reaction_rule":"",
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}
},
{
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{
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{
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{
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{
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},
{
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},
{
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{
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{
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}
},
{
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},
{
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},
{
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},
{
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},
{
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},
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},
{
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},
{
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{
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},
{
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},
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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{
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"lower_bound":-1000.0,
"upper_bound":1000.0,
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}
},
{
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}
},
{
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"upper_bound":1000.0,
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}
},
{
"id":"EX_fucfuc132galacglcgal14acglcgalgluside_hs_e",
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"upper_bound":1000.0,
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}
},
{
"id":"EX_fucfucfucgalacglcgal14acglcgalgluside_hs_e",
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"upper_bound":1000.0,
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}
},
{
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}
},
{
"id":"EX_galfuc12gal14acglcgalgluside_hs_e",
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},
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}
},
{
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}
},
{
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},
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}
},
{
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
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]
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}
},
{
"id":"EX_gchola_e",
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"gchola_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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]
},
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}
},
{
"id":"EX_gd1b2_hs_e",
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},
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"upper_bound":1000.0,
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],
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}
},
{
"id":"EX_glygn2_e",
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"upper_bound":1000.0,
"gene_reaction_rule":"",
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]
},
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],
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}
},
{
"id":"EX_glygn4_e",
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"glygn4_e":-1.0
},
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"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
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}
},
{
"id":"EX_glygn5_e",
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},
"lower_bound":-1000.0,
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}
},
{
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"upper_bound":1000.0,
"gene_reaction_rule":"",
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]
},
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}
},
{
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},
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}
},
{
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},
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}
},
{
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},
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"upper_bound":1000.0,
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]
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}
},
{
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},
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]
}
},
{
"id":"EX_h2o2_e",
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},
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"upper_bound":1000.0,
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]
},
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"META:TRANS-RXN0-572"
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]
}
},
{
"id":"EX_hco3_e",
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"hco3_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
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"R-DRE-2752067",
"R-CEL-2752067",
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"R-GGA-2752067",
"R-TGU-2752067",
"R-XTR-2752067",
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],
"rhea":[
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"28696"
],
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}
},
{
"id":"EX_hdca_e",
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"hdca_e":-1.0
},
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"upper_bound":1000.0,
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}
},
{
"id":"EX_hestratriol_e",
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},
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"upper_bound":1000.0,
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}
},
{
"id":"EX_hista_e",
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},
{
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}
},
{
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},
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}
},
{
"id":"EX_inost_e",
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},
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"upper_bound":1000.0,
"gene_reaction_rule":"",
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"32868"
],
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}
},
{
"id":"EX_ksi_deg1_e",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
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},
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}
},
{
"id":"EX_ksii_core2_e",
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"upper_bound":1000.0,
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},
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}
},
{
"id":"EX_leuktrA4_e",
"name":"Leukotriene A4 exchange",
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},
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"upper_bound":1000.0,
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},
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}
},
{
"id":"EX_leuktrF4_e",
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"upper_bound":1000.0,
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},
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}
},
{
"id":"EX_lgnc_e",
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},
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"upper_bound":1000.0,
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},
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}
},
{
"id":"EX_lneldc_e",
"name":"Linoelaidic acid exchange",
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},
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"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
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}
},
{
"id":"EX_lnlncg_e",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
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}
},
{
"id":"EX_mag_hs_e",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
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{
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}
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},
{
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},
{
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},
{
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}
},
{
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}
},
{
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{
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"id":"RE2235R",
"name":"Unspecific Monooxygenase",
"metabolites":{
"C05300_r":1.0,
"estrone_r":-1.0,
"h2o_r":1.0,
"h_r":-1.0,
"nadp_r":1.0,
"nadph_r":-1.0,
"o2_r":-1.0
},
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"upper_bound":1000.0,
"gene_reaction_rule":"1543_AT1 or 1544_AT1 or 1571_AT1 or 1576_AT1 or 1558_AT1 or 1565_AT1 or 1548_AT1 or 1588_AT1 or 1559_AT1 or 1580_AT1 or 1555_AT1 or 1577_AT1 or 1549_AT1 or 1551_AT1 or 1572_AT1 or 1562_AT1 or 1573_AT1 or 11283_AT1 or 1545_AT1 or 1553_AT1 or 199974_AT1 or 260293_AT1 or 29785_AT1 or 64816_AT1 or 57834_AT1 or 66002_AT1",
"subsystem":"Androgen and estrogen synthesis and metabolism",
"notes":{
"original_bigg_ids":[
"RE2235R"
]
},
"annotation":{
"bigg.reaction":[
"RE2235R"
],
"ec-code":[
"1.14.13.-",
"1.14.14.1"
],
"kegg.reaction":[
"R02356"
],
"metanetx.reaction":[
"MNXR103638"
],
"sbo":"SBO:0000176",
"seed.reaction":[
"rxn01696"
]
}
},
{
"id":"RE2269E",
"name":"Chymase",
"metabolites":{
"CE5786_e":-1.0,
"CE5788_e":1.0,
"h2o_e":-2.0,
"leu__L_e":1.0,
"phe__L_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1215_AT1",
"subsystem":"Miscellaneous",
"notes":{
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]
},
"annotation":{
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"RE2269E"
],
"metanetx.reaction":[
"MNXR103643"
],
"sbo":"SBO:0000176"
}
},
{
"id":"r2343",
"name":"Organic anion transporter 5 Utilized transport",
"metabolites":{
"dheas_c":1.0,
"dheas_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"387775_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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"r2343"
],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"r2346",
"name":"Organic anion transporter 5 Utilized transport",
"metabolites":{
"wharachd_c":1.0,
"wharachd_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"387775_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"r2346"
]
},
"annotation":{
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"r2346"
],
"metanetx.reaction":[
"MNXR106235"
],
"sbo":"SBO:0000185"
}
},
{
"id":"r2353",
"name":"Organic anion transporter 5 Utilized transport",
"metabolites":{
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"bilglcur_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"387775_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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"r2353"
]
},
"annotation":{
"bigg.reaction":[
"r2353"
],
"metanetx.reaction":[
"MNXR96257"
],
"sbo":"SBO:0000185"
}
},
{
"id":"r2356",
"name":"Organic anion transporter 5 Utilized transport",
"metabolites":{
"HC02204_c":1.0,
"HC02204_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"387775_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"r2356"
]
},
"annotation":{
"bigg.reaction":[
"r2356"
],
"metanetx.reaction":[
"MNXR106240"
],
"sbo":"SBO:0000185"
}
},
{
"id":"r2361",
"name":"Organic anion transporter 5 Utilized transport",
"metabolites":{
"prostgd2_c":1.0,
"prostgd2_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"387775_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"r2361"
]
},
"annotation":{
"bigg.reaction":[
"r2361"
],
"metanetx.reaction":[
"MNXR106245"
],
"sbo":"SBO:0000185"
}
},
{
"id":"RE2270E",
"name":"Carboxypeptidase A",
"metabolites":{
"CE5786_e":-1.0,
"CE5789_e":1.0,
"h2o_e":-1.0,
"leu__L_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1357_AT1 or 1358_AT1 or 57094_AT1 or 93979_AT1",
"subsystem":"Miscellaneous",
"notes":{
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"RE2270E"
]
},
"annotation":{
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"RE2270E"
],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"RE2304E",
"name":"Tryptase",
"metabolites":{
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"CE5787_e":1.0,
"CE5791_e":1.0,
"h2o_e":-2.0,
"leu__L_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"7177_AT1 or 64499_AT1 or 23430_AT1",
"subsystem":"Miscellaneous",
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"RE2304E"
]
},
"annotation":{
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"RE2304E"
],
"sbo":"SBO:0000176"
}
},
{
"id":"RE2327C",
"name":"RE2327",
"metabolites":{
"CE5021_c":-1.0,
"CE5022_c":1.0,
"q10_c":-1.0,
"q10h2_c":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Vitamin E metabolism",
"notes":{
"original_bigg_ids":[
"RE2327C"
]
},
"annotation":{
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"RE2327C"
],
"metanetx.reaction":[
"MNXR103652"
],
"sbo":"SBO:0000176"
}
},
{
"id":"RE2349C",
"name":"Kynurenine-Oxoglutarate Transaminase",
"metabolites":{
"C02470_c":1.0,
"akg_c":-1.0,
"glu__L_c":1.0,
"h2o_c":1.0,
"hLkynr_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"883_AT1",
"subsystem":"Tryptophan metabolism",
"notes":{
"original_bigg_ids":[
"RE2349C"
]
},
"annotation":{
"bigg.reaction":[
"RE2349C"
],
"sbo":"SBO:0000176"
}
},
{
"id":"RE2404C",
"name":"Glucuronosyltransferase",
"metabolites":{
"CE1925_c":-1.0,
"CE5853_c":1.0,
"udp_c":1.0,
"udpglcur_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"54658_AT1",
"subsystem":"Miscellaneous",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"RE2404C"
],
"sbo":"SBO:0000176"
}
},
{
"id":"RE2407C",
"name":"RE2407C",
"metabolites":{
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"h_c":-1.0,
"lanost_c":-1.0,
"nadp_c":1.0,
"nadph_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Cholesterol metabolism",
"notes":{
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"RE2407C"
]
},
"annotation":{
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"RE2407C"
],
"sbo":"SBO:0000176"
}
},
{
"id":"RE2410C",
"name":"7-Dehydrocholesterol Reductase",
"metabolites":{
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"dsmsterol_c":1.0,
"h_c":-1.0,
"nadp_c":1.0,
"nadph_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Cholesterol metabolism",
"notes":{
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]
},
"annotation":{
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],
"ec-code":[
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"RE2428M",
"name":"Glycine N-Acyltransferase",
"metabolites":{
"2mbcoa_m":-1.0,
"CE4970_m":1.0,
"coa_m":1.0,
"gly_m":-1.0,
"h_m":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10249_AT1",
"subsystem":"Glycine, serine, alanine, and threonine metabolism",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"RE2439C",
"name":"RE2439",
"metabolites":{
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"h2o_c":2.0,
"h_c":-4.0,
"melatn_c":-3.0,
"o2s_c":-4.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Tryptophan metabolism",
"notes":{
"original_bigg_ids":[
"RE2439C"
]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"r2364",
"name":"Organic anion transporter 5 Utilized transport",
"metabolites":{
"HC02213_c":1.0,
"HC02213_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"387775_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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"r2364"
],
"metanetx.reaction":[
"MNXR106248"
],
"sbo":"SBO:0000185"
}
},
{
"id":"r2365",
"name":"Organic anion transporter 5 Utilized transport",
"metabolites":{
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"HC02214_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"387775_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"r2367",
"name":"Organic anion transporter 5 Utilized transport",
"metabolites":{
"HC02217_c":1.0,
"HC02217_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"387775_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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"r2367"
]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"r2368",
"name":"Organic anion transporter 5 Utilized transport",
"metabolites":{
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"prostgh2_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"387775_AT1",
"subsystem":"Transport, extracellular",
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},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"ASCBt5",
"name":"L-ascorbate transport via proton symport (1:2 ascb/na ratio)",
"metabolites":{
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"ascb__L_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9963_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"reactome.reaction":[
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"R-DDI-198870",
"R-DME-198870",
"R-GGA-198870",
"R-MMU-198870",
"R-ATH-198870",
"R-CFA-198870",
"R-HSA-198870",
"R-OSA-198870",
"R-SSC-198870",
"R-TGU-198870",
"R-XTR-198870",
"R-BTA-198870",
"R-RNO-198870",
"R-DRE-198870"
],
"sbo":"SBO:0000185"
}
},
{
"id":"r2371",
"name":"Mitochondrial Carrier (MC) TCDB:2.A.29.7.2",
"metabolites":{
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"HC00342_m":1.0,
"cit_c":1.0,
"cit_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6576_AT1",
"subsystem":"Transport, mitochondrial",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"r2372",
"name":"Mitochondrial Carrier (MC) TCDB:2.A.29.7.2",
"metabolites":{
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"HC00342_m":1.0,
"icit_c":1.0,
"icit_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6576_AT1",
"subsystem":"Transport, mitochondrial",
"notes":{
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]
},
"annotation":{
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"r2372"
],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"AKGCITtm",
"name":"Dicarboxylate/tricarboxylate carrier (akg:cit), mitochondrial",
"metabolites":{
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"akg_m":1.0,
"cit_c":1.0,
"cit_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6576_AT1",
"subsystem":"Transport, mitochondrial",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"r2376",
"name":"Mitochondrial Carrier (MC) TCDB:2.A.29.7.2",
"metabolites":{
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"icit_m":-1.0,
"oxa_c":-1.0,
"oxa_m":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6576_AT1",
"subsystem":"Transport, mitochondrial",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"RE2514E",
"name":"Peroxidase",
"metabolites":{
"CE4633_e":-1.0,
"CE4881_e":1.0,
"h2o_e":1.0,
"h_e":-1.0,
"no2_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"4025_AT1",
"subsystem":"Miscellaneous",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"RE2541C",
"name":"Beta-Glucuronidase",
"metabolites":{
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"CE5854_c":-1.0,
"glcur_c":1.0,
"h2o_c":-1.0,
"h_c":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9365_AT1",
"subsystem":"Miscellaneous",
"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"RE2541E",
"name":"Beta-Glucuronidase",
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"CE5854_e":-1.0,
"glcur_e":1.0,
"h2o_e":-1.0,
"h_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9365_AT1",
"subsystem":"Miscellaneous",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"RE2624M",
"name":"Alpha-Methylacyl Coenzyme A Racemase",
"metabolites":{
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"cholcoar_m":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"23600_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"RE2624X",
"name":"Alpha-Methylacyl Coenzyme A Racemase",
"metabolites":{
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"cholcoar_x":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"23600_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"RE2625C",
"name":"RE2625",
"metabolites":{
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"h_c":1.0,
"nad_c":-1.0,
"nadh_c":1.0,
"xoltetrol_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Bile acid synthesis",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"r2378",
"name":"Mitochondrial Carrier (MC) TCDB:2.A.29.7.2",
"metabolites":{
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"HC00342_m":-1.0,
"succ_c":-1.0,
"succ_m":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6576_AT1",
"subsystem":"Transport, mitochondrial",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"r2379",
"name":"Mitochondrial Carrier (MC) TCDB:2.A.29.7.2",
"metabolites":{
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"HC00342_m":-1.0,
"mal__L_c":-1.0,
"mal__L_m":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6576_AT1",
"subsystem":"Transport, mitochondrial",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"r2380",
"name":"Mitochondrial Carrier (MC) TCDB:2.A.29.7.2",
"metabolites":{
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"HC00342_m":-1.0,
"oxa_c":-1.0,
"oxa_m":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6576_AT1",
"subsystem":"Transport, mitochondrial",
"notes":{
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},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"RE2626C",
"name":"RE2626",
"metabolites":{
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"h2o_c":-1.0,
"h_c":2.0,
"nadp_c":-1.0,
"nadph_c":1.0,
"thcholstoic_c":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Bile acid synthesis",
"notes":{
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},
"annotation":{
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"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
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},
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{
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{
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"lower_bound":-1000.0,
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},
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],
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],
"sbo":"SBO:0000176"
}
},
{
"id":"RE3011M",
"name":"Alcohol Dehydrogenase",
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"h_m":1.0,
"leuktrB4woh_m":-1.0,
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},
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},
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],
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"sbo":"SBO:0000176"
}
},
{
"id":"RE3012C",
"name":"Aldehyde Dehydrogenase (NAD+)",
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"h2o_c":-1.0,
"h_c":2.0,
"leuktrB4wcooh_c":1.0,
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},
"lower_bound":-1000.0,
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]
},
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],
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],
"sbo":"SBO:0000176"
}
},
{
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"name":"Aldehyde Dehydrogenase (NAD+)",
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"h2o_m":-1.0,
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"leuktrB4wcooh_m":1.0,
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},
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"upper_bound":1000.0,
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"subsystem":"Eicosanoid metabolism",
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]
},
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],
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],
"sbo":"SBO:0000176"
}
},
{
"id":"RE3012R",
"name":"Aldehyde Dehydrogenase (NAD+)",
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"h2o_r":-1.0,
"h_r":2.0,
"leuktrB4wcooh_r":1.0,
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},
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},
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_3octdec2crn_e",
"name":"Exchange of 3-Hydroxyoctadecadienoyl Carnitine",
"metabolites":{
"3octdec2crn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_3octdec2crn[e]"
]
},
"annotation":{
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_3octdeccrn_e",
"name":"Exchange of 3-Hydroxyoctadecanoyl Carnitine",
"metabolites":{
"3octdeccrn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_3octdeccrn[e]"
]
},
"annotation":{
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"EX_3octdeccrn_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_3octdece1crn_e",
"name":"Exchange of 3-Hydroxy-Octadecenoyl Carnitine",
"metabolites":{
"3octdece1crn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_3tdcrn_e",
"name":"Exchange reaction for 3-hydroxy-tetradecanoyl carnitine",
"metabolites":{
"3tdcrn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_3tdcrn[e]"
]
},
"annotation":{
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"EX_3tdcrn_e"
],
"metanetx.reaction":[
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_3tetd7ecoacrn_e",
"name":"Exchange of 3-Hydroxy Tetradecenoyl-7-Carnitine",
"metabolites":{
"3tetd7ecoacrn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_3ttetddcoacrn_e",
"name":"Exchange of 3-Hydroxy Trans5, 8Tetradecadienoyl Carnitine",
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"3ttetddcoacrn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_c16dc_e",
"name":"Exchange of Hexadecanedioic Acid Mono-L-Carnitine Ester",
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"c16dc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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]
},
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_c4crn_e",
"name":"Exchange reaction for butyryl carnitine",
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"c4crn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000627"
}
},
{
"id":"RE3015R",
"name":"Leukotriene-B4 20-Monooxygenase",
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"CE3554_r":1.0,
"h2o_r":1.0,
"h_r":-1.0,
"nadp_r":1.0,
"nadph_r":-1.0,
"o2_r":-1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"8529_AT1 or 4051_AT1 or 126410_AT1",
"subsystem":"Eicosanoid metabolism",
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]
},
"annotation":{
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],
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],
"sbo":"SBO:0000176"
}
},
{
"id":"RE3033C",
"name":"Arachidonate 5-Lipoxygenase",
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"CE2567_c":1.0,
"h2o2_c":1.0,
"o2_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Arachidonic acid metabolism",
"notes":{
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"RE3033C"
]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"RE3431C",
"name":"RE3431",
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"CE4987_c":-1.0,
"CE4988_c":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Eicosanoid metabolism",
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"RE3432M",
"name":"Carbonyl Reductase (NADPH)",
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},
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},
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],
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"sbo":"SBO:0000176"
}
},
{
"id":"RE3432X",
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"h_x":-1.0,
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"nadph_x":-1.0
},
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},
"annotation":{
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],
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],
"sbo":"SBO:0000176"
}
},
{
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"o2_c":-1.0
},
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},
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],
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],
"sbo":"SBO:0000176"
}
},
{
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"nadp_c":-1.0,
"nadph_c":1.0
},
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},
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],
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"sbo":"SBO:0000176"
}
},
{
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},
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}
},
{
"id":"RE3475C",
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},
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],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_c51crn_e",
"name":"Exchange reaction for tiglyl carnitine",
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},
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"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
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"metanetx.reaction":[
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"sbo":"SBO:0000627"
}
},
{
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"name":"Exchange reaction for adipoyl carnitine",
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},
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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},
"annotation":{
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_c81crn_e",
"name":"Exchange of Octenoyl Carnitine",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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]
},
"annotation":{
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"sbo":"SBO:0000627"
}
},
{
"id":"RE3488R",
"name":"Prostaglandin-Endoperoxide Synthase",
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"o2_r":-1.0,
"tmndnc_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5742_AT1 or 5743_AT1",
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},
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_c8dc_e",
"name":"Exchange reaction for suberyl carnitine",
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"c8dc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000627"
}
},
{
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"name":"RE3493",
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"CE7085_c":1.0,
"h2o_c":1.0,
"h_c":-2.0
},
"lower_bound":-1000.0,
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"gene_reaction_rule":"",
"subsystem":"Eicosanoid metabolism",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"FAS180COA",
"name":"Fatty acyl CoA synthase  n C180CoA ",
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"coa_c":1.0,
"h2o_c":1.0,
"h_c":-3.0,
"malcoa_c":-1.0,
"nadp_c":2.0,
"nadph_c":-2.0,
"pmtcoa_c":-1.0,
"stcoa_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2194_AT1 or ((2194_AT1 and 79071_AT1) and 60481_AT1 and 54898_AT1)",
"subsystem":"Fatty acid synthesis",
"notes":{
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]
},
"annotation":{
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],
"ec-code":[
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176",
"seed.reaction":[
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]
}
},
{
"id":"RE3496C",
"name":"Prostaglandin-E Synthase",
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"HC02213_c":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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]
},
"annotation":{
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],
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],
"rhea":[
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"50452",
"50454",
"50453"
],
"sbo":"SBO:0000176"
}
},
{
"id":"RE3525C",
"name":"Arachidonate 12-Lipoxygenase",
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"leuktrB4_c":2.0,
"o2_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"239_AT1",
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},
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}
},
{
"id":"EX_ddece1crn_e",
"name":"Exchange of Dodecenoyl Carnitine",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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},
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}
},
{
"id":"EX_ddeccrn_e",
"name":"Exchange of Lauroyl Carnitine",
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"ddeccrn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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},
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"sbo":"SBO:0000627"
}
},
{
"id":"EX_doco13ac_e",
"name":"Exchange of Docosenoic Acid (C22:1)",
"metabolites":{
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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},
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"sbo":"SBO:0000627"
}
},
{
"id":"EX_ivcrn_e",
"name":"Exchange reaction for isovaleryl carnitine",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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},
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}
},
{
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"leuktrB4_r":2.0,
"o2_r":-1.0
},
"lower_bound":0.0,
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},
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}
},
{
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"name":"RE3556",
"metabolites":{
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"HC02206_c":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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"notes":{
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},
"annotation":{
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],
"biocyc":[
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],
"ec-code":[
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],
"kegg.reaction":[
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],
"metanetx.reaction":[
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"rhea":[
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"10461",
"10460"
],
"sbo":"SBO:0000176",
"seed.reaction":[
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}
},
{
"id":"RE3568C",
"name":"RE3568",
"metabolites":{
"HC02202_c":1.0,
"h2o_c":1.0,
"prostge1_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Eicosanoid metabolism",
"notes":{
"original_bigg_ids":[
"RE3568C"
]
},
"annotation":{
"bigg.reaction":[
"RE3568C"
],
"metanetx.reaction":[
"MNXR103971"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_tetdec2crn_e",
"name":"Exchange of Tetradecadienoyl Carnitine",
"metabolites":{
"tetdec2crn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tetdec2crn[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tetdec2crn_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tetdece1crn_e",
"name":"Exchange of Tetradecenoyl Carnitine",
"metabolites":{
"tetdece1crn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tetdece1crn[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tetdece1crn_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"FAOXC101C102m",
"name":"Fatty Acid Beta Oxidation (C10:1->C10:2), Mitochondrial",
"metabolites":{
"dec24dicoa_m":1.0,
"dece4coa_m":-1.0,
"fad_m":-1.0,
"fadh2_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1 or 34_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC101C102m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC101C102m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC101C102x",
"name":"Fatty Acid Beta Oxidation (C10:1->C10:2), Peroxisomal",
"metabolites":{
"dec24dicoa_x":1.0,
"dece4coa_x":-1.0,
"h2o2_x":1.0,
"o2_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC101C102x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC101C102x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"RE3624M",
"name":"Acyl Coenzyme A Oxidase",
"metabolites":{
"C05279_m":1.0,
"CE4794_m":-1.0,
"h2o2_m":1.0,
"o2_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"RE3624M"
]
},
"annotation":{
"bigg.reaction":[
"RE3624M"
],
"sbo":"SBO:0000176"
}
},
{
"id":"RE3629C",
"name":"RE3629",
"metabolites":{
"CE2088_c":1.0,
"CE2089_c":-1.0,
"accoa_c":-1.0,
"coa_c":1.0,
"h_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Histidine metabolism",
"notes":{
"original_bigg_ids":[
"RE3629C"
]
},
"annotation":{
"bigg.reaction":[
"RE3629C"
],
"metanetx.reaction":[
"MNXR103988"
],
"sbo":"SBO:0000176"
}
},
{
"id":"RE3630C",
"name":"RE3630C",
"metabolites":{
"CE2088_c":-1.0,
"CE2089_c":1.0,
"ac_c":1.0,
"h2o_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Histidine metabolism",
"notes":{
"original_bigg_ids":[
"RE3630C"
]
},
"annotation":{
"bigg.reaction":[
"RE3630C"
],
"sbo":"SBO:0000176"
}
},
{
"id":"RE3637C",
"name":"RE3637C",
"metabolites":{
"C05767_c":1.0,
"h_c":6.0,
"uppg3_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Heme synthesis",
"notes":{
"original_bigg_ids":[
"RE3637C"
]
},
"annotation":{
"bigg.reaction":[
"RE3637C"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_prostgi2_e",
"name":"Prostaglandin I2(1-) exchange",
"metabolites":{
"prostgi2_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_prostgi2[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_prostgi2_e"
],
"metanetx.reaction":[
"MNXR103207"
],
"sbo":"SBO:0000627"
}
},
{
"id":"FAOXC101C8m",
"name":"Fatty Acid Beta Oxidation (C10:1->C8), Mitochondrial",
"metabolites":{
"accoa_m":1.0,
"coa_m":-1.0,
"dc2coa_m":-1.0,
"h2o_m":-1.0,
"h_m":1.0,
"nad_m":-1.0,
"nadh_m":1.0,
"occoa_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1892_AT1 and 3033_AT1 and 10449_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC101C8m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC101C8m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC102C101x",
"name":"Fatty Acid Beta Oxidation (C10:2->C10:1), Peroxisomal",
"metabolites":{
"dec24dicoa_x":-1.0,
"dece3coa_x":1.0,
"h_x":-1.0,
"nadp_x":1.0,
"nadph_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"26063_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC102C101x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC102C101x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC102C103m",
"name":"Fatty Acid Beta Oxidation (C10:2->C10:3), Mitochondrial",
"metabolites":{
"dec47dicoa_m":-1.0,
"dectricoa_m":1.0,
"fad_m":-1.0,
"fadh2_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"34_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC102C103m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC102C103m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC102C103x",
"name":"Fatty Acid Beta Oxidation (C10:2->C10:3), Peroxisomal",
"metabolites":{
"dec47dicoa_x":-1.0,
"dectricoa_x":1.0,
"h2o2_x":1.0,
"o2_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC102C103x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC102C103x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC10DCC8DCx",
"name":"Fatty Acid Beta Oxidation (C10Dc->C8Dc)",
"metabolites":{
"accoa_x":1.0,
"coa_x":-1.0,
"h2o2_x":1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0,
"o2_x":-1.0,
"sbcoa_x":1.0,
"sebcoa_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1 and 1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC10DCC8DCx"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC10DCC8DCx"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC11BRC9BRx",
"name":"Fatty Acid Beta Oxidation (C11Br->C9Br), Peroxisomal",
"metabolites":{
"coa_x":-1.0,
"dmnoncoa_x":1.0,
"h2o2_x":1.0,
"h2o_x":-1.0,
"h_x":-1.0,
"nad_x":-1.0,
"nadh_x":1.0,
"o2_x":-1.0,
"ppcoa_x":1.0,
"tmuncoa_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8310_AT1 and 1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC11BRC9BRx"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC11BRC9BRx"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC11C9m",
"name":"Fatty Acid Beta Oxidation (C11->C9), Mitochondrial",
"metabolites":{
"accoa_m":1.0,
"coa_m":-1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"nad_m":-1.0,
"nadh_m":1.0,
"noncoa_m":1.0,
"undcoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"34_AT1 and 1892_AT1 and 3033_AT1 and 10449_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC11C9m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC11C9m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC121C10x",
"name":"Fatty Acid Beta Xoidation (C12:1->C10), Peroxisomal",
"metabolites":{
"accoa_x":1.0,
"coa_x":-1.0,
"dcacoa_x":1.0,
"dd2coa_x":-1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC121C10x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC121C10x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_cdp_e",
"name":"CDP(3-) exchange",
"metabolites":{
"cdp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_cdp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_cdp_e"
],
"metanetx.reaction":[
"MNXR96562"
],
"sbo":"SBO:0000627",
"seed.reaction":[
"rxn09822"
]
}
},
{
"id":"EX_dtdp_e",
"name":"({[(2R,3S,5R)-3-hydroxy-5-(5-methyl-2,4-dioxo-1,2,3,4-tetrahydropyrimidin-1-yl)oxolan-2-yl]methyl phosphonato}oxy)phosphonate exchange",
"metabolites":{
"dtdp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_dtdp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_dtdp_e"
],
"metanetx.reaction":[
"MNXR97803"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_HC00955_e",
"name":"L-3-Cyanoalanine exchange",
"metabolites":{
"HC00955_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_HC00955[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_HC00955_e"
],
"metanetx.reaction":[
"MNXR142885"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_HC00004_e",
"name":"ApoA1 exchange",
"metabolites":{
"HC00004_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_HC00004[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_HC00004_e"
],
"metanetx.reaction":[
"MNXR105391"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_C02470_e",
"name":"Xanthurenic acid exchange",
"metabolites":{
"C02470_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_C02470[e]"
]
},
"annotation":{
"bigg.reaction":[
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],
"metanetx.reaction":[
"MNXR105432"
],
"sbo":"SBO:0000627"
}
},
{
"id":"FAOXC121x",
"name":"Isomerization (C12:1), Peroxisomal",
"metabolites":{
"dd2coa_x":1.0,
"dd3coa_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1962_AT1 or 10455_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC122C101m",
"name":"Fatty Acid Beta Oxidation (C12:2->C10:1), Mitochondrial",
"metabolites":{
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"accoa_m":1.0,
"coa_m":-1.0,
"dece4coa_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"nad_m":-1.0,
"nadh_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1892_AT1 and 3033_AT1 and 10449_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_HC02193_e",
"name":"Glycolithocholate exchange",
"metabolites":{
"HC02193_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_HC02193[e]"
]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_HC02196_e",
"name":"Glycoursodeoxycholate exchange",
"metabolites":{
"HC02196_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_HC02196[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_HC02196_e"
],
"metanetx.reaction":[
"MNXR142903"
],
"sbo":"SBO:0000627"
}
},
{
"id":"SEBCOAPET",
"name":"Thioesterification of sebacoylcoa for release into cytosol",
"metabolites":{
"coa_x":1.0,
"h2o_x":-1.0,
"h_x":1.0,
"sebacid_x":1.0,
"sebcoa_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10005_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
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"SEBCOAPET"
],
"metanetx.reaction":[
"MNXR104307"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_HC02220_e",
"name":"Sulfochenodeoxycholate exchange",
"metabolites":{
"HC02220_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_HC02220[e]"
]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000627"
}
},
{
"id":"STRDNCCOAtxc",
"name":"Transport of stearidonylcoa into peroxisomes.",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"strdnccoa_c":-1.0,
"strdnccoa_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"215_AT1",
"subsystem":"Transport, peroxisomal",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
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"STRDNCCOAtxc"
],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_HC02194_e",
"name":"Ursodeoxycholate exchange",
"metabolites":{
"HC02194_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000627"
}
},
{
"id":"FAS80COA_L",
"name":"Fatty acyl CoA synthase  n C80CoA   lumped reaction",
"metabolites":{
"accoa_c":-1.0,
"co2_c":3.0,
"coa_c":3.0,
"h2o_c":3.0,
"h_c":-9.0,
"malcoa_c":-3.0,
"nadp_c":6.0,
"nadph_c":-6.0,
"occoa_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2194_AT1",
"subsystem":"Fatty acid synthesis",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
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],
"ec-code":[
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176",
"seed.reaction":[
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]
}
},
{
"id":"EX_HC02197_e",
"name":"Sulfoglycolithocholate(2-) exchange",
"metabolites":{
"HC02197_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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},
"annotation":{
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"metanetx.reaction":[
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"sbo":"SBO:0000627"
}
},
{
"id":"EX_HC02187_e",
"name":"Reverse-triiodthyronine exchange",
"metabolites":{
"HC02187_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_HC02187[e]"
]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sabiork":[
"13550"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_HC02180_e",
"name":"Thromboxane-b2 exchange",
"metabolites":{
"HC02180_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"rhea":[
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"50992",
"50995",
"50994"
],
"sbo":"SBO:0000627"
}
},
{
"id":"SUBEACTD",
"name":"Transport of suberic acid into cytosol (diffusion)",
"metabolites":{
"subeac_c":1.0,
"subeac_x":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"SUBEACtx"
]
},
"annotation":{
"bigg.reaction":[
"SUBEACTD"
],
"metanetx.reaction":[
"MNXR104609"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SUBERCACT",
"name":"Transport of suberyl carnitine into cytosol",
"metabolites":{
"c8dc_c":1.0,
"c8dc_x":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"788_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"SUBERCACT"
]
},
"annotation":{
"bigg.reaction":[
"SUBERCACT"
],
"metanetx.reaction":[
"MNXR96431"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SUCCACT",
"name":"Activation of Succinate",
"metabolites":{
"amp_c":1.0,
"atp_c":-1.0,
"coa_c":-1.0,
"ppi_c":1.0,
"succ_c":-1.0,
"succoa_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"SUCCACT"
]
},
"annotation":{
"bigg.reaction":[
"SUCCACT"
],
"sbo":"SBO:0000176"
}
},
{
"id":"SUCCOAPET",
"name":"Thioesterification of succinyl coa for release into cytosol",
"metabolites":{
"coa_x":1.0,
"h2o_x":-1.0,
"h_x":1.0,
"succ_x":1.0,
"succoa_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"122970_AT1 or 10005_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"SUCCOAPET"
]
},
"annotation":{
"bigg.reaction":[
"SUCCOAPET"
],
"biocyc":[
"META:SUCCINYL-COA-HYDROLASE-RXN"
],
"ec-code":[
"3.1.2.3"
],
"kegg.reaction":[
"R00407"
],
"metanetx.reaction":[
"MNXR104617"
],
"rhea":[
"11519",
"11518",
"11516",
"11517"
],
"sabiork":[
"261"
],
"sbo":"SBO:0000176",
"seed.reaction":[
"rxn00287"
]
}
},
{
"id":"TETDEC2CRNe",
"name":"Transport of Tetradecadienoyl Carnitine into Extra Cellular Space",
"metabolites":{
"tetdec2crn_c":-1.0,
"tetdec2crn_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"TETDEC2CRNe"
]
},
"annotation":{
"bigg.reaction":[
"TETDEC2CRNe"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ALAATB0tc",
"name":"Transport of L-Alanine into the intestinal cells by ATB0 transporter",
"metabolites":{
"ala__L_c":1.0,
"ala__L_e":-1.0,
"cl_c":1.0,
"cl_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11254_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ALAATB0tc"
]
},
"annotation":{
"bigg.reaction":[
"ALAATB0tc"
],
"metanetx.reaction":[
"MNXR95681"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ASCBSVCTtc",
"name":"Transport of L-Ascorbate by SVCT1 or SVCT2 transporter",
"metabolites":{
"adp_c":1.0,
"ascb__L_c":1.0,
"ascb__L_e":-1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"na1_c":2.0,
"na1_e":-2.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9963_AT1 or 9962_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASCBSVCTtc"
]
},
"annotation":{
"bigg.reaction":[
"ASCBSVCTtc"
],
"metanetx.reaction":[
"MNXR138068"
],
"sbo":"SBO:0000185"
}
},
{
"id":"BALABETAtc",
"name":"Transport of beta alanine into the intestinal cells by beta transport system",
"metabolites":{
"ala_B_c":1.0,
"ala_B_e":-1.0,
"cl_c":1.0,
"cl_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6533_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"BALABETAtc"
]
},
"annotation":{
"bigg.reaction":[
"BALABETAtc"
],
"metanetx.reaction":[
"MNXR96210"
],
"sbo":"SBO:0000185"
}
},
{
"id":"BGLUGCHe",
"name":"Binding of betaglucans with glycocholate in the intestinal lumen, reducing serum cholsterol levels.",
"metabolites":{
"bglc_e":-1.0,
"gchola_e":-1.0,
"glgchlo_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Dietary fiber binding",
"notes":{
"original_bigg_ids":[
"BGLUGCHe"
]
},
"annotation":{
"bigg.reaction":[
"BGLUGCHe"
],
"metanetx.reaction":[
"MNXR96244"
],
"sbo":"SBO:0000176"
}
},
{
"id":"BGLUTCHLe",
"name":"Binding of betaglucans with taurocholate in the intestinal lumen, reducing serum cholsterol levels.",
"metabolites":{
"bglc_e":-1.0,
"gltcho_e":1.0,
"tchola_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Dietary fiber binding",
"notes":{
"original_bigg_ids":[
"BGLUTCHLe"
]
},
"annotation":{
"bigg.reaction":[
"BGLUTCHLe"
],
"metanetx.reaction":[
"MNXR96245"
],
"sbo":"SBO:0000176"
}
},
{
"id":"CYSATB0tc",
"name":"Transport of L-Cysteine into the intestinal cells by ATB0 transporter",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"cys__L_c":1.0,
"cys__L_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11254_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CYSATB0tc"
]
},
"annotation":{
"bigg.reaction":[
"CYSATB0tc"
],
"metanetx.reaction":[
"MNXR96991"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_HC02202_e",
"name":"Prostaglandin A1(1-) exchange",
"metabolites":{
"HC02202_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_HC02202[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_HC02202_e"
],
"metanetx.reaction":[
"MNXR106238"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_malcoa_e",
"name":"Malonyl-CoA(4-) exchange",
"metabolites":{
"malcoa_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_malcoa[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_malcoa_e"
],
"metanetx.reaction":[
"MNXR143023"
],
"sbo":"SBO:0000627"
}
},
{
"id":"TTDCPT1",
"name":"Carnitine O-palmitoyltransferase",
"metabolites":{
"coa_c":1.0,
"crn_c":-1.0,
"tdcoa_c":-1.0,
"ttdcrn_c":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1374_AT1 or 1375_AT1 or 126129_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C140CPT1"
]
},
"annotation":{
"bigg.reaction":[
"TTDCPT1"
],
"metanetx.reaction":[
"MNXR128236"
],
"rhea":[
"44835",
"44832",
"44833",
"44834"
],
"sbo":"SBO:0000176"
}
},
{
"id":"C141ACBP",
"name":"Transport of 3-Hydroxytetradecenoyl Coenzyme A from Mitochondria into Cytosol",
"metabolites":{
"3tetd7ecoa_c":1.0,
"3tetd7ecoa_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1622_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C141ACBP"
]
},
"annotation":{
"bigg.reaction":[
"C141ACBP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C141CPT1",
"name":"Production of Tetradecenoylcarnitine",
"metabolites":{
"coa_c":1.0,
"crn_c":-1.0,
"tetdece1coa_c":-1.0,
"tetdece1crn_c":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1374_AT1 or 1375_AT1 or 126129_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C141CPT1"
]
},
"annotation":{
"bigg.reaction":[
"C141CPT1"
],
"sbo":"SBO:0000176"
}
},
{
"id":"C141OHc",
"name":"Production of 3-Hydroxytetradecenoyl Carnitine",
"metabolites":{
"3tetd7ecoa_c":-1.0,
"3tetd7ecoacrn_c":1.0,
"coa_c":1.0,
"crn_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1374_AT1 or 1375_AT1 or 126129_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C141OHc"
]
},
"annotation":{
"bigg.reaction":[
"C141OHc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"C142ACBP",
"name":"Transport of 3-Hydroxytetradeca Dienoyl Coenzyme A from Mitochondria into Cytosol",
"metabolites":{
"3ttetddcoa_c":1.0,
"3ttetddcoa_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1622_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C142ACBP"
]
},
"annotation":{
"bigg.reaction":[
"C142ACBP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C142OHe",
"name":"Excretion of 3-Hydroxy Trans5,8Tetradecadienoyl Carnitine",
"metabolites":{
"3ttetddcoacrn_c":-1.0,
"3ttetddcoacrn_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C142OHe"
]
},
"annotation":{
"bigg.reaction":[
"C142OHe"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C161OHc",
"name":"Production of 3-Hydroxyhexadecenoylcarnitine",
"metabolites":{
"3hdeccoa_c":-1.0,
"3hdececrn_c":1.0,
"coa_c":1.0,
"crn_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1374_AT1 or 1375_AT1 or 126129_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C161OHc"
]
},
"annotation":{
"bigg.reaction":[
"C161OHc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"C162OHc",
"name":"Production of 3-Hydroxy Hexadecadienoyl Carnitine",
"metabolites":{
"3thexddcoa_c":-1.0,
"3thexddcoacrn_c":1.0,
"coa_c":1.0,
"crn_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1374_AT1 or 1375_AT1 or 126129_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C162OHc"
]
},
"annotation":{
"bigg.reaction":[
"C162OHc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"C162OHe",
"name":"Excretion of 3-Hydroxy Trans7,10-Hexadecadienoyl Carnitine",
"metabolites":{
"3thexddcoacrn_c":-1.0,
"3thexddcoacrn_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C162OHe"
]
},
"annotation":{
"bigg.reaction":[
"C162OHe"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C16DCc",
"name":"Production of Hexadecanedioylcarnitine",
"metabolites":{
"c16dc_c":1.0,
"coa_c":1.0,
"crn_c":-1.0,
"hexdicoa_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1374_AT1 or 1375_AT1 or 126129_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C16DCc"
]
},
"annotation":{
"bigg.reaction":[
"C16DCc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"C16DCe",
"name":"Transport of Hexadecanedioic Acid Mono-L-Carnitine Ester into Extra Cellular Space",
"metabolites":{
"c16dc_c":-1.0,
"c16dc_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C16DCe"
]
},
"annotation":{
"bigg.reaction":[
"C16DCe"
],
"sbo":"SBO:0000185"
}
},
{
"id":"FA160COAabcp_1",
"name":"Fatty acyl-CoA peroxisomal transport via ABC system (16:0)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"pmtcoa_c":-1.0,
"pmtcoa_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"215_AT1",
"subsystem":"Transport, peroxisomal",
"notes":{
"original_bigg_ids":[
"C16txc"
]
},
"annotation":{
"bigg.reaction":[
"FA160COAabcp_1"
],
"metanetx.reaction":[
"MNXR99100"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CYSTALArBATtc",
"name":"Transport of L-Cystine into the cell in exchange for L-Alanine by b0,+AT transporter at the apical surfaces of the membranes of small intestine and renal cells.",
"metabolites":{
"ala__L_c":-1.0,
"ala__L_e":1.0,
"cysi__L_c":1.0,
"cysi__L_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11136_AT1 and 6519_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CYSTALArBATtc"
]
},
"annotation":{
"bigg.reaction":[
"CYSTALArBATtc"
],
"metanetx.reaction":[
"MNXR97011"
],
"sbo":"SBO:0000185"
}
},
{
"id":"FOLt",
"name":"Folate transport via proton simport",
"metabolites":{
"fol_c":1.0,
"fol_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"113235_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"FOLTle"
]
},
"annotation":{
"bigg.reaction":[
"FOLt"
],
"metanetx.reaction":[
"MNXR99612"
],
"sbo":"SBO:0000185",
"seed.reaction":[
"rxn05255"
]
}
},
{
"id":"GLCSGLT1le",
"name":"Transport of D-glucose from extracellular space to cytosol of mucosal cells in small intestine",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"glc__D_c":1.0,
"glc__D_e":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"na1_c":2.0,
"na1_e":-2.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6523_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLCSGLT1le"
]
},
"annotation":{
"bigg.reaction":[
"GLCSGLT1le"
],
"metanetx.reaction":[
"MNXR100225"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLNyLATthc",
"name":"Transport of Glutamine by y+LAT1 or y+LAT2 with co-transporter of h in small intestine and kidney",
"metabolites":{
"arg__L_c":-1.0,
"arg__L_e":1.0,
"gln__L_c":1.0,
"gln__L_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(6520_AT1 and 9057_AT1) or (9056_AT1 and 6520_AT1)",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLNyLATthc"
]
},
"annotation":{
"bigg.reaction":[
"GLNyLATthc"
],
"metanetx.reaction":[
"MNXR100264"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLYGLYCNc",
"name":"Hydrolysis of glycylycine for uptake",
"metabolites":{
"gly_c":2.0,
"glygly_c":-1.0,
"h2o_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"84735_AT1 or 55748_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLYGLYCNc"
]
},
"annotation":{
"bigg.reaction":[
"GLYGLYCNc"
],
"metanetx.reaction":[
"MNXR100345"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GLYGLYPEPT1tc",
"name":"Transport of Glycyl-glycine by the apical PEPT1 amino acid transporters across the brush border cells of the enterocytes of the intestine and renal cells",
"metabolites":{
"glygly_c":1.0,
"glygly_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLYGLYPEPT1tc"
]
},
"annotation":{
"bigg.reaction":[
"GLYGLYPEPT1tc"
],
"metanetx.reaction":[
"MNXR100346"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLYPROPEPT1tc",
"name":"Transport of Glycylproline by the apical PEPT1 amino acid transporters across the brush border cells of the enterocytes of the intestine and renal cells",
"metabolites":{
"glypro_c":1.0,
"glypro_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLYPROPEPT1tc"
]
},
"annotation":{
"bigg.reaction":[
"GLYPROPEPT1tc"
],
"metanetx.reaction":[
"MNXR100359"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLYSARCNc",
"name":"Hydrolysis of glycylsarcosine for uptake",
"metabolites":{
"gly_c":1.0,
"glysar_c":-1.0,
"h2o_c":-1.0,
"sarcs_c":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1200_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLYSARCNc"
]
},
"annotation":{
"bigg.reaction":[
"GLYSARCNc"
],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"C181OHc",
"name":"Production of 3-Hydroxyoctadecenoylcarnitinec",
"metabolites":{
"3octdece1coa_c":-1.0,
"3octdece1crn_c":1.0,
"coa_c":1.0,
"crn_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1374_AT1 or 1375_AT1 or 126129_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C181OHc"
]
},
"annotation":{
"bigg.reaction":[
"C181OHc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"C30CPT1",
"name":"Production of propionylcarnitine",
"metabolites":{
"coa_c":1.0,
"crn_c":-1.0,
"pcrn_c":1.0,
"ppcoa_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1374_AT1 or 1375_AT1 or 126129_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C30CPT1"
]
},
"annotation":{
"bigg.reaction":[
"C30CPT1"
],
"metanetx.reaction":[
"MNXR96409"
],
"sbo":"SBO:0000176"
}
},
{
"id":"C40CPT1",
"name":"Production of butyrylcarnitine",
"metabolites":{
"btcoa_c":-1.0,
"c4crn_c":1.0,
"coa_c":1.0,
"crn_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1374_AT1 or 1375_AT1 or 126129_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C40CPT1"
]
},
"annotation":{
"bigg.reaction":[
"C40CPT1"
],
"metanetx.reaction":[
"MNXR96414"
],
"rhea":[
"44982",
"44980",
"44981",
"44983"
],
"sabiork":[
"6699"
],
"sbo":"SBO:0000176"
}
},
{
"id":"C4OHc",
"name":"Production of 3-hydroxybytyryl carnitinec",
"metabolites":{
"3bcrn_c":1.0,
"3hbcoa__R_c":-1.0,
"coa_c":1.0,
"crn_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1374_AT1 or 1375_AT1 or 126129_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C4OHc"
]
},
"annotation":{
"bigg.reaction":[
"C4OHc"
],
"metanetx.reaction":[
"MNXR96417"
],
"sbo":"SBO:0000176"
}
},
{
"id":"C4x",
"name":"Esterification of Butyrylcoa to Butyrylcarnitine for Transport",
"metabolites":{
"btcoa_x":-1.0,
"c4crn_x":1.0,
"coa_x":1.0,
"crn_x":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"54677_AT1",
"subsystem":"Transport, peroxisomal",
"notes":{
"original_bigg_ids":[
"C4x"
]
},
"annotation":{
"bigg.reaction":[
"C4x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"C50CPT1",
"name":"Production of isovalerylcarnitine",
"metabolites":{
"coa_c":1.0,
"crn_c":-1.0,
"ivcoa_c":-1.0,
"ivcrn_c":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1374_AT1 or 1375_AT1 or 126129_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C50CPT1"
]
},
"annotation":{
"bigg.reaction":[
"C50CPT1"
],
"metanetx.reaction":[
"MNXR96421"
],
"rhea":[
"44985",
"44984",
"44986",
"44987"
],
"sbo":"SBO:0000176"
}
},
{
"id":"C6CRNe",
"name":"Transport of Hexanoyl Carnitine into the Extra Cellular Fluid",
"metabolites":{
"c6crn_c":-1.0,
"c6crn_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C6CRNe"
]
},
"annotation":{
"bigg.reaction":[
"C6CRNe"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLYSARPEPT1tc",
"name":"Transport of Glycylsarcosine by the apical PEPT1 amino acid transporters across the brush border cells of the enterocytes of the intestine, renal cells and brain.",
"metabolites":{
"glysar_c":1.0,
"glysar_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLYSARPEPT1tc"
]
},
"annotation":{
"bigg.reaction":[
"GLYSARPEPT1tc"
],
"metanetx.reaction":[
"MNXR100362"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLYSNAT5tc",
"name":"Transport of Glycine into the cell coupled with co-transport with Sodium and counter transport with proton by SNAT5 transporter.",
"metabolites":{
"gly_c":1.0,
"gly_e":-1.0,
"h_c":-1.0,
"h_e":1.0,
"na1_c":1.0,
"na1_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"92745_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLYSNAT5tc"
]
},
"annotation":{
"bigg.reaction":[
"GLYSNAT5tc"
],
"metanetx.reaction":[
"MNXR100363"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HISyLATthc",
"name":"Transport of Histidine by y+LAT1 or y+LAT2 with co-transporter of h in small intestine and kidney",
"metabolites":{
"arg__L_c":-1.0,
"arg__L_e":1.0,
"h_c":1.0,
"h_e":-1.0,
"his__L_c":1.0,
"his__L_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(6520_AT1 and 9057_AT1) or (9056_AT1 and 6520_AT1)",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HISyLATthc"
]
},
"annotation":{
"bigg.reaction":[
"HISyLATthc"
],
"metanetx.reaction":[
"MNXR100651"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ILEATB0tc",
"name":"Transport of L-Isoleucine into the intestinal cells by ATB0 transporter",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"ile__L_c":1.0,
"ile__L_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11254_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ILEATB0tc"
]
},
"annotation":{
"bigg.reaction":[
"ILEATB0tc"
],
"metanetx.reaction":[
"MNXR100815"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LEUyLAThtc",
"name":"Transport of Leucine by y+LAT1 or y+LAT2 with co-transporter of h in small intestine and kidney",
"metabolites":{
"arg__L_c":-1.0,
"arg__L_e":1.0,
"h_c":1.0,
"h_e":-1.0,
"leu__L_c":1.0,
"leu__L_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(6520_AT1 and 9057_AT1) or (9056_AT1 and 6520_AT1)",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LEUyLAThtc"
]
},
"annotation":{
"bigg.reaction":[
"LEUyLAThtc"
],
"metanetx.reaction":[
"MNXR101059"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LYSATB0tc",
"name":"Transport of L-Lysine into the intestinal cells by ATB0 transporter",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"lys__L_c":1.0,
"lys__L_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11254_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LYSATB0tc"
]
},
"annotation":{
"bigg.reaction":[
"LYSATB0tc"
],
"metanetx.reaction":[
"MNXR101255"
],
"sbo":"SBO:0000185"
}
},
{
"id":"METyLATthc",
"name":"Transport of Methionine by y+LAT1 or y+LAT2 with co-transporter of h in small intestine and kidney",
"metabolites":{
"arg__L_c":-1.0,
"arg__L_e":1.0,
"h_c":1.0,
"h_e":-1.0,
"met__L_c":1.0,
"met__L_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(6520_AT1 and 9057_AT1) or (9056_AT1 and 6520_AT1)",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"METyLATthc"
]
},
"annotation":{
"bigg.reaction":[
"METyLATthc"
],
"metanetx.reaction":[
"MNXR101494"
],
"sbo":"SBO:0000185"
}
},
{
"id":"OCDEAFABP1tc",
"name":"Transport of octadecenoyl coA into the enterocytes",
"metabolites":{
"ocdcea_c":-2.0,
"ocdcea_r":2.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2168_AT1",
"subsystem":"Transport, endoplasmic reticular",
"notes":{
"original_bigg_ids":[
"OCDEAFABP1tc"
]
},
"annotation":{
"bigg.reaction":[
"OCDEAFABP1tc"
],
"metanetx.reaction":[
"MNXR102145"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_gltcho_e",
"name":"Exchange reaction for beta glucan-taurocholic acid complex",
"metabolites":{
"gltcho_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_gltcho[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_gltcho_e"
],
"metanetx.reaction":[
"MNXR142979"
],
"sbo":"SBO:0000627"
}
},
{
"id":"C6CRNtcx",
"name":"Transport of Hexanoylcarnitine into Cytosol",
"metabolites":{
"c6crn_c":1.0,
"c6crn_x":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"788_AT1",
"subsystem":"Transport, peroxisomal",
"notes":{
"original_bigg_ids":[
"C6CRNtcx"
]
},
"annotation":{
"bigg.reaction":[
"C6CRNtcx"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C6DCe",
"name":"Transport of adipoyl carnitine into the extra cellular fluid",
"metabolites":{
"c6dc_c":-1.0,
"c6dc_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C6DCe"
]
},
"annotation":{
"bigg.reaction":[
"C6DCe"
],
"metanetx.reaction":[
"MNXR96424"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SK_c81coa_c",
"name":"Sink for Octenoyl Coenzyme A",
"metabolites":{
"c81coa_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_c81coa[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_c81coa_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"C81CPT1",
"name":"Production of Ocetenoylcarnitine",
"metabolites":{
"c81coa_c":-1.0,
"c81crn_c":1.0,
"coa_c":1.0,
"crn_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1374_AT1 or 1375_AT1 or 126129_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C81CPT1"
]
},
"annotation":{
"bigg.reaction":[
"C81CPT1"
],
"sbo":"SBO:0000176"
}
},
{
"id":"C8CRNe",
"name":"Transport of octanoyl carnitine into the extra cellular space",
"metabolites":{
"c8crn_c":-1.0,
"c8crn_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C8CRNe"
]
},
"annotation":{
"bigg.reaction":[
"C8CRNe"
],
"metanetx.reaction":[
"MNXR96429"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C8DCc",
"name":"Production of suberylcarnitine",
"metabolites":{
"c8dc_c":1.0,
"coa_c":1.0,
"crn_c":-1.0,
"sbcoa_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1374_AT1 or 1375_AT1 or 126129_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C8DCc"
]
},
"annotation":{
"bigg.reaction":[
"C8DCc"
],
"metanetx.reaction":[
"MNXR96430"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_glygly_e",
"name":"Exchange reaction for glycylglycine",
"metabolites":{
"glygly_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_glygly[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_glygly_e"
],
"metanetx.reaction":[
"MNXR100346"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_gum_e",
"name":"Exchange reaction for guar gums",
"metabolites":{
"gum_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_gum[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_gum_e"
],
"metanetx.reaction":[
"MNXR143003"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_gumdchac_e",
"name":"Exchange reaction for guar gum-deoxyxholic acid complex",
"metabolites":{
"gumdchac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_gumdchac[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_gumdchac_e"
],
"metanetx.reaction":[
"MNXR143004"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_gumgchol_e",
"name":"Exchange reaction for guar gum-glycocholate complex",
"metabolites":{
"gumgchol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_gumgchol[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_gumgchol_e"
],
"metanetx.reaction":[
"MNXR143005"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pectindchac_e",
"name":"Exchange reaction for pectin-deoxycholic acid complex",
"metabolites":{
"pectindchac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pectindchac[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pectindchac_e"
],
"metanetx.reaction":[
"MNXR143052"
],
"sbo":"SBO:0000627"
}
},
{
"id":"C8DCe",
"name":"Transport of suberyl carnitine into the extra cellular space",
"metabolites":{
"c8dc_c":-1.0,
"c8dc_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"C8DCe"
]
},
"annotation":{
"bigg.reaction":[
"C8DCe"
],
"metanetx.reaction":[
"MNXR96431"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C9BRxtc",
"name":"Transport of dimethylnonanoylcarnitine from peroxisomes to cytosol",
"metabolites":{
"dmnoncrn_c":1.0,
"dmnoncrn_x":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"788_AT1",
"subsystem":"Transport, peroxisomal",
"notes":{
"original_bigg_ids":[
"C9BRxtc"
]
},
"annotation":{
"bigg.reaction":[
"C9BRxtc"
],
"metanetx.reaction":[
"MNXR96433"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_psyltdechol_e",
"name":"Exchange reaction for psyllium-taurodeoxycholic acid complex",
"metabolites":{
"psyltdechol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_psyltdechol[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_psyltdechol_e"
],
"metanetx.reaction":[
"MNXR143061"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tdechola_e",
"name":"Exchange reaction for Taurodeoxycholic acid",
"metabolites":{
"tdechola_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tdechola[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tdechola_e"
],
"metanetx.reaction":[
"MNXR143077"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_cysam_e",
"name":"Exchange reaction for cysam",
"metabolites":{
"cysam_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_cysam[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_cysam_e"
],
"metanetx.reaction":[
"MNXR142946"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_dpcoa_e",
"name":"Exchange reaction for dpcoa",
"metabolites":{
"dpcoa_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_dpcoa[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_dpcoa_e"
],
"metanetx.reaction":[
"MNXR97764"
],
"sbo":"SBO:0000627"
}
},
{
"id":"DCATDc",
"name":"Transport of Decanoate (n-C10:0) into the cell by diffusion",
"metabolites":{
"dca_c":1.0,
"dca_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11001_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"DCATDc"
]
},
"annotation":{
"bigg.reaction":[
"DCATDc"
],
"metanetx.reaction":[
"MNXR97181"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DCATDr",
"name":"Transport of Decanoate (n-C10:0) into the E.R. by diffusion",
"metabolites":{
"dca_c":-1.0,
"dca_r":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"DCATDr"
]
},
"annotation":{
"bigg.reaction":[
"DCATDr"
],
"metanetx.reaction":[
"MNXR97181"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DCSPTN1COAtxc",
"name":"Transport of docosapentenoylcoa into peroxisomes.",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"dcsptn1coa_c":-1.0,
"dcsptn1coa_x":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"215_AT1 and 225_AT1",
"subsystem":"Transport, peroxisomal",
"notes":{
"original_bigg_ids":[
"DCSPTN1COAtxc"
]
},
"annotation":{
"bigg.reaction":[
"DCSPTN1COAtxc"
],
"metanetx.reaction":[
"MNXR97195"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DDECCRNe",
"name":"Transport of Lauroyl Carnitine into Extra Cellular Space",
"metabolites":{
"ddeccrn_c":-1.0,
"ddeccrn_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"DDECCRNe"
]
},
"annotation":{
"bigg.reaction":[
"DDECCRNe"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DDECE1CRNe",
"name":"Transport of Dodecenoyl Carnitine into Extra Cellular Space",
"metabolites":{
"ddece1crn_c":-1.0,
"ddece1crn_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"DDECE1CRNe"
]
},
"annotation":{
"bigg.reaction":[
"DDECE1CRNe"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DECCRNe",
"name":"Transport of 3-hydroxydecanoyl carnitine into extra cellular space",
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}
},
{
"id":"LEUGLYHYc",
"name":"Hydrolysis of leucylglycine",
"metabolites":{
"gly_c":1.0,
"h2o_c":-1.0,
"leu__L_c":1.0,
"leugly_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LEUGLYHYc"
]
},
"annotation":{
"bigg.reaction":[
"LEUGLYHYc"
],
"ec-code":[
"3.4.11.1"
],
"metanetx.reaction":[
"MNXR101042"
],
"sabiork":[
"12759"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC184C164x",
"name":"Fatty Acid Beta Oxidation (C18:4->C16:4), Peroxisomal",
"metabolites":{
"4hexdtetcoa_x":1.0,
"accoa_x":1.0,
"coa_x":-1.0,
"h2o2_x":1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0,
"o2_x":-1.0,
"strdnccoa_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1 and 1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC184C164x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC184C164x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC184x",
"name":"Isomerization (C18:4), Peroxisomal",
"metabolites":{
"2octdectecoa_x":1.0,
"3octdectecoa_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1962_AT1 or 10455_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC184x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC184x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC185m",
"name":"Isomerization (C18:5), Mitochondrial",
"metabolites":{
"2octpencoa_m":1.0,
"3octpencoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1632_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC185m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC185m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC201C181x",
"name":"Fatty Acid Beta Xoidation (C20:1->C18:1), Peroxisomal",
"metabolites":{
"accoa_x":1.0,
"coa_x":-1.0,
"ei11ecoa_x":-1.0,
"h2o2_x":1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0,
"o2_x":-1.0,
"ocde9ecoa_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1 and 1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC201C181x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC201C181x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC204C184m",
"name":"Fatty Acid Beta Oxidation (C20:4->C18:4), Mitochondrial",
"metabolites":{
"3octdectecoa_m":1.0,
"accoa_m":1.0,
"coa_m":-1.0,
"eitetcoa_m":-1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"nad_m":-1.0,
"nadh_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1 and 3032_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC204C184m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC204C184m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC205C184x",
"name":"Fatty Acid Beta Oxidation (C20:5->C18:4), Peroxisomal",
"metabolites":{
"3octdectecoa_x":1.0,
"accoa_x":1.0,
"coa_x":-1.0,
"eipencoa_x":-1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC205C184x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC205C184x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC205C185m",
"name":"Fatty Acid Beta Oxidation (C20:5->C18:5), Mitochondrial",
"metabolites":{
"3octpencoa_m":1.0,
"5eipencoa_m":-1.0,
"accoa_m":1.0,
"coa_m":-1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"nad_m":-1.0,
"nadh_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1 and 3032_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC205C185m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC205C185m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"MEVK1",
"name":"Mevalonate kinase  atp ",
"metabolites":{
"5pmev_c":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h_c":1.0,
"mev__R_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"4598_AT1",
"subsystem":"Squalene and cholesterol synthesis",
"notes":{
"original_bigg_ids":[
"MEVK1c"
]
},
"annotation":{
"bigg.reaction":[
"MEVK1"
],
"biocyc":[
"META:MEVALONATE-KINASE-RXN"
],
"ec-code":[
"2.7.1.36"
],
"kegg.reaction":[
"R02245"
],
"metanetx.reaction":[
"MNXR101495"
],
"rhea":[
"17066",
"17068",
"17067",
"17065"
],
"sabiork":[
"2215"
],
"sbo":"SBO:0000176",
"seed.reaction":[
"rxn01607"
]
}
},
{
"id":"MTHFR3",
"name":"5 10 methylenetetrahydrofolatereductase  NADPH ",
"metabolites":{
"5mthf_c":1.0,
"h_c":-2.0,
"mlthf_c":-1.0,
"nadp_c":1.0,
"nadph_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"4524_AT1",
"subsystem":"Folate metabolism",
"notes":{
"original_bigg_ids":[
"MTHFR3"
]
},
"annotation":{
"bigg.reaction":[
"MTHFR3"
],
"ec-code":[
"1.5.1.20"
],
"kegg.reaction":[
"R01224"
],
"metanetx.reaction":[
"MNXR101752"
],
"rhea":[
"19817",
"19818",
"19820",
"19819"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PAN4PPe",
"name":"Phosphatase, Extracellular",
"metabolites":{
"h2o_e":-1.0,
"pan4p_e":-1.0,
"pi_e":1.0,
"ptth_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"CoA synthesis",
"notes":{
"original_bigg_ids":[
"PAN4PPe"
]
},
"annotation":{
"bigg.reaction":[
"PAN4PPe"
],
"ec-code":[
"3.1.3.-"
],
"kegg.reaction":[
"R10748"
],
"metanetx.reaction":[
"MNXR102343"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PGLc",
"name":"6-Phosphogluconolactonase",
"metabolites":{
"6pgc_c":3.0,
"6pgl_c":-3.0,
"h2o_c":-3.0,
"h_c":3.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"25796_AT1",
"subsystem":"Pentose phosphate pathway",
"notes":{
"original_bigg_ids":[
"PGLc"
]
},
"annotation":{
"bigg.reaction":[
"PGLc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PMEVK",
"name":"Phosphomevalonate kinase",
"metabolites":{
"5dpmev_c":1.0,
"5pmev_c":-1.0,
"adp_c":1.0,
"atp_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10654_AT1",
"subsystem":"Squalene and cholesterol synthesis",
"notes":{
"original_bigg_ids":[
"PMEVKc"
]
},
"annotation":{
"bigg.reaction":[
"PMEVK"
],
"biocyc":[
"META:PHOSPHOMEVALONATE-KINASE-RXN"
],
"ec-code":[
"2.7.4.2"
],
"kegg.reaction":[
"R03245"
],
"metanetx.reaction":[
"MNXR103043"
],
"rhea":[
"16341",
"16344",
"16342",
"16343"
],
"sabiork":[
"3066"
],
"sbo":"SBO:0000176",
"seed.reaction":[
"rxn02322"
]
}
},
{
"id":"PNTOt5",
"name":"Pantothenate sodium symporter  II",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"na1_c":2.0,
"na1_e":-2.0,
"pi_c":1.0,
"pnto__R_c":1.0,
"pnto__R_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8884_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PNTOt5le"
]
},
"annotation":{
"bigg.reaction":[
"PNTOt5"
],
"metanetx.reaction":[
"MNXR103055"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PTRCtex2",
"name":"Putrescine excretion  cytosol to extracellular ",
"metabolites":{
"ptrc_c":-1.0,
"ptrc_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PTCRTD"
]
},
"annotation":{
"bigg.reaction":[
"PTRCtex2"
],
"metanetx.reaction":[
"MNXR103339"
],
"sbo":"SBO:0000185",
"seed.reaction":[
"rxn09216",
"rxn13393"
]
}
},
{
"id":"FAOXC225C204x",
"name":"Fatty Acid Beta Oxidation (C22:5->C20:4), Peroxisomal",
"metabolites":{
"2docopencoa_x":-1.0,
"accoa_x":1.0,
"coa_x":-1.0,
"eitetcoa_x":1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC225C204x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC225C204x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC225m",
"name":"Isomerization (C22:5), Mitochondrial",
"metabolites":{
"2docopencoa_m":1.0,
"3docopencoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1632_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC225m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC225m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC225x",
"name":"Isomerization (C22:5), Peroxisomal",
"metabolites":{
"2docopencoa_x":1.0,
"3docopencoa_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1962_AT1 or 10455_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC225x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC225x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC226C205m",
"name":"Fatty Acid Beta Oxidation (C22:6->C20:5), Mitochondrial",
"metabolites":{
"2docohexecoa_m":-1.0,
"5eipencoa_m":1.0,
"accoa_m":1.0,
"coa_m":-1.0,
"h2o_m":-1.0,
"h_m":1.0,
"nad_m":-1.0,
"nadh_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1 and 3032_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC226C205m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC226C205m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"RPEc",
"name":"Ribulose 5-Phosphate 3-Epimerase",
"metabolites":{
"ru5p__D_c":-2.0,
"xu5p__D_c":2.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6120_AT1 or 6120_AT2",
"subsystem":"Pentose phosphate pathway",
"notes":{
"original_bigg_ids":[
"RPEc"
]
},
"annotation":{
"bigg.reaction":[
"RPEc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TRPB0AT3tc",
"name":"Tyrptophan Transport by B0At3",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"na1_c":1.0,
"na1_e":-1.0,
"trp__L_c":1.0,
"trp__L_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"348932_AT1 and 57393_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TRPB0AT3tc"
]
},
"annotation":{
"bigg.reaction":[
"TRPB0AT3tc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CAMPt",
"name":"CAMP transport (ATP-dependent)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"camp_c":-1.0,
"camp_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10257_AT1 or 10057_AT2 or 10057_AT1 or 85320_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CAMPt"
]
},
"annotation":{
"bigg.reaction":[
"CAMPt"
],
"metanetx.reaction":[
"MNXR96448"
],
"sbo":"SBO:0000185"
}
},
{
"id":"FAOXC226C225x",
"name":"Fatty Acid Beta Oxidation (C22:6->C22:5), Peroxisomal",
"metabolites":{
"3docopencoa_x":1.0,
"docohexcoa_x":-1.0,
"h_x":-1.0,
"nadp_x":1.0,
"nadph_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"26063_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC226C225x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC226C225x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC226C227m",
"name":"Fatty Acid Beta Oxidation (C22:6->C22:7), Mitochondrial",
"metabolites":{
"c226coa_m":-1.0,
"docohepcoa_m":1.0,
"fad_m":-1.0,
"fadh2_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC226C227m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC226C227m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FATP5t",
"name":"Fatty acid electroneutral transport",
"metabolites":{
"arachd_c":-1.0,
"arachd_e":1.0,
"na1_c":-1.0,
"na1_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10998_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"FATP5t"
]
},
"annotation":{
"bigg.reaction":[
"FATP5t"
],
"metanetx.reaction":[
"MNXR99454"
],
"sbo":"SBO:0000185"
}
},
{
"id":"FAOXC226m",
"name":"Isomerization (C22:6), Mitochondrial",
"metabolites":{
"2docohexecoa_m":1.0,
"docosahexcoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1632_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC226m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC226m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC22C20x",
"name":"Fatty Acid Beta Oxidation (C22->C20), Peroxisomal",
"metabolites":{
"accoa_x":1.0,
"arachcoa_x":1.0,
"coa_x":-1.0,
"docoscoa_x":-1.0,
"h2o2_x":1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0,
"o2_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1 and 1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC22C20x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC22C20x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC241C221x",
"name":"Fatty Acid Beta Oxidation (C24:1->C22:1), Peroxisomal",
"metabolites":{
"accoa_x":1.0,
"coa_x":-1.0,
"doco13ecoa_x":1.0,
"h2o2_x":1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0,
"nrvnccoa_x":-1.0,
"o2_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1 and 1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC24C22x",
"name":"Fatty Acid Beta Oxidation (C24->C22), Peroxisomal",
"metabolites":{
"accoa_x":1.0,
"coa_x":-1.0,
"docoscoa_x":1.0,
"h2o2_x":1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0,
"o2_x":-1.0,
"ttccoa_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1 and 1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"FRUt4",
"name":"D-fructose transport  via sodium cotransport",
"metabolites":{
"fru_c":1.0,
"fru_e":-1.0,
"na1_c":1.0,
"na1_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"125206_AT1 or 200010_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
"FRUt4"
],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"GCHOLAt3",
"name":"ABC bile acid transporter",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"gchola_c":-1.0,
"gchola_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
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},
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},
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},
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},
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},
{
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{
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},
{
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{
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{
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{
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{
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"nadh_m":1.0,
"tddedicoa_m":1.0,
"ttetddcoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1 and 3032_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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"FAOXTC142TC122m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXTC142TC122m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PHACGLYc",
"name":"Glycine N-Acyltransferase, Phenylacetate",
"metabolites":{
"coa_c":1.0,
"gly_c":-1.0,
"h_c":1.0,
"phaccoa_c":-1.0,
"phacgly_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Valine, leucine, and isoleucine metabolism",
"notes":{
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"PHACGLYc"
]
},
"annotation":{
"bigg.reaction":[
"PHACGLYc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GLUTCOAACBP",
"name":"Transport of Glutaryl Coenzyme A from Mitochondria into Cytosol",
"metabolites":{
"glutcoa_c":1.0,
"glutcoa_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1622_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"GLUTCOAACBP"
]
},
"annotation":{
"bigg.reaction":[
"GLUTCOAACBP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LCAT12e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Oleoylglycerophosphoethanolamine (Delta 9)",
"metabolites":{
"chsterol_e":-1.0,
"pe_hs_e":-1.0,
"peole_hs_e":1.0,
"xolest2_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
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"LCAT12e"
]
},
"annotation":{
"bigg.reaction":[
"LCAT12e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT13e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Palmitoleoylglycerophosphocholine (Delta 9)",
"metabolites":{
"chsterol_e":-1.0,
"pchol_hs_e":-1.0,
"pcholpalme_hs_e":1.0,
"xolest2_hs_e":1.0
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"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
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"LCAT13e"
]
},
"annotation":{
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"LCAT13e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT54e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Palmitoylglycerophosphoethanolamine",
"metabolites":{
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"pe_hs_e":-1.0,
"pepalm_hs_e":1.0,
"xolest2_hs_e":1.0
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"subsystem":"Cholesterol metabolism",
"notes":{
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"LCAT54e"
]
},
"annotation":{
"bigg.reaction":[
"LCAT54e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT15e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Stearoylglycerophosphocholine",
"metabolites":{
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"pchol_hs_e":-1.0,
"pcholste_hs_e":1.0,
"xolest2_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
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"LCAT15e"
]
},
"annotation":{
"bigg.reaction":[
"LCAT15e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HDDACBP",
"name":"Transport of (S)-3-Hydroxydodecanoyl-CoA from mitochondria into the cytosol",
"metabolites":{
"3hddcoa_c":1.0,
"3hddcoa_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1622_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"HDDACBP"
]
},
"annotation":{
"bigg.reaction":[
"HDDACBP"
],
"metanetx.reaction":[
"MNXR100585"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HDECAACBP",
"name":"Transport of 3-hydroxyhexadecanoylcoa from mitochondria into the cytosol",
"metabolites":{
"3hexdcoa_c":1.0,
"3hexdcoa_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1622_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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"HDECAACBP"
]
},
"annotation":{
"bigg.reaction":[
"HDECAACBP"
],
"metanetx.reaction":[
"MNXR100586"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HDECEACBP",
"name":"Transport of 3-Hydroxyhexadecenoylcoa from Mitochondria into the Cytosol",
"metabolites":{
"3hdeccoa_c":1.0,
"3hdeccoa_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1622_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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"HDECEACBP"
]
},
"annotation":{
"bigg.reaction":[
"HDECEACBP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HEDCECRNe",
"name":"Transport of 3-Hydroxyhexadecenoyl Carnitine into Extra Cellular Space",
"metabolites":{
"3hdececrn_c":-1.0,
"3hdececrn_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"HEDCECRNe"
],
"sbo":"SBO:0000185"
}
},
{
"id":"MAGOLE_HSe",
"name":"Lipase, Extracellular, Formation of 1-Oleoylglycerol",
"metabolites":{
"Rtotal_e":1.0,
"dag_hs_e":-1.0,
"h2o_e":-1.0,
"h_e":1.0,
"magole_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"4023_AT1 or 1056_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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"MAGOLE_HSe"
]
},
"annotation":{
"bigg.reaction":[
"MAGOLE_HSe"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LPS5e",
"name":"Lipase, Extracellular, Formation of 1-Palmitoylglycerol",
"metabolites":{
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"dag_hs_e":-1.0,
"h2o_e":-1.0,
"h_e":1.0,
"magpalm_hs_e":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"4023_AT1 or 1056_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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"LPS5e"
]
},
"annotation":{
"bigg.reaction":[
"LPS5e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PCHOLMYR_HSPLA2",
"name":"Formation of 1-Myristoylglycerophosphocholine by Phospholipase A2",
"metabolites":{
"Rtotal2_c":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pchol_hs_c":-1.0,
"pcholmyr_hs_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8398_AT1 or 5320_AT1 or 8398_AT2 or 50487_AT1 or 5321_AT1 or 81579_AT1 or 5322_AT1 or 64600_AT1 or 100137049_AT1 or 123745_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"PCHOLPALM_HSPLA2",
"name":"Formation of 1-Palmitoylglycerophosphocholine by Phospholipase A2",
"metabolites":{
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"h2o_c":-1.0,
"h_c":1.0,
"pchol_hs_c":-1.0,
"pcholpalm_hs_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"8398_AT1 or 5320_AT1 or 8398_AT2 or 50487_AT1 or 5321_AT1 or 81579_AT1 or 5322_AT1 or 64600_AT1 or 100137049_AT1 or 123745_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"PCHOLPALM_HSPLA2"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HEXCOAACBP",
"name":"Transport of Hexanoyl Coenzyme A (N-C6:0CoA) from Mitochondria into Cytosol",
"metabolites":{
"hxcoa_c":1.0,
"hxcoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1622_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"HEXCOAACBP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HEXDCRNe",
"name":"Transport of 3-hydroxyhexadecanoyl carnitine into extra cellular space",
"metabolites":{
"3hexdcrn_c":-1.0,
"3hexdcrn_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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"HEXDCRNe"
],
"metanetx.reaction":[
"MNXR100618"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PEPALM_HSPLA2",
"name":"Formation of 1-Palmitoylglycerophosphoethanolamine by Phospholipase A2",
"metabolites":{
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"h2o_c":-1.0,
"h_c":1.0,
"pe_hs_c":-1.0,
"pepalm_hs_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8398_AT1 or 5320_AT1 or 8398_AT2 or 50487_AT1 or 5321_AT1 or 81579_AT1 or 5322_AT1 or 64600_AT1 or 100137049_AT1 or 123745_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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]
},
"annotation":{
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"PEPALM_HSPLA2"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FATP6t",
"name":"Fatty acid electroneutral transport",
"metabolites":{
"adrn_c":-1.0,
"adrn_e":1.0,
"na1_c":-1.0,
"na1_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10998_AT1 or 11001_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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"FATP6t"
]
},
"annotation":{
"bigg.reaction":[
"FATP6t"
],
"metanetx.reaction":[
"MNXR99455"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLSTE_HSPLA2",
"name":"Formation of 1-Stearoylglycerophosphocholine by Phospholipase A2",
"metabolites":{
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"h2o_c":-1.0,
"h_c":1.0,
"pchol_hs_c":-1.0,
"pcholste_hs_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"8398_AT1 or 5320_AT1 or 8398_AT2 or 50487_AT1 or 5321_AT1 or 81579_AT1 or 5322_AT1 or 64600_AT1 or 100137049_AT1 or 123745_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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"PCHOLSTE_HSPLA2"
]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"PCHOL2OLE_HSPLA2",
"name":"Formation of 2-Oleoylglycerophosphocholine by Phospholipase A2",
"metabolites":{
"Rtotal2_c":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pchol2ole_hs_c":1.0,
"pchol_hs_c":-1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"8398_AT1 or 5320_AT1 or 8398_AT2 or 50487_AT1 or 5321_AT1 or 81579_AT1 or 5322_AT1 or 64600_AT1 or 100137049_AT1 or 123745_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"PCHOL2STE_HSPLA2",
"name":"Formation of 2-Stearoylglycerophosphocholine by Phospholipase A2",
"metabolites":{
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"h2o_c":-1.0,
"h_c":1.0,
"pchol2ste_hs_c":1.0,
"pchol_hs_c":-1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"8398_AT1 or 5320_AT1 or 8398_AT2 or 50487_AT1 or 5321_AT1 or 81579_AT1 or 5322_AT1 or 64600_AT1 or 100137049_AT1 or 123745_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HEXDICOAACBP",
"name":"Transport of Hexadecanedioyl Coa",
"metabolites":{
"hexdicoa_c":1.0,
"hexdicoa_r":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1622_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HOCDACBP",
"name":"Transport of (S)-3-Hydroxyoctadecanoyl Coenzyme A from Mitochondria into the Cytosol",
"metabolites":{
"3hodcoa_c":1.0,
"3hodcoa_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1622_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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"HOCDACBP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HOCTDACBP",
"name":"Transport of 3-Hydroxyoctadecenoylcoa from Mitochondria into the Cytosol",
"metabolites":{
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"3octdece1coa_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1622_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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"HOCTDACBP"
]
},
"annotation":{
"bigg.reaction":[
"HOCTDACBP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HOCTDEC2CRNe",
"name":"Transport of 3-Hydroxyoctadecadienoyl Carnitine into Extra Cellular Space",
"metabolites":{
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"3octdec2crn_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HOCTDECCRNe",
"name":"Transport of 3-Hydroxyoctadecanoyl Carnitine into Extra Cellular Space",
"metabolites":{
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"3octdeccrn_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN15_HSPLA2",
"name":"Formation of 1-Pentadecanoylglycerophosphocholine, Sn1-Lpc (15:0) by Phospholipase A2",
"metabolites":{
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"h2o_c":-1.0,
"h_c":1.0,
"pchol_hs_c":-1.0,
"pcholn15_hs_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"8398_AT1 or 5320_AT1 or 8398_AT2 or 50487_AT1 or 5321_AT1 or 81579_AT1 or 5322_AT1 or 64600_AT1 or 100137049_AT1 or 123745_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"PCHOLN183_HSPLA2",
"name":"Formation of 1-Octadeca-Trienoylglycerophosphocholine, Sn1-Lpc (18:3, Delta 9, 12, 15) by Phospholipase A2",
"metabolites":{
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"h2o_c":-1.0,
"h_c":1.0,
"pchol_hs_c":-1.0,
"pcholn183_hs_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"8398_AT1 or 5320_AT1 or 8398_AT2 or 50487_AT1 or 5321_AT1 or 81579_AT1 or 5322_AT1 or 64600_AT1 or 100137049_AT1 or 123745_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"PCHOLN19_HSPLA2",
"name":"Formation of 1-NoNADecanoylglycerophosphocholine, Sn1-Lpc (19:0) by Phospholipase A2",
"metabolites":{
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"h2o_c":-1.0,
"h_c":1.0,
"pchol_hs_c":-1.0,
"pcholn19_hs_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"8398_AT1 or 5320_AT1 or 8398_AT2 or 50487_AT1 or 5321_AT1 or 81579_AT1 or 5322_AT1 or 64600_AT1 or 100137049_AT1 or 123745_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"PCHOLN201_HSPLA2",
"name":"Formation of 1-Eicosenoylglycerophosphocholine (Delta 11) , Sn1-Lpc (20:1) by Phospholipase A2",
"metabolites":{
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"h2o_c":-1.0,
"h_c":1.0,
"pchol_hs_c":-1.0,
"pcholn201_hs_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"8398_AT1 or 5320_AT1 or 8398_AT2 or 50487_AT1 or 5321_AT1 or 81579_AT1 or 5322_AT1 or 64600_AT1 or 100137049_AT1 or 123745_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"PCHOLN204_HSPLA2",
"name":"Formation of 1-Eicosatetraenoylglycerophosphocholine (Delta 8, 11, 14, 17), Sn1-Lpc (20:4) by Phospholipase A2",
"metabolites":{
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"h2o_c":-1.0,
"h_c":1.0,
"pchol_hs_c":-1.0,
"pcholn204_hs_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"8398_AT1 or 5320_AT1 or 8398_AT2 or 50487_AT1 or 5321_AT1 or 81579_AT1 or 5322_AT1 or 64600_AT1 or 100137049_AT1 or 123745_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"PCHOLDEIC_HSPLA2",
"name":"Formation of 1-Eicosadienoylglycerophosphocholine (Delta 11, 14) by Phospholipase A2",
"metabolites":{
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"h2o_c":-1.0,
"h_c":1.0,
"pchol_hs_c":-1.0,
"pcholeic_hs_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"8398_AT1 or 5320_AT1 or 8398_AT2 or 50487_AT1 or 5321_AT1 or 81579_AT1 or 5322_AT1 or 64600_AT1 or 100137049_AT1 or 123745_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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]
},
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"bigg.reaction":[
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],
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}
},
{
"id":"PCHOLLINL_HSPLA2",
"name":"Formation of 1-Linoleoylglycerophosphocholine (Delta 9, 12) by Phospholipase A2",
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},
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],
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},
{
"id":"OCD11CRNCACT",
"name":"Transport of 11-octadecenoyl carnitine into the mitochondrial matrix",
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]
},
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"OCD11CRNCACT"
],
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],
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}
},
{
"id":"OCD11CRNCPT2_1",
"name":"Transport of 11-Octadecenoyl Carnitine into the Mitochondrial Matrix",
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]
},
"annotation":{
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"OCD11CRNCPT2_1"
],
"sbo":"SBO:0000176"
}
},
{
"id":"OCTDEC2ACBP",
"name":"Transport of 3-Hydroxyoctadecadienoyl Coenzyme A from Mitochondria into Cytosol",
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"3ocddcoa_m":-1.0
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"subsystem":"Fatty acid oxidation",
"notes":{
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"OCTDEC2ACBP"
]
},
"annotation":{
"bigg.reaction":[
"OCTDEC2ACBP"
],
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}
},
{
"id":"OCTDECCACT",
"name":"Transport of Octadecenoyl Coenzyme A into Mitochondrial Matrix",
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"788_AT1",
"subsystem":"Fatty acid oxidation",
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"OCTDECCACT"
]
},
"annotation":{
"bigg.reaction":[
"OCTDECCACT"
],
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}
},
{
"id":"OCTDECCPT2",
"name":"Transport of Octadecenoyl Coenzyme A into Mitochondrial Matrix",
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"crn_m":1.0,
"octdececoa_m":1.0,
"octdececrn_m":-1.0
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"subsystem":"Fatty acid oxidation",
"notes":{
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"OCTDECCPT2"
]
},
"annotation":{
"bigg.reaction":[
"OCTDECCPT2"
],
"sbo":"SBO:0000176"
}
},
{
"id":"OMHDOCOSACTD",
"name":"Transport of W-Hydroxydocosanoic Acid by Diffusion",
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"omhdocosac_r":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
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"OMHDOCOSACTD"
]
},
"annotation":{
"bigg.reaction":[
"OMHDOCOSACTD"
],
"sbo":"SBO:0000185"
}
},
{
"id":"OMHPALTD",
"name":"Transport of W-Hydroxypalmitic Acid by Diffusion",
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"whhdca_c":1.0,
"whhdca_r":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
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"OMHPALTD"
]
},
"annotation":{
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"OMHPALTD"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PRISTCOAtcx",
"name":"Transport of pristanoylcoa from cytosol to peroxisomes.",
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"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"pristcoa_c":-1.0,
"pristcoa_x":1.0
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"gene_reaction_rule":"5825_AT1",
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"notes":{
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"PRISTCOAtcx"
]
},
"annotation":{
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"PRISTCOAtcx"
],
"metanetx.reaction":[
"MNXR103183"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SEBACACT",
"name":"Activation of sebacic acidd",
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"atp_c":-1.0,
"coa_c":-1.0,
"ppi_c":1.0,
"sebacid_c":-1.0,
"sebcoa_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
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"SEBACACT"
]
},
"annotation":{
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"SEBACACT"
],
"metanetx.reaction":[
"MNXR104305"
],
"sbo":"SBO:0000176"
}
},
{
"id":"SEBACIDTD",
"name":"Transport of sebacic acid into cytosol (diffusion)",
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"sebacid_x":-1.0
},
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"SEBACIDtx"
]
},
"annotation":{
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"SEBACIDTD"
],
"metanetx.reaction":[
"MNXR104306"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE4843HYDc",
"name":"Acylcoa Hydrolase, Cis, Cis-11, 14-Eicosadienoyl Coenzyme A",
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"coa_c":1.0,
"eidi1114ac_c":1.0,
"h2o_c":-1.0,
"h_c":1.0
},
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"CE4843HYDc"
]
},
"annotation":{
"bigg.reaction":[
"CE4843HYDc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FACOAE60",
"name":"Fatty-acid-CoA thioesterase (hexanoate)",
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"h2o_c":-1.0,
"h_c":1.0,
"hxa_c":1.0,
"hxcoa_c":-1.0
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
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"HXCOAc"
]
},
"annotation":{
"bigg.reaction":[
"FACOAE60"
],
"metanetx.reaction":[
"MNXR99139"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TETDECA511ACc",
"name":"Hydrolysis of Tetradecadienoyl Coenzyme A to Cis-5, 8-Tetradecadienoic Acid ",
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"h2o_c":-1.0,
"h_c":1.0,
"tetdec2coa_c":-1.0,
"tetdeca511ac_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
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"TETDECA511ACc"
]
},
"annotation":{
"bigg.reaction":[
"TETDECA511ACc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMCARNc",
"name":"Formation of Homocarnosine",
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"amp_c":1.0,
"atp_c":-1.0,
"h_c":1.0,
"his__L_c":-1.0,
"hmcarn_c":1.0,
"ppi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Histidine metabolism",
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"HMCARNc"
]
},
"annotation":{
"bigg.reaction":[
"HMCARNc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"METTRANSc",
"name":"Methionine Transaminase",
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"ala__L_c":1.0,
"met__L_c":-1.0,
"pyr_c":-1.0
},
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"gene_reaction_rule":"",
"subsystem":"Methionine and cysteine metabolism",
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"METTRANSc"
]
},
"annotation":{
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"METTRANSc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"SEBCOACROT",
"name":"Production of sebacoyl carnitine",
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"coa_x":1.0,
"crn_x":-1.0,
"sebcoa_x":-1.0
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"lower_bound":-1000.0,
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"gene_reaction_rule":"54677_AT1",
"subsystem":"Fatty acid oxidation",
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"SEBCOACROT"
]
},
"annotation":{
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"SEBCOACROT"
],
"metanetx.reaction":[
"MNXR96375"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PALFATPtc",
"name":"Uptake of Hexadecanoate by the enterocytes",
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"hdca_e":-1.0,
"pmtcoa_c":1.0,
"ppi_c":1.0
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]
},
"annotation":{
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],
"ec-code":[
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],
"metanetx.reaction":[
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"sbo":"SBO:0000185",
"seed.reaction":[
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"rxn08452"
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}
},
{
"id":"METDECARc",
"name":"Methionine Decarboxylase",
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"4mtob_c":-1.0,
"co2_c":1.0,
"h_c":-1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"",
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},
"annotation":{
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"METDECARc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FATP9t",
"name":"Fatty acid electroneutral transport",
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"na1_e":1.0,
"nrvnc_c":-1.0,
"nrvnc_e":1.0
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"lower_bound":-1000.0,
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"gene_reaction_rule":"10998_AT1 or 11001_AT1",
"subsystem":"Transport, extracellular",
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},
"annotation":{
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"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"3MTPte",
"name":"Secretion of 3-Methyl-Thio-Propionate",
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"lower_bound":0.0,
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"subsystem":"Transport, extracellular",
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},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"TTDCRNNAt",
"name":"Transport of Tetradecanoyl Carnitine, Sodium Symport",
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"na1_e":1.0,
"ttdcrn_c":-1.0,
"ttdcrn_e":1.0
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLHSTDe_1",
"name":"Transport of Phosphatidylcholine",
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"pchol_hs_e":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
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"PCHOLHSTDe"
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},
"annotation":{
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"sbo":"SBO:0000185"
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},
{
"id":"PECDCHe",
"name":"Binding of pectins with deoxycholic acid in the intestinal lumen, reducing serum cholsterol levels.",
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"h_e":-1.0,
"pect_e":-1.0,
"pectindchac_e":1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
"annotation":{
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"metanetx.reaction":[
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"sbo":"SBO:0000176"
}
},
{
"id":"PECTCHLe",
"name":"Binding of pectins with taurocholate in the intestinal lumen, reducing serum cholsterol levels.",
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"pect_e":-1.0,
"pectintchol_e":1.0,
"tchola_e":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Dietary fiber binding",
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},
"annotation":{
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"metanetx.reaction":[
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"sbo":"SBO:0000176"
}
},
{
"id":"PEHSFABPe",
"name":"Transport of Lysophosphatidylethanolamine",
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"pe_hs_r":2.0
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"upper_bound":1000.0,
"gene_reaction_rule":"2168_AT1",
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},
"annotation":{
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"sbo":"SBO:0000185"
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},
{
"id":"PMTCOAFABP1tc_1",
"name":"Transport of Palmitoyl Coenzyme A",
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"pmtcoa_r":2.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2168_AT1",
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},
"annotation":{
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"sbo":"SBO:0000185"
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},
{
"id":"PNTOte",
"name":"Transport of (R)-Pantothenate",
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"pnto__R_e":-1.0
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"lower_bound":-1000.0,
"upper_bound":0.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
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"annotation":{
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"metanetx.reaction":[
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"rhea":[
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"34975",
"34976",
"34977"
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"sbo":"SBO:0000185",
"seed.reaction":[
"rxn09166"
]
}
},
{
"id":"PROGLYPEPT1tc",
"name":"Transport of Prolylglycine by the apical PEPT1 amino acid transporters across the brush border cells of the enterocytes of the intestine and renal cells",
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"h_e":-1.0,
"progly_c":1.0,
"progly_e":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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"metanetx.reaction":[
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"sbo":"SBO:0000185"
}
},
{
"id":"AMPTASEPG",
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"h2o_c":-1.0,
"pro__L_c":1.0,
"progly_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5184_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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"metanetx.reaction":[
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"rhea":[
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"28799",
"28801",
"28800"
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"sbo":"SBO:0000176",
"seed.reaction":[
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}
},
{
"id":"PSYTCHe",
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"psyltchol_e":1.0,
"tchola_e":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
"annotation":{
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"metanetx.reaction":[
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"sbo":"SBO:0000176"
}
},
{
"id":"PSYTDECHe",
"name":"Binding of psyllium with taurodeoxycholate in the intestinal lumen, reducing serum cholsterol levels.",
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"psyltdechol_e":1.0,
"tdechola_e":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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"notes":{
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},
"annotation":{
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"metanetx.reaction":[
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},
{
"id":"SBT_Dt",
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"sbt__D_e":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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"metanetx.reaction":[
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"sbo":"SBO:0000185",
"seed.reaction":[
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}
},
{
"id":"SERATB0tc",
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"ser__L_c":1.0,
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11254_AT1",
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},
"annotation":{
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"metanetx.reaction":[
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},
{
"id":"TAUBETAtc",
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"taur_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6533_AT1",
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"notes":{
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},
"annotation":{
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"metanetx.reaction":[
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},
{
"id":"TAUPAT1c",
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"taur_c":1.0,
"taur_e":-1.0
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{
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{
"id":"3MHISt3",
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{
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{
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{
"id":"5MTHFt2",
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},
{
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},
{
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{
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{
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{
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{
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}
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{
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},
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},
{
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},
{
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},
{
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},
{
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},
{
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}
},
{
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},
{
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{
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{
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},
{
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},
{
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{
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},
{
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},
{
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{
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},
{
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{
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},
{
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"phe__L_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"23428_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LKYNRtr2"
]
},
"annotation":{
"bigg.reaction":[
"LKYNRtr2"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LKYNRtr3",
"name":"Transport of L-Kynurenine",
"metabolites":{
"Lkynr_c":1.0,
"Lkynr_e":-1.0,
"leu__L_c":-1.0,
"leu__L_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8501_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LKYNRtr3"
]
},
"annotation":{
"bigg.reaction":[
"LKYNRtr3"
],
"sbo":"SBO:0000185"
}
},
{
"id":"BALAPAT1tc2",
"name":"Transport of 3-Ureidopropionate",
"metabolites":{
"cala_c":1.0,
"cala_e":-1.0,
"cl_c":1.0,
"cl_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"BALAPAT1tc2"
]
},
"annotation":{
"bigg.reaction":[
"BALAPAT1tc2"
],
"sbo":"SBO:0000185"
}
},
{
"id":"BALABETAtc2",
"name":"Transport of 3-Ureidopropionate",
"metabolites":{
"cala_c":1.0,
"cala_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"BALABETAtc2"
]
},
"annotation":{
"bigg.reaction":[
"BALABETAtc2"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CRTNtr",
"name":"Transport of Creatinine",
"metabolites":{
"crtn_c":1.0,
"crtn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CRTNtr"
]
},
"annotation":{
"bigg.reaction":[
"CRTNtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_CE1556_e",
"name":"Exchange of N-Acetyl-L-Asparagine",
"metabolites":{
"CE1556_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE1557[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_CE1556_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_CE2028_e",
"name":"Exchange of Beta-Hydroxy-Beta-Methylbutyrate",
"metabolites":{
"CE2028_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE2028[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_CE2028_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_CE2445_e",
"name":"Exchange of 6-Trans-Leukotriene B4",
"metabolites":{
"CE2445_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE2445[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_CE2445_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_CE2537_e",
"name":"Exchange of 15-Hydroxy- (8Z, 11Z, 13E)-Eicosatrienoate",
"metabolites":{
"CE2537_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE2537[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_CE2537_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_CE5304_e",
"name":"Exchange of 15-Deoxy-Pgd2",
"metabolites":{
"CE5304_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE5304[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_CE5304_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_CE6247_e",
"name":"Exchange of 5, 12, 20-Trihete",
"metabolites":{
"CE6247_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE6247[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_CE6247_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_CE7172_e",
"name":"Exchange of 14, 15-DIHETE",
"metabolites":{
"CE7172_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_CE7172[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_CE7172_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"KYNATEtr",
"name":"Transport of Kynurenic Acid",
"metabolites":{
"akg_c":-1.0,
"akg_e":1.0,
"kynate_c":1.0,
"kynate_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9356_AT1 or 9376_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"KYNATEtr"
]
},
"annotation":{
"bigg.reaction":[
"KYNATEtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"QULNtr",
"name":"Transport of Quinolinic Acid",
"metabolites":{
"quln_c":1.0,
"quln_e":-1.0,
"so4_c":-1.0,
"so4_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9356_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"QULNtr"
]
},
"annotation":{
"bigg.reaction":[
"QULNtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"2PGtr",
"name":"Transport of 2-Phospho-D-Glycerate",
"metabolites":{
"2pg_c":1.0,
"2pg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"2PGtr"
]
},
"annotation":{
"bigg.reaction":[
"2PGtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CARNtr",
"name":"Transport of Carnosine",
"metabolites":{
"carn_c":1.0,
"carn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CARNtr"
]
},
"annotation":{
"bigg.reaction":[
"CARNtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CHOLPtr",
"name":"Transport of Choline Phosphate",
"metabolites":{
"cholp_c":1.0,
"cholp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CHOLPtr"
]
},
"annotation":{
"bigg.reaction":[
"CHOLPtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CYST_Ltr",
"name":"Transport of Cystine",
"metabolites":{
"cyst__L_c":1.0,
"cyst__L_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CYST_Ltr"
]
},
"annotation":{
"bigg.reaction":[
"CYST_Ltr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DCMPtr",
"name":"Transport of dCMP",
"metabolites":{
"dcmp_c":1.0,
"dcmp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"DCMPtr"
]
},
"annotation":{
"bigg.reaction":[
"DCMPtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DHAPtr",
"name":"Transport of Dihydroxyacetone Phosphate",
"metabolites":{
"dhap_c":1.0,
"dhap_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"DHAPtr"
]
},
"annotation":{
"bigg.reaction":[
"DHAPtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ICITtr",
"name":"Transport of Isocitrate",
"metabolites":{
"icit_c":1.0,
"icit_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ICITtr"
]
},
"annotation":{
"bigg.reaction":[
"ICITtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_cortsn_e",
"name":"Exchange of Cortisone",
"metabolites":{
"cortsn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_cortsn[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_cortsn_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_didecaeth_e",
"name":"Exchange of C12:0-Ethanolamide, Didecanoyl Ethanolamide",
"metabolites":{
"didecaeth_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_didecaeth[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_didecaeth_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_diholineth_e",
"name":"Exchange of Dihomo-Gamma-Linolenoyl Ethanolamide",
"metabolites":{
"diholineth_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_diholineth[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_diholineth_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_docteteth_e",
"name":"Exchange of Docosatetraenoyl Ethanolamide (22:4, Delta 7, 10, 13, 16)",
"metabolites":{
"docteteth_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_docteteth[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_docteteth_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_dodecanac_e",
"name":"Exchange of Dodecanedioic Acid",
"metabolites":{
"dodecanac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_dodecanac[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_dodecanac_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_forglu_e",
"name":"Exchange of N-Formimidoyl-L-Glutamate",
"metabolites":{
"forglu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_forglu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_forglu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hepdeceth_e",
"name":"Exchange of Heptadecanoyl Thanolamide (C17:0)",
"metabolites":{
"hepdeceth_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hepdeceth[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hepdeceth_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hexdeceeth_e",
"name":"Exchange of Hexadecenoyl Ethanolamide, C16:1-Ethanolamide (Delta 9)",
"metabolites":{
"hexdeceeth_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hexdeceeth[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hexdeceeth_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hmcarn_e",
"name":"Exchange of Homocarnosine",
"metabolites":{
"hmcarn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hmcarn[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hmcarn_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hmcr_e",
"name":"Exchange of Homocitrulline",
"metabolites":{
"hmcr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hmcr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hmcr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"L2AADPtr",
"name":"Transport of L-2-Aminoadipate",
"metabolites":{
"L2aadp_c":1.0,
"L2aadp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"L2AADPtr"
]
},
"annotation":{
"bigg.reaction":[
"L2AADPtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"XMPtr",
"name":"Transport of XMP",
"metabolites":{
"xmp_c":1.0,
"xmp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"XMPtr"
]
},
"annotation":{
"bigg.reaction":[
"XMPtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"XTSNtr",
"name":"Transport of Xanthosine",
"metabolites":{
"xtsn_c":1.0,
"xtsn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"XTSNtr"
]
},
"annotation":{
"bigg.reaction":[
"XTSNtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"UDPGLCURtr",
"name":" Transport of UDP-Glucuronate",
"metabolites":{
"udpglcur_c":1.0,
"udpglcur_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"UDPGLCURtr"
]
},
"annotation":{
"bigg.reaction":[
"UDPGLCURtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"IMPtr",
"name":"Transport of IMP",
"metabolites":{
"imp_c":1.0,
"imp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"IMPtr"
]
},
"annotation":{
"bigg.reaction":[
"IMPtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_hxcoa_e",
"name":"Exchange of Hexanoate",
"metabolites":{
"hxcoa_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hxcoa[e]"
]
},
"annotation":{
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"EX_hxcoa_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_leuktrB4woh_e",
"name":"Exchnage for W-Hydroxyl Leukotriene B4",
"metabolites":{
"leuktrB4woh_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_leuktrB4woh[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_leuktrB4woh_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_magarachi_hs_e",
"name":"Exchange of 1-Arachidonoyl Glycerol",
"metabolites":{
"magarachi_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_magarachi_hs[e]"
]
},
"annotation":{
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"EX_magarachi_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_magole_hs_e",
"name":"Exchange of 1-Oleoylglycerol",
"metabolites":{
"magole_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_magole_hs[e]"
]
},
"annotation":{
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_magpalm_hs_e",
"name":"Exchange of 1-Palmitoylglycerol",
"metabolites":{
"magpalm_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_magpalm_hs[e]"
]
},
"annotation":{
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"EX_magpalm_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"NICRNtr",
"name":"Transport of Nicotinate D-Ribonucleotide",
"metabolites":{
"nicrnt_c":1.0,
"nicrnt_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"NICRNtr"
]
},
"annotation":{
"bigg.reaction":[
"NICRNtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"OROT5Ptr",
"name":"Transport of Orotidylic Acid ",
"metabolites":{
"orot5p_c":1.0,
"orot5p_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"OROT5Ptr"
]
},
"annotation":{
"bigg.reaction":[
"OROT5Ptr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LCAT18e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 2-Linoleoylglycerophosphocholine",
"metabolites":{
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"pchol2linl_hs_e":1.0,
"pchol_hs_e":-1.0,
"xolest2_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
"original_bigg_ids":[
"LCAT18e"
]
},
"annotation":{
"bigg.reaction":[
"LCAT18e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT19e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 2-Linoleoylglycerophosphoethanolamine",
"metabolites":{
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"pe2linl_hs_e":1.0,
"pe_hs_e":-1.0,
"xolest2_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
"original_bigg_ids":[
"LCAT19e"
]
},
"annotation":{
"bigg.reaction":[
"LCAT19e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT21e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 2-Palmitoylglycerophosphocholine",
"metabolites":{
"chsterol_e":-1.0,
"pchol2palm_hs_e":1.0,
"pchol_hs_e":-1.0,
"xolest2_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
"original_bigg_ids":[
"LCAT21e"
]
},
"annotation":{
"bigg.reaction":[
"LCAT21e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_mi1p__D_e",
"name":"Exchange of Myo-Inositol 1-Phosphate",
"metabolites":{
"mi1p__D_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_mi1p_D[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_mi1p__D_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_Nacasp_e",
"name":"Exchange of N-Acetyl-L-Aspartate",
"metabolites":{
"Nacasp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_Nacasp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_Nacasp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_nwharg_e",
"name":"Exchange of N- (Omega)-Hydroxyarginine",
"metabolites":{
"nwharg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_nwharg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_nwharg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_oleth_e",
"name":"Exchange of Oleoyl Ethanolamide",
"metabolites":{
"oleth_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_oleth[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_oleth_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"LCAT23e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of Cholesterol-Ester (18:3)",
"metabolites":{
"chsterol_e":-1.0,
"lpchol_hs_e":1.0,
"pchol_hs_e":-1.0,
"xolest183_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
"original_bigg_ids":[
"LCAT23e"
]
},
"annotation":{
"bigg.reaction":[
"LCAT23e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT25e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of Cholesterol-Ester (18:1)",
"metabolites":{
"chsterol_e":-1.0,
"lpchol_hs_e":1.0,
"pchol_hs_e":-1.0,
"xolest181_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
"original_bigg_ids":[
"LCAT25e"
]
},
"annotation":{
"bigg.reaction":[
"LCAT25e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT2e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Arachidonoylglycerophosphocholine",
"metabolites":{
"chsterol_e":-1.0,
"pchol_hs_e":-1.0,
"pcholar_hs_e":1.0,
"xolest2_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
"original_bigg_ids":[
"LCAT2e"
]
},
"annotation":{
"bigg.reaction":[
"LCAT2e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT30e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Octadeca-Trienoylglycerophosphocholine",
"metabolites":{
"chsterol_e":-1.0,
"pchol_hs_e":-1.0,
"pcholn183_hs_e":1.0,
"xolest2_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
"original_bigg_ids":[
"LCAT30e"
]
},
"annotation":{
"bigg.reaction":[
"LCAT30e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT32e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-NoNADecanoylglycerophosphocholine",
"metabolites":{
"chsterol_e":-1.0,
"pchol_hs_e":-1.0,
"pcholn19_hs_e":1.0,
"xolest2_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
"original_bigg_ids":[
"LCAT32e"
]
},
"annotation":{
"bigg.reaction":[
"LCAT32e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT35e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Eicosapentenoylglycerophosphocholine (Delta 5, 8, 11, 14, 17)",
"metabolites":{
"chsterol_e":-1.0,
"pchol_hs_e":-1.0,
"pcholn205_hs_e":1.0,
"xolest2_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
"original_bigg_ids":[
"LCAT35e"
]
},
"annotation":{
"bigg.reaction":[
"LCAT35e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT37e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Docosapentenoylglycerophosphocholine (Delta 7, 10, 13, 16, 19)",
"metabolites":{
"chsterol_e":-1.0,
"pchol_hs_e":-1.0,
"pcholn225_hs_e":1.0,
"xolest2_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
"original_bigg_ids":[
"LCAT37e"
]
},
"annotation":{
"bigg.reaction":[
"LCAT37e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT38e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Docosapentenoylglycerophosphocholine (Delta 4, 7, 10, 13, 16)",
"metabolites":{
"chsterol_e":-1.0,
"pchol_hs_e":-1.0,
"pcholn2254_hs_e":1.0,
"xolest2_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
"original_bigg_ids":[
"LCAT38e"
]
},
"annotation":{
"bigg.reaction":[
"LCAT38e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT3e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Arachidonoylglycerophosphoethanolamine",
"metabolites":{
"chsterol_e":-1.0,
"pe_hs_e":-1.0,
"pear_hs_e":1.0,
"xolest2_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
"original_bigg_ids":[
"LCAT3e"
]
},
"annotation":{
"bigg.reaction":[
"LCAT3e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT40e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Eicosatrienoylglycerophosphoethanolamine (Delta 11, 14, 17)",
"metabolites":{
"chsterol_e":-1.0,
"pe203_hs_e":1.0,
"pe_hs_e":-1.0,
"xolest2_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
"original_bigg_ids":[
"LCAT40e"
]
},
"annotation":{
"bigg.reaction":[
"LCAT40e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_pailar_hs_e",
"name":"Exchange of 1-Arachidonoylglycerophosphoinositol",
"metabolites":{
"pailar_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pailar_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pailar_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pchol2ste_hs_e",
"name":"Exchange of 2-Stearoylglycerophosphocholine",
"metabolites":{
"pchol2ste_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pchol2ste_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pchol2ste_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"GLYACm",
"name":"Acetylation of Glycine",
"metabolites":{
"accoa_m":-1.0,
"acgly_m":1.0,
"coa_m":1.0,
"gly_m":-1.0,
"h_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Glycine, serine, alanine, and threonine metabolism",
"notes":{
"original_bigg_ids":[
"GLYACm"
]
},
"annotation":{
"bigg.reaction":[
"GLYACm"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LYSACm",
"name":"Acetylation of Lysine",
"metabolites":{
"accoa_m":-1.0,
"aclys_m":1.0,
"coa_m":1.0,
"h_m":1.0,
"lys__L_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Lysine metabolism",
"notes":{
"original_bigg_ids":[
"LYSACm"
]
},
"annotation":{
"bigg.reaction":[
"LYSACm"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GLYC_Rt",
"name":"Transport of D-Glycerate, Diffusion",
"metabolites":{
"glyc__R_c":-1.0,
"glyc__R_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLYC_Rt"
]
},
"annotation":{
"bigg.reaction":[
"GLYC_Rt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HC00319t1",
"name":"Malonate Transport, Antiport with Chloride",
"metabolites":{
"HC00319_c":-1.0,
"HC00319_e":1.0,
"cl_c":1.0,
"cl_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HC00319t1"
]
},
"annotation":{
"bigg.reaction":[
"HC00319t1"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HC02149td",
"name":"Transport of O-Propanoylcarnitine, Sodium Symport",
"metabolites":{
"pcrn_c":-1.0,
"pcrn_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HC02149td"
]
},
"annotation":{
"bigg.reaction":[
"HC02149td"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HEPDECETH",
"name":"Formation of Heptadecanoyl Thanolamide (C17:0)",
"metabolites":{
"h2o_e":-1.0,
"hepdeceth_e":1.0,
"pa_hs_e":1.0,
"pe15_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5337_AT1 or 5338_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
"original_bigg_ids":[
"HEPDECETH"
]
},
"annotation":{
"bigg.reaction":[
"HEPDECETH"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HEXDIACtd",
"name":"Transport of Hexadecanediocacid by Diffusion",
"metabolites":{
"hexdiac_c":-1.0,
"hexdiac_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HEXDIACtd"
]
},
"annotation":{
"bigg.reaction":[
"HEXDIACtd"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMCARNt",
"name":"Transport of Homocarnosine",
"metabolites":{
"ca2_c":-1.0,
"ca2_e":1.0,
"h_c":1.0,
"h_e":-1.0,
"hmcarn_c":-1.0,
"hmcarn_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMCARNt"
]
},
"annotation":{
"bigg.reaction":[
"HMCARNt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HPPPNt2r",
"name":"3-(3-hydroxyphenyl)propionate transport via proton symport, reversible",
"metabolites":{
"3hpppn_c":1.0,
"3hpppn_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HPPPNte"
]
},
"annotation":{
"bigg.reaction":[
"HPPPNt2r"
],
"biocyc":[
"META:TRANS-RXN-61"
],
"metanetx.reaction":[
"MNXR100696"
],
"rhea":[
"28910",
"28907",
"28909",
"28908"
],
"sbo":"SBO:0000185",
"seed.reaction":[
"rxn08725",
"rxn10134"
]
}
},
{
"id":"HXCOAm",
"name":"Acyl-Coenzyme A Hydrolase, Mitochondrial",
"metabolites":{
"coa_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"hxa_m":1.0,
"hxcoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"HXCOAm"
]
},
"annotation":{
"bigg.reaction":[
"HXCOAm"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HXCOAte",
"name":"Transport of Hexanoate, Cytosol",
"metabolites":{
"hxcoa_c":-1.0,
"hxcoa_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HXCOAte"
]
},
"annotation":{
"bigg.reaction":[
"HXCOAte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LCAT41e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Docosahexenoylglyceroethanolamine (Delta 4, 7, 10, 13, 16, 19)",
"metabolites":{
"chsterol_e":-1.0,
"pe226_hs_e":1.0,
"pe_hs_e":-1.0,
"xolest2_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
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"LCAT41e"
]
},
"annotation":{
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"LCAT41e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT56e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Hexadecenoylglycerophosphoethanolamine (C16:1 Pe, Delta 9)",
"metabolites":{
"chsterol_e":-1.0,
"pe161_hs_e":1.0,
"pe_hs_e":-1.0,
"xolest2_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
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"LCAT56e"
]
},
"annotation":{
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"LCAT56e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT47e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Pentadecanoylglycerophosphoethanolamine (C15:0 Pe)",
"metabolites":{
"chsterol_e":-1.0,
"pe15_hs_e":1.0,
"pe_hs_e":-1.0,
"xolest2_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
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"LCAT47e"
]
},
"annotation":{
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"LCAT47e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT48e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Heptadecanoylglycerophosphoethanolamine (C17:0 Pe)",
"metabolites":{
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"pe17_hs_e":1.0,
"pe_hs_e":-1.0,
"xolest2_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
"original_bigg_ids":[
"LCAT48e"
]
},
"annotation":{
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"LCAT48e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT4e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of 1-Arachidonoylglycerophosphoinositol",
"metabolites":{
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"pail_hs_e":-1.0,
"pailar_hs_e":1.0,
"xolest2_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
"original_bigg_ids":[
"LCAT4e"
]
},
"annotation":{
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"LCAT4e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT51e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of Lysopc A C26:1 (Delta 5)",
"metabolites":{
"chsterol_e":-1.0,
"pchol_hs_e":-1.0,
"pcholn261_hs_e":1.0,
"xolest2_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
"original_bigg_ids":[
"LCAT51e"
]
},
"annotation":{
"bigg.reaction":[
"LCAT51e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCAT53e",
"name":"Lecithin-Cholesterol Acyltransferase, Formation of Lysopc A C28:0",
"metabolites":{
"chsterol_e":-1.0,
"pchol_hs_e":-1.0,
"pcholn28_hs_e":1.0,
"xolest2_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3931_AT1",
"subsystem":"Cholesterol metabolism",
"notes":{
"original_bigg_ids":[
"LCAT53e"
]
},
"annotation":{
"bigg.reaction":[
"LCAT53e"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HXCOAtx",
"name":"Transport of Hexanoate, Peroxisome",
"metabolites":{
"hxcoa_c":1.0,
"hxcoa_x":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, peroxisomal",
"notes":{
"original_bigg_ids":[
"HXCOAtx"
]
},
"annotation":{
"bigg.reaction":[
"HXCOAtx"
],
"sbo":"SBO:0000185"
}
},
{
"id":"IND3ACt",
"name":"Transport of Indole-3-Acetate",
"metabolites":{
"ind3ac_c":-1.0,
"ind3ac_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"IND3ACt"
]
},
"annotation":{
"bigg.reaction":[
"IND3ACt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LPIPECOLtx",
"name":"Transport of L-Pipecolic Acid by Sodium Symport, Intracellular",
"metabolites":{
"Lpipecol_c":-1.0,
"Lpipecol_x":1.0,
"na1_c":-1.0,
"na1_x":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, peroxisomal",
"notes":{
"original_bigg_ids":[
"LPIPECOLtx"
]
},
"annotation":{
"bigg.reaction":[
"LPIPECOLtx"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LTHSTRLt",
"name":"Transport of Lathosterol, Diffusion",
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{
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{
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},
{
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},
{
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{
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{
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{
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{
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},
{
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"name":"Sphingomyelin Synthase, Formation of Sm (D18:0/24:0)",
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{
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},
{
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{
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},
{
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},
{
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},
{
"id":"OLEETH",
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"annotation":{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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{
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},
{
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},
{
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},
{
"id":"PAILAR_HSPLA2",
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},
{
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},
{
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},
{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"SEBACIDtd",
"name":"Transport of Sebacic Acid by Diffusion",
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"sebacid_c":-1.0,
"sebacid_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"SEBACIDtd"
]
},
"annotation":{
"bigg.reaction":[
"SEBACIDtd"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SUBEACtd",
"name":"Transport of Suberic Acid by Diffusion",
"metabolites":{
"subeac_c":-1.0,
"subeac_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"SUBEACtd"
]
},
"annotation":{
"bigg.reaction":[
"SUBEACtd"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TETDECA511ACtd",
"name":"Transport of Cis-5, 8-Tetradecadienoic Acid, Diffusion",
"metabolites":{
"tetdeca511ac_c":-1.0,
"tetdeca511ac_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TETDECA511ACtd"
]
},
"annotation":{
"bigg.reaction":[
"TETDECA511ACtd"
],
"sbo":"SBO:0000185"
}
},
{
"id":"THRACm",
"name":"Acetylation of Threonine",
"metabolites":{
"accoa_m":-1.0,
"acthr__L_m":1.0,
"coa_m":1.0,
"h_m":1.0,
"thr__L_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Glycine, serine, alanine, and threonine metabolism",
"notes":{
"original_bigg_ids":[
"THRACm"
]
},
"annotation":{
"bigg.reaction":[
"THRACm"
],
"sbo":"SBO:0000176"
}
},
{
"id":"THRNTt",
"name":"Transport of L-Threonate by Active Transport",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"thrnt_c":-1.0,
"thrnt_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"THRNTt"
]
},
"annotation":{
"bigg.reaction":[
"THRNTt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TMLYStd",
"name":"Transport of N6, N6, N6-Trimethyl-L-Lysine, Diffusion",
"metabolites":{
"tmlys_c":-1.0,
"tmlys_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TMLYStd"
]
},
"annotation":{
"bigg.reaction":[
"TMLYStd"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TRIDECETH",
"name":"Formation of C13:0-Ethanolamide",
"metabolites":{
"h2o_e":-1.0,
"pa_hs_e":1.0,
"pe13_hs_e":-1.0,
"trideceth_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5337_AT1 or 5338_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
"original_bigg_ids":[
"TRIDECETH"
]
},
"annotation":{
"bigg.reaction":[
"TRIDECETH"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TTDCEAATP",
"name":"Active Transport of Tetradecenoate (N-C14:1)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"ttdcea_c":-1.0,
"ttdcea_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TTDCEAATP"
]
},
"annotation":{
"bigg.reaction":[
"TTDCEAATP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C03990ATP",
"name":"Transport of Lithocholate, Active Transport",
"metabolites":{
"HC02191_c":-1.0,
"HC02191_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8647_AT1 or 8714_AT1 or 85320_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C03990ATP"
]
},
"annotation":{
"bigg.reaction":[
"C03990ATP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C03990t",
"name":"Transport of Lithocholate, Sodium Symport",
"metabolites":{
"HC02191_c":-1.0,
"HC02191_e":1.0,
"na1_c":-1.0,
"na1_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6554_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C03990t"
]
},
"annotation":{
"bigg.reaction":[
"C03990t"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C04483t1",
"name":"Transport of Deoxycholate",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"dchac_c":-1.0,
"dchac_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8647_AT1 or 8714_AT1 or 85320_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C04483t1"
]
},
"annotation":{
"bigg.reaction":[
"C04483t1"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C04717td",
"name":"Transport of 13(S)-HPODE, Diffusion",
"metabolites":{
"C04717_c":-1.0,
"C04717_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C04717td"
]
},
"annotation":{
"bigg.reaction":[
"C04717td"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C04805ATP",
"name":"Transport of 5(S)-HETE, Active Transport",
"metabolites":{
"C04805_c":-1.0,
"C04805_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C04805ATP"
]
},
"annotation":{
"bigg.reaction":[
"C04805ATP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C05953tm",
"name":"Transport of Prostaglandin A2, Intracellular",
"metabolites":{
"HC02203_c":1.0,
"HC02203_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, mitochondrial",
"notes":{
"original_bigg_ids":[
"C05953tm"
]
},
"annotation":{
"bigg.reaction":[
"C05953tm"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C05957t",
"name":"Transport of Prostaglandin J2, Lactate Antiport",
"metabolites":{
"C05957_c":-1.0,
"C05957_e":1.0,
"lac__L_c":1.0,
"lac__L_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C05957t"
]
},
"annotation":{
"bigg.reaction":[
"C05957t"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C05957td",
"name":"Transport of Prostaglandin J2, Diffusion",
"metabolites":{
"C05957_c":-1.0,
"C05957_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C05957td"
]
},
"annotation":{
"bigg.reaction":[
"C05957td"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C06315t",
"name":"Transport of Lipoxin B4, Proton Symport",
"metabolites":{
"C06315_c":-1.0,
"C06315_e":1.0,
"h_c":-1.0,
"h_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C06315t"
]
},
"annotation":{
"bigg.reaction":[
"C06315t"
],
"sbo":"SBO:0000185"
}
},
{
"id":"URCANt",
"name":"Transport of Urocanate",
"metabolites":{
"urcan_c":-1.0,
"urcan_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"URCANt"
]
},
"annotation":{
"bigg.reaction":[
"URCANt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"WHARACHDt",
"name":"Transport of W-Hydroxyl Arachidonic Acid, Active Transport",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"wharachd_c":-1.0,
"wharachd_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"WHARACHDt"
]
},
"annotation":{
"bigg.reaction":[
"WHARACHDt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"WHARACHDtr",
"name":"Transport of W-Hydroxyl Arachidonic Acid, Intracellular",
"metabolites":{
"adp_r":1.0,
"atp_r":-1.0,
"h2o_r":-1.0,
"h_r":1.0,
"pi_r":1.0,
"wharachd_c":1.0,
"wharachd_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
"notes":{
"original_bigg_ids":[
"WHARACHDtr"
]
},
"annotation":{
"bigg.reaction":[
"WHARACHDtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ACILEm",
"name":"Acetylation of Isoleucine",
"metabolites":{
"accoa_m":-1.0,
"acile__L_m":1.0,
"coa_m":1.0,
"h_m":1.0,
"ile__L_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Valine, leucine, and isoleucine metabolism",
"notes":{
"original_bigg_ids":[
"ACILEm"
]
},
"annotation":{
"bigg.reaction":[
"ACILEm"
],
"sbo":"SBO:0000176"
}
},
{
"id":"ACILEte",
"name":"Transport of Acetyl Isoleucine, Extracellular",
"metabolites":{
"acile__L_c":-1.0,
"acile__L_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ACILEte"
]
},
"annotation":{
"bigg.reaction":[
"ACILEte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_acile__L_e",
"name":"Exchange of Acetyl Isoleucine",
"metabolites":{
"acile__L_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_acile_L[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_acile__L_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"ACLEUte",
"name":"Transport of Acetyl Leucine, Extracellular",
"metabolites":{
"acleu__L_c":-1.0,
"acleu__L_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ACLEUte"
]
},
"annotation":{
"bigg.reaction":[
"ACLEUte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_hisasp_e",
"name":"Exchange of HisAsp",
"metabolites":{
"hisasp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hisasp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hisasp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hisglnala_e",
"name":"Exchange of HisGlnAla",
"metabolites":{
"hisglnala_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hisglnala[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hisglnala_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hisglylys_e",
"name":"Exchange of HisGlyLys",
"metabolites":{
"hisglylys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hisglylys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hisglylys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"C14768ATP",
"name":"Transport of 5, 6-EET, Active Transport",
"metabolites":{
"C14768_c":-1.0,
"C14768_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C14768ATP"
]
},
"annotation":{
"bigg.reaction":[
"C14768ATP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C14769td1",
"name":"Transport of 8, 9-EET, Diffusion",
"metabolites":{
"C14769_c":-1.0,
"C14769_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C14769td1"
]
},
"annotation":{
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"C14769td1"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C14769td2",
"name":"Transport of 8, 9-EET, Active Transport",
"metabolites":{
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"C14769_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C14769td2"
]
},
"annotation":{
"bigg.reaction":[
"C14769td2"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C14771ATP",
"name":"Transport of 14, 15-EET, Active Transport",
"metabolites":{
"C14771_c":-1.0,
"C14771_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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"C14771ATP"
]
},
"annotation":{
"bigg.reaction":[
"C14771ATP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C14825ATP",
"name":"Transport of 9 (10)-Epome, Active Transport",
"metabolites":{
"C14825_c":-1.0,
"C14825_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C14825ATP"
]
},
"annotation":{
"bigg.reaction":[
"C14825ATP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C14825td",
"name":"Transport of 9 (10)-Epome, Diffusion",
"metabolites":{
"C14825_c":-1.0,
"C14825_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C14825td"
]
},
"annotation":{
"bigg.reaction":[
"C14825td"
],
"sbo":"SBO:0000185"
}
},
{
"id":"C14826td",
"name":"Transport of 12 (13)-Epome, Diffusion",
"metabolites":{
"C14826_c":-1.0,
"C14826_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"C14826td"
]
},
"annotation":{
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"C14826td"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE0955te",
"name":"Transport of 6-Oxo-Prostaglandin F1Alpha, Lactate Antiport",
"metabolites":{
"CE0955_c":-1.0,
"CE0955_e":1.0,
"lac__L_c":1.0,
"lac__L_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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"CE0955te"
]
},
"annotation":{
"bigg.reaction":[
"CE0955te"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE0955tr",
"name":"Transport of 6-Oxo-Prostaglandin F1Alpha, Intracellular",
"metabolites":{
"CE0955_c":1.0,
"CE0955_r":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE0955tr"
]
},
"annotation":{
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"CE0955tr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE1273t1",
"name":"Transport of 5Beta-Cholestane-3Alpha, 7Alpha, 12Alpha, 24S, 25-Pentol, Active Transport",
"metabolites":{
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"CE1273_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8647_AT1 or 8714_AT1 or 85320_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE1273t1"
]
},
"annotation":{
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"CE1273t1"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE1273t2",
"name":"Transport of 5Beta-Cholestane-3Alpha, 7Alpha, 12Alpha, 24S, 25-Pentol, Atiport with Bicarbonate",
"metabolites":{
"CE1273_c":-1.0,
"CE1273_e":1.0,
"hco3_c":1.0,
"hco3_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE1273t2"
]
},
"annotation":{
"bigg.reaction":[
"CE1273t2"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_hishislys_e",
"name":"Exchange of HisHisLys",
"metabolites":{
"hishislys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_hishislys[e]"
]
},
"annotation":{
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"EX_hishislys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hislysile_e",
"name":"Exchange of HisLysIle",
"metabolites":{
"hislysile_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hislysile[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hislysile_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hismet_e",
"name":"Exchange of HisMet",
"metabolites":{
"hismet_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hismet[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hismet_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_ileasnhis_e",
"name":"Exchange of IleAsnHis",
"metabolites":{
"ileasnhis_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ileasnhis[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ileasnhis_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_ileglnglu_e",
"name":"Exchange of IleGlnGlu",
"metabolites":{
"ileglnglu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ileglnglu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ileglnglu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_ileglyarg_e",
"name":"Exchange of IleGlyArg",
"metabolites":{
"ileglyarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ileglyarg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ileglyarg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_ileserarg_e",
"name":"Exchange of IleSerArg",
"metabolites":{
"ileserarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ileserarg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ileserarg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_iletrptyr_e",
"name":"Exchange of IleTrptyr",
"metabolites":{
"iletrptyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_iletrptyr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_iletrptyr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"CE1297t",
"name":"Active Transport of 8-Dehydrocholesterol",
"metabolites":{
"CE1297_c":-1.0,
"CE1297_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE1297t"
]
},
"annotation":{
"bigg.reaction":[
"CE1297t"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE1297td",
"name":"Transport of 8-Dehydrocholesterol, Diffusion",
"metabolites":{
"CE1297_c":-1.0,
"CE1297_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE1297td"
]
},
"annotation":{
"bigg.reaction":[
"CE1297td"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE2176t",
"name":"Transport of 3-O-Methyldopa",
"metabolites":{
"CE2176_c":1.0,
"CE2176_e":-1.0,
"leu__L_c":-1.0,
"leu__L_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE2176t"
]
},
"annotation":{
"bigg.reaction":[
"CE2176t"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE2445t",
"name":"Transport of 6-Trans-Leukotriene B4, Active Transport",
"metabolites":{
"CE2445_c":-1.0,
"CE2445_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE2445t"
]
},
"annotation":{
"bigg.reaction":[
"CE2445t"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE2510t",
"name":"Transport of 11-Cis-Eicosenoate",
"metabolites":{
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"CE2510_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE2510t"
]
},
"annotation":{
"bigg.reaction":[
"CE2510t"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE2513ATP",
"name":"Transport of 15-Tetracosenoate, Active Transport",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"nrvnc_c":-1.0,
"nrvnc_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE2513ATP"
]
},
"annotation":{
"bigg.reaction":[
"CE2513ATP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE2537ATP",
"name":"Transport of 15-Hydroxy- (8Z, 11Z, 13E)-Eicosatrienoate, Active Transport",
"metabolites":{
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"CE2537_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE2537ATP"
]
},
"annotation":{
"bigg.reaction":[
"CE2537ATP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE4843t",
"name":"Transport of Cis, Cis-11, 14-Eicosadienoyl Coenzyme A, Active Transport",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"eidi1114ac_c":-1.0,
"eidi1114ac_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE4843t"
]
},
"annotation":{
"bigg.reaction":[
"CE4843t"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_leualaarg_e",
"name":"Exchange of LeuAlaArg",
"metabolites":{
"leualaarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_leualaarg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_leualaarg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_leupro_e",
"name":"Exchange of LeuPro",
"metabolites":{
"leupro_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_leupro[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_leupro_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_leutrparg_e",
"name":"Exchange of LeuTrpArg",
"metabolites":{
"leutrparg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_leutrparg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_leutrparg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_leutyrtyr_e",
"name":"Exchange of Leutyrtyr",
"metabolites":{
"leutyrtyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_leutyrtyr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_leutyrtyr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_lysgluglu_e",
"name":"Exchange of LysGluGlu",
"metabolites":{
"lysgluglu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lysgluglu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lysgluglu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_lyslyslys_e",
"name":"Exchange of LysLysLys",
"metabolites":{
"lyslyslys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lyslyslys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lyslyslys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_lyspheile_e",
"name":"Exchange of LysPheIle",
"metabolites":{
"lyspheile_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lyspheile[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lyspheile_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_lystyrile_e",
"name":"Exchange of LystyrIle",
"metabolites":{
"lystyrile_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lystyrile[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lystyrile_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_lysvaltrp_e",
"name":"Exchange of LysValTrp",
"metabolites":{
"lysvaltrp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lysvaltrp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lysvaltrp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_metargleu_e",
"name":"Exchange of MetArgLeu",
"metabolites":{
"metargleu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_metargleu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_metargleu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"CE5304t",
"name":"Transport of 15-Deoxy-Pgd2, Antiport with Lactate",
"metabolites":{
"CE5304_c":-1.0,
"CE5304_e":1.0,
"lac__L_c":1.0,
"lac__L_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE5304t"
]
},
"annotation":{
"bigg.reaction":[
"CE5304t"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE6031t",
"name":"Transport of Androsterone Sulfate",
"metabolites":{
"CE6031_c":-1.0,
"CE6031_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE6031t"
]
},
"annotation":{
"bigg.reaction":[
"CE6031t"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE7082ATP",
"name":"Transport of 15(S)-HEPE, Active Transport",
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"CE7082_c":-1.0,
"CE7082_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE7082ATP"
]
},
"annotation":{
"bigg.reaction":[
"CE7082ATP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CORTSNt",
"name":"Extracellular Transport of Cortisone",
"metabolites":{
"cortsn_c":-1.0,
"cortsn_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CORTSNt"
]
},
"annotation":{
"bigg.reaction":[
"CORTSNt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CORTSNti",
"name":"Intracellular Transport of Cortisone",
"metabolites":{
"cortsn_c":1.0,
"cortsn_r":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
"notes":{
"original_bigg_ids":[
"CORTSNti"
]
},
"annotation":{
"bigg.reaction":[
"CORTSNti"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DIDECAETH",
"name":"Formation of C12:0-Ethanolamide",
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"h2o_e":-1.0,
"pa_hs_e":1.0,
"pe12_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5337_AT1 or 5338_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
"original_bigg_ids":[
"DIDECAETH"
]
},
"annotation":{
"bigg.reaction":[
"DIDECAETH"
],
"sbo":"SBO:0000176"
}
},
{
"id":"DIHOLINETH",
"name":"Formation of Dihomo-Gamma-Linolenoyl Ethanolamide",
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"h2o_e":-1.0,
"pa_hs_e":1.0,
"pedh203_hs_e":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5337_AT1 or 5338_AT1",
"subsystem":"Glycerophospholipid metabolism",
"notes":{
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"DIHOLINETH"
]
},
"annotation":{
"bigg.reaction":[
"DIHOLINETH"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_12HPET_e",
"name":"12(S)-HPETE(1-) exchange",
"metabolites":{
"12HPET_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_12HPET[e]"
]
},
"annotation":{
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"EX_12HPET_e"
],
"metanetx.reaction":[
"MNXR142837"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_2oxoadp_e",
"name":"Exchange of 2-Oxoadipate",
"metabolites":{
"2oxoadp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_2oxoadp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_2oxoadp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_34hpl_e",
"name":"Exchange of 3- (4-Hydroxyphenyl)Lactate",
"metabolites":{
"34hpl_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_34hpl[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_34hpl_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_3hpp_e",
"name":"3-Hydroxypropanoate exchange",
"metabolites":{
"3hpp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_3hpp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_3hpp_e"
],
"biocyc":[
"META:TRANS-RXN0-465"
],
"metanetx.reaction":[
"MNXR94904"
],
"rhea":[
"34951",
"34953",
"34952",
"34954"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_3hpppnohgluc_e",
"name":"Exchange of 3- (3-Hydroxy-Phenyl)Propionate Hydroxy Derivative Glucuronide",
"metabolites":{
"3hpppnohgluc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_3hpppnohgluc[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_3hpppnohgluc_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_metasntyr_e",
"name":"Exchange of MetAsntyr",
"metabolites":{
"metasntyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_metasntyr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_metasntyr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_metglyarg_e",
"name":"Exchange of MetGlyArg",
"metabolites":{
"metglyarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_metglyarg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_metglyarg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_methislys_e",
"name":"Exchange of MetHisLys",
"metabolites":{
"methislys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_methislys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_methislys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_metmetile_e",
"name":"Exchange of MetMetIle",
"metabolites":{
"metmetile_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_metmetile[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_metmetile_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_mettrpphe_e",
"name":"Exchange of MetTrpPhe",
"metabolites":{
"mettrpphe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_mettrpphe[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_mettrpphe_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pheglnphe_e",
"name":"Exchange of PheGlnPhe",
"metabolites":{
"pheglnphe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pheglnphe[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pheglnphe_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pheleu_e",
"name":"Exchange of PheLeu",
"metabolites":{
"pheleu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pheleu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pheleu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_phelysala_e",
"name":"Exchange of PheLysAla",
"metabolites":{
"phelysala_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_phelysala[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_phelysala_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_3uib_e",
"name":"Exchange of 3-Ureidoisobutyrate",
"metabolites":{
"3uib_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_3uib[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_3uib_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_4aabutn_e",
"name":"Exchange of 4-Acetamidobutanoate",
"metabolites":{
"4aabutn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_4aabutn[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_4aabutn_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholdoc_hs_e",
"name":"Exchange of 1-Docosahexaenoylglycerophosphocholine",
"metabolites":{
"pcholdoc_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholdoc_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholdoc_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholeic_hs_e",
"name":"Exchange of 1-Eicosadienoylglycerophosphocholine (Delta 11, 14)",
"metabolites":{
"pcholeic_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholeic_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholeic_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholhep_hs_e",
"name":"Exchange of 1-Heptadecanoylglycerophosphocholine",
"metabolites":{
"pcholhep_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholhep_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholhep_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_phephe_e",
"name":"Exchange of PhePhe",
"metabolites":{
"phephe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_phephe[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_phephe_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_phepheasn_e",
"name":"Exchange of PhePheAsn",
"metabolites":{
"phepheasn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_phepheasn[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_phepheasn_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_phethrlys_e",
"name":"Exchange of PheThrLys",
"metabolites":{
"phethrlys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_phethrlys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_phethrlys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_phetrpleu_e",
"name":"Exchange of PheTrpLeu",
"metabolites":{
"phetrpleu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_phetrpleu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_phetrpleu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pchollinl_hs_e",
"name":"Exchange of 1-Linoleoylglycerophosphocholine (Delta 9, 12)",
"metabolites":{
"pchollinl_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pchollinl_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pchollinl_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholmyr_hs_e",
"name":"Exchange of 1-Myristoylglycerophosphocholine",
"metabolites":{
"pcholmyr_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholmyr_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholmyr_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholn15_hs_e",
"name":"Exchange of 1-Pentadecanoylglycerophosphocholine, Sn1-Lpc (15:0)",
"metabolites":{
"pcholn15_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholn15_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholn15_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholn183_hs_e",
"name":"Exchange of 1-Octadeca-Trienoylglycerophosphocholine, Sn1-Lpc (18:3, Delta 9, 12, 15)",
"metabolites":{
"pcholn183_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholn183_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholn183_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholn1836_hs_e",
"name":"Exchange of 1-Octadeca-Trienoylglycerophosphocholine, Sn1-Lpc (18:3, Delta 6, 9, 12)",
"metabolites":{
"pcholn1836_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholn1836_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholn1836_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholn19_hs_e",
"name":"Exchange of 1-NoNADecanoylglycerophosphocholine, Sn1-Lpc (19:0)",
"metabolites":{
"pcholn19_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholn19_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholn19_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholn203_hs_e",
"name":"Exchange of 1-Dihomo-Linolenoylglycerophosphocholine (20:3, Delta 8, 11, 14), Lysopc A C20:3",
"metabolites":{
"pcholn203_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholn203_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholn203_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholn204_hs_e",
"name":"Exchange of 1-Eicosatetraenoylglycerophosphocholine (Delta 8, 11, 14, 17), Sn1-Lpc (20:4)",
"metabolites":{
"pcholn204_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholn204_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholn204_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholn224_hs_e",
"name":"Exchange of 1-Docosatetraenoylglycerophosphocholine (Delta 7, 10, 13, 16), Sn1-Lpc (22:4)",
"metabolites":{
"pcholn224_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholn224_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholn224_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_phetyr_e",
"name":"Exchange of Phetyr",
"metabolites":{
"phetyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_phetyr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_phetyr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_proargasp_e",
"name":"Exchange of ProArgAsp",
"metabolites":{
"proargasp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_proargasp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_proargasp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_procys_e",
"name":"Exchange of ProCys",
"metabolites":{
"procys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_procys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_procys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_proglulys_e",
"name":"Exchange of ProGluLys",
"metabolites":{
"proglulys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_proglulys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_proglulys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"ALAARGGLYt",
"name":"Transport of AlaArgGly, Extracellular",
"metabolites":{
"alaarggly_c":1.0,
"alaarggly_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ALAARGGLYt"
]
},
"annotation":{
"bigg.reaction":[
"ALAARGGLYt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ALAASNLEUt",
"name":"Transport of AlaAsnLeu, Extracellular",
"metabolites":{
"alaasnleu_c":1.0,
"alaasnleu_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ALAASNLEUt"
]
},
"annotation":{
"bigg.reaction":[
"ALAASNLEUt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ALAHISALAt",
"name":"Transport of AlaHisAla, Extracellular",
"metabolites":{
"alahisala_c":1.0,
"alahisala_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ALAHISALAt"
]
},
"annotation":{
"bigg.reaction":[
"ALAHISALAt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARGCYSGLYt",
"name":"Transport of ArgCysGly, Extracellular",
"metabolites":{
"argcysgly_c":1.0,
"argcysgly_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGCYSGLYt"
]
},
"annotation":{
"bigg.reaction":[
"ARGCYSGLYt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARGGLUGLUt",
"name":"Transport of ArgGluGlu, Extracellular",
"metabolites":{
"arggluglu_c":1.0,
"arggluglu_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGGLUGLUt"
]
},
"annotation":{
"bigg.reaction":[
"ARGGLUGLUt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARGGLYGLYt",
"name":"Transport of ArgGlyGly, Extracellular",
"metabolites":{
"argglygly_c":1.0,
"argglygly_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGGLYGLYt"
]
},
"annotation":{
"bigg.reaction":[
"ARGGLYGLYt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARGLEUPHEt",
"name":"Transport of ArgLeuPhe, Extracellular",
"metabolites":{
"argleuphe_c":1.0,
"argleuphe_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGLEUPHEt"
]
},
"annotation":{
"bigg.reaction":[
"ARGLEUPHEt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARGLYSASPt",
"name":"Transport of ArgLysAsp, Extracellular",
"metabolites":{
"arglysasp_c":1.0,
"arglysasp_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGLYSASPt"
]
},
"annotation":{
"bigg.reaction":[
"ARGLYSASPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARGPHEARGt",
"name":"Transport of ArgPheArg, Extracellular",
"metabolites":{
"argphearg_c":1.0,
"argphearg_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGPHEARGt"
]
},
"annotation":{
"bigg.reaction":[
"ARGPHEARGt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_pcholn225_hs_e",
"name":"Exchange of 1-Docosapentenoylglycerophosphocholine (Delta 7, 10, 13, 16, 19), Sn1-Lpc (22:5)-W3",
"metabolites":{
"pcholn225_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholn225_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholn225_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholn2254_hs_e",
"name":"Exchange of 1-Docosapentenoylglycerophosphocholine (Delta 4, 7, 10, 13, 16), Sn1-Lpc (22:5)-W6",
"metabolites":{
"pcholn2254_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholn2254_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholn2254_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholn28_hs_e",
"name":"Exchange of Lysopc A C28:0",
"metabolites":{
"pcholn28_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholn28_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholn28_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholn281_hs_e",
"name":"Exchange of Lysopc A C28:1 (Delta 5)",
"metabolites":{
"pcholn281_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholn281_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholn281_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholole_hs_e",
"name":"Exchange of 1-Oleoylglycerophosphocholine (Delta 9)",
"metabolites":{
"pcholole_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholole_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholole_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholpalme_hs_e",
"name":"Exchange of 1-Palmitoleoylglycerophosphocholine (Delta 9)",
"metabolites":{
"pcholpalme_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholpalme_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholpalme_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcholste_hs_e",
"name":"Exchange of 1-Stearoylglycerophosphocholine",
"metabolites":{
"pcholste_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcholste_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcholste_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pcollg5hlys_e",
"name":"Exchange of Erythro-5-Hydroxy-L-Lysinium",
"metabolites":{
"pcollg5hlys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pcollg5hlys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pcollg5hlys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pe12_hs_e",
"name":"Exchange of 1-Didecanoylglycerophosphoethanolamine (C12:0 Pe)",
"metabolites":{
"pe12_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pe12_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pe12_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pe13_hs_e",
"name":"Exchange of 1-Tridecanoylglycerophosphoethanolamine (C13:0 Pe)",
"metabolites":{
"pe13_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pe13_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pe13_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"ARGSERSERt",
"name":"Transport of ArgSerSer, Extracellular",
"metabolites":{
"argserser_c":1.0,
"argserser_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGSERSERt"
]
},
"annotation":{
"bigg.reaction":[
"ARGSERSERt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARGTYRVALt",
"name":"Transport of ArgtyrVal, Extracellular",
"metabolites":{
"argtyrval_c":1.0,
"argtyrval_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGTYRVALt"
]
},
"annotation":{
"bigg.reaction":[
"ARGTYRVALt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARGVALCYSt",
"name":"Transport of ArgValCys, Extracellular",
"metabolites":{
"argvalcys_c":1.0,
"argvalcys_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGVALCYSt"
]
},
"annotation":{
"bigg.reaction":[
"ARGVALCYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARGVALTRPt",
"name":"Transport of ArgValTrp, Extracellular",
"metabolites":{
"argvaltrp_c":1.0,
"argvaltrp_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGVALTRPt"
]
},
"annotation":{
"bigg.reaction":[
"ARGVALTRPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ASNCYSCYSt",
"name":"Transport of AsnCysCys, Extracellular",
"metabolites":{
"asncyscys_c":1.0,
"asncyscys_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASNCYSCYSt"
]
},
"annotation":{
"bigg.reaction":[
"ASNCYSCYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ASNMETPROt",
"name":"Transport of AsnMetPro, Extracellular",
"metabolites":{
"asnmetpro_c":1.0,
"asnmetpro_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASNMETPROt"
]
},
"annotation":{
"bigg.reaction":[
"ASNMETPROt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ASNPHEASPt",
"name":"Transport of AsnPheAsp, Extracellular",
"metabolites":{
"asnpheasp_c":1.0,
"asnpheasp_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASNPHEASPt"
]
},
"annotation":{
"bigg.reaction":[
"ASNPHEASPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ASNPHECYSt",
"name":"Transport of AsnPheCys, Extracellular",
"metabolites":{
"asnphecys_c":1.0,
"asnphecys_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASNPHECYSt"
]
},
"annotation":{
"bigg.reaction":[
"ASNPHECYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ASNTYRGLYt",
"name":"Transport of AsntyrGly, Extracellular",
"metabolites":{
"asntyrgly_c":1.0,
"asntyrgly_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASNTYRGLYt"
]
},
"annotation":{
"bigg.reaction":[
"ASNTYRGLYt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ASNTYRPHEt",
"name":"Transport of AsntyrPhe, Extracellular",
"metabolites":{
"asntyrphe_c":1.0,
"asntyrphe_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASNTYRPHEt"
]
},
"annotation":{
"bigg.reaction":[
"ASNTYRPHEt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ASNTYRTHRt",
"name":"Transport of AsntyrThr, Extracellular",
"metabolites":{
"asntyrthr_c":1.0,
"asntyrthr_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASNTYRTHRt"
]
},
"annotation":{
"bigg.reaction":[
"ASNTYRTHRt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ASPGLUt",
"name":"Transport of AspGlu, Extracellular",
"metabolites":{
"aspglu_c":1.0,
"aspglu_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASPGLUt"
]
},
"annotation":{
"bigg.reaction":[
"ASPGLUt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CYSCYSt",
"name":"Transport of CysCys, Extracellular",
"metabolites":{
"cyscys_c":1.0,
"cyscys_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CYSCYSt"
]
},
"annotation":{
"bigg.reaction":[
"CYSCYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CYSGLNMETt",
"name":"Transport of CysGlnMet, Extracellular",
"metabolites":{
"cysglnmet_c":1.0,
"cysglnmet_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CYSGLNMETt"
]
},
"annotation":{
"bigg.reaction":[
"CYSGLNMETt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CYSTYRASNt",
"name":"Transport of CystyrAsn, Extracellular",
"metabolites":{
"cystyrasn_c":1.0,
"cystyrasn_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CYSTYRASNt"
]
},
"annotation":{
"bigg.reaction":[
"CYSTYRASNt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_pe17_hs_e",
"name":"Exchange of 1-Heptadecanoylglycerophosphoethanolamine (C17:0 Pe)",
"metabolites":{
"pe17_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pe17_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pe17_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pe224_hs_e",
"name":"Exchange of 1-Docosatetraenoyglycerophosphoethanolamine (22:4, Delta 7, 10, 13, 16)",
"metabolites":{
"pe224_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pe224_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pe224_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pedh203_hs_e",
"name":"Exchange of 1-Dihomo-Linolenoylglycerophosphoethanolamine (20:3, Delta 8, 11, 14)",
"metabolites":{
"pedh203_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pedh203_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pedh203_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pelinl_hs_e",
"name":"Exchange of 1-Linoleoylglycerophosphoethanolamine (Delta 9, 12)",
"metabolites":{
"pelinl_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pelinl_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pelinl_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_peole_hs_e",
"name":"Exchange of 1-Oleoylglycerophosphoethanolamine (Delta 9)",
"metabolites":{
"peole_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_peole_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_peole_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_saccrp__L_e",
"name":"Exchange of L-Saccharopinate",
"metabolites":{
"saccrp__L_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_saccrp_L[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_saccrp__L_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_sphmyln181161_hs_e",
"name":"Exchange of Sphingomyelin (D18:1/16:1)",
"metabolites":{
"sphmyln181161_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_sphmyln181161_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_sphmyln181161_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_sphmyln18117_hs_e",
"name":"Exchange of Sphingomyelin (D18:1/17:0)",
"metabolites":{
"sphmyln18117_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_sphmyln18117_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_sphmyln18117_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_sphmyln18118_hs_e",
"name":"Exchange of Sphingomyelin (D18:1/18:0)",
"metabolites":{
"sphmyln18118_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_sphmyln18118_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_sphmyln18118_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_sphmyln181201_hs_e",
"name":"Exchange of Sphingomyelin (D18:1/20:1)",
"metabolites":{
"sphmyln181201_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_sphmyln181201_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_sphmyln181201_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_sphmyln18123_hs_e",
"name":"Exchange of Sphingomyelin (D18:1/23:0)",
"metabolites":{
"sphmyln18123_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_sphmyln18123_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_sphmyln18123_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_sphmyln1824_hs_e",
"name":"Exchange of Sphingomyelin (D18:0/24:0)",
"metabolites":{
"sphmyln1824_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_sphmyln1824_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_sphmyln1824_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_sphmyln1825_hs_e",
"name":"Exchange of Sphingomyelin (D18:0/25:0)",
"metabolites":{
"sphmyln1825_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_sphmyln1825_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_sphmyln1825_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_steeth_e",
"name":"Exchange of Stearoyl Ethanolamide",
"metabolites":{
"steeth_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_steeth[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_steeth_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tetdecaeth_e",
"name":"Exchange of C14:0-Ethanolamide, Tetradecanoyl Ethanolamide",
"metabolites":{
"tetdecaeth_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tetdecaeth[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tetdecaeth_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tmlys_e",
"name":"Exchange of N6, N6, N6-Trimethyl-L-Lysine",
"metabolites":{
"tmlys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tmlys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tmlys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trideceth_e",
"name":"Exchange of Tridecanoyl Thanolamide (C13:0)",
"metabolites":{
"trideceth_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trideceth[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trideceth_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_urcan_e",
"name":"Exchange of Urocanate",
"metabolites":{
"urcan_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_urcan[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_urcan_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_xolest183_hs_e",
"name":"Exchange of 1-Gamma-Linolenoyl-Cholesterol, Cholesterol-Ester (18:3, Delta 6, 9, 12)",
"metabolites":{
"xolest183_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_xolest183_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_xolest183_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_xolest205_hs_e",
"name":"Exchange of 1-Timnodnoyl-Cholesterol, Cholesterol-Ester (20:5, Delta 5, 8, 11, 14, 17)",
"metabolites":{
"xolest205_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_xolest205_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_xolest205_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_xolest226_hs_e",
"name":"Exchange of Cholesteryl Docosahexanoate, Cholesterol-Ester (22:6, Delta 4, 7, 10, 13, 16, 19)",
"metabolites":{
"xolest226_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_xolest226_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_xolest226_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"GLNASNGLNt",
"name":"Transport of GlnAsnGln, Extracellular",
"metabolites":{
"glnasngln_c":1.0,
"glnasngln_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLNASNGLNt"
]
},
"annotation":{
"bigg.reaction":[
"GLNASNGLNt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLNHISHISt",
"name":"Transport of GlnHisHis, Extracellular",
"metabolites":{
"glnhishis_c":1.0,
"glnhishis_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLNHISHISt"
]
},
"annotation":{
"bigg.reaction":[
"GLNHISHISt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LYSCYSHISt",
"name":"Transport of LysCysHis, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"lyscyshis_c":1.0,
"lyscyshis_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LYSCYSHISt"
]
},
"annotation":{
"bigg.reaction":[
"LYSCYSHISt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LYSPHEILEt",
"name":"Transport of LysPheIle, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"lyspheile_c":1.0,
"lyspheile_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LYSPHEILEt"
]
},
"annotation":{
"bigg.reaction":[
"LYSPHEILEt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LYSTRPARGt",
"name":"Transport of LysTrpArg, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"lystrparg_c":1.0,
"lystrparg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LYSTRPARGt"
]
},
"annotation":{
"bigg.reaction":[
"LYSTRPARGt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LYSVALTRPt",
"name":"Transport of LysValTrp, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"lysvaltrp_c":1.0,
"lysvaltrp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LYSVALTRPt"
]
},
"annotation":{
"bigg.reaction":[
"LYSVALTRPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"METASNTYRt",
"name":"Transport of MetAsntyr, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"metasntyr_c":1.0,
"metasntyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"METASNTYRt"
]
},
"annotation":{
"bigg.reaction":[
"METASNTYRt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"METHISLYSt",
"name":"Transport of MetHisLys, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"methislys_c":1.0,
"methislys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"METHISLYSt"
]
},
"annotation":{
"bigg.reaction":[
"METHISLYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"METMETILEt",
"name":"Transport of MetMetIle, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"metmetile_c":1.0,
"metmetile_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"METMETILEt"
]
},
"annotation":{
"bigg.reaction":[
"METMETILEt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"METPHEARGt",
"name":"Transport of MetPheArg, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"metphearg_c":1.0,
"metphearg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"METPHEARGt"
]
},
"annotation":{
"bigg.reaction":[
"METPHEARGt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHEGLNPHEt",
"name":"Transport of PheGlnPhe, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"pheglnphe_c":1.0,
"pheglnphe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"PHEGLNPHEt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHEPHEt",
"name":"Transport of PhePhe, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"phephe_c":1.0,
"phephe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"PHEPHEt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHEPROARGt",
"name":"Transport of PheProArg, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"pheproarg_c":1.0,
"pheproarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PHEPROARGt"
]
},
"annotation":{
"bigg.reaction":[
"PHEPROARGt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHESERTRPt",
"name":"Transport of PheSerTrp, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"phesertrp_c":1.0,
"phesertrp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PHESERTRPt"
]
},
"annotation":{
"bigg.reaction":[
"PHESERTRPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHETRPLEUt",
"name":"Transport of PheTrpLeu, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"phetrpleu_c":1.0,
"phetrpleu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PHETRPLEUt"
]
},
"annotation":{
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"PHETRPLEUt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHETYRt",
"name":"Transport of Phetyr, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"phetyr_c":1.0,
"phetyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PHETYRt"
]
},
"annotation":{
"bigg.reaction":[
"PHETYRt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHETYRLYSt",
"name":"Transport of PhetyrLys, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"phetyrlys_c":1.0,
"phetyrlys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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"PHETYRLYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PROARGCYSt",
"name":"Transport of ProArgCys, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"proargcys_c":1.0,
"proargcys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"PROARGCYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PROCYSt",
"name":"Transport of ProCys, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"procys_c":1.0,
"procys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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"PROCYSt"
]
},
"annotation":{
"bigg.reaction":[
"PROCYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PROGLULYSt",
"name":"Transport of ProGluLys, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"proglulys_c":1.0,
"proglulys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"PROGLULYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_estriol_e",
"name":"Exchange of Estriol",
"metabolites":{
"estriol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_estriol[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_estriol_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_3hpppn_e",
"name":"3-(3-hydroxy-phenyl)propionate exchange",
"metabolites":{
"3hpppn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_3hpppn[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_3hpppn_e"
],
"metanetx.reaction":[
"MNXR100697"
],
"sbo":"SBO:0000627",
"seed.reaction":[
"rxn08726"
]
}
},
{
"id":"EX_5aop_e",
"name":"5 Amino 4 oxopentanoate exchange",
"metabolites":{
"5aop_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_5aop[e]"
]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"reactome.reaction":[
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"R-GGA-421517"
],
"sbo":"SBO:0000627",
"seed.reaction":[
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]
}
},
{
"id":"EX_abt__D_e",
"name":"D-Arabitol exchange",
"metabolites":{
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_acglu_e",
"name":"Exchange of N-Acetyl-L-Glutamate",
"metabolites":{
"acglu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_CE2510_e",
"name":"Exchange of 11-Cis-Eicosenoate",
"metabolites":{
"CE2510_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_CE2510[e]"
]
},
"annotation":{
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"EX_CE2510_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_ddca_e",
"name":"Dodecanoate (n-C12:0) exchange",
"metabolites":{
"ddca_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
"MNXR97211"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_glyc__R_e",
"name":"(R)-Glycerate exchange",
"metabolites":{
"glyc__R_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
"annotation":{
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],
"biocyc":[
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000627",
"seed.reaction":[
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]
}
},
{
"id":"EX_Lcyst_e",
"name":"L-Cysteate exchange",
"metabolites":{
"Lcyst_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pac_e",
"name":"Phenylacetic acid exchange",
"metabolites":{
"pac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pac[e]"
]
},
"annotation":{
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"EX_pac_e"
],
"metanetx.reaction":[
"MNXR102320"
],
"sbo":"SBO:0000627",
"seed.reaction":[
"rxn11336",
"rxn12774"
]
}
},
{
"id":"EX_pser__L_e",
"name":"O-Phospho-L-serine exchange",
"metabolites":{
"pser__L_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pser_L[e]"
]
},
"annotation":{
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"EX_pser__L_e"
],
"metanetx.reaction":[
"MNXR103246"
],
"sbo":"SBO:0000627",
"seed.reaction":[
"rxn09204"
]
}
},
{
"id":"3HPPPNOHGLUCc",
"name":"Glucuronidation of 3- (3-Hydroxyphenyl)Propionate Hydroxy Derivative",
"metabolites":{
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"3hpppnohgluc_c":1.0,
"h_c":1.0,
"udp_c":1.0,
"udpglcur_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Phenylalanine metabolism",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"ACHOMm",
"name":"Acetylation of Homoserine",
"metabolites":{
"accoa_m":-1.0,
"achom__L_m":1.0,
"coa_m":1.0,
"h_m":1.0,
"hom__L_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Glycine, serine, alanine, and threonine metabolism",
"notes":{
"original_bigg_ids":[
"ACHOMm"
]
},
"annotation":{
"bigg.reaction":[
"ACHOMm"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HC02195c",
"name":"Formation of Tauroursodeoxycholate",
"metabolites":{
"HC02195_c":1.0,
"coa_c":1.0,
"h_c":1.0,
"taur_c":-1.0,
"urscholcoa_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"570_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
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"HC02195c"
]
},
"annotation":{
"bigg.reaction":[
"HC02195c"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HC02196c",
"name":"Formation of Glycoursodeoxycholate",
"metabolites":{
"HC02196_c":1.0,
"coa_c":1.0,
"gly_c":-1.0,
"h_c":1.0,
"urscholcoa_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"570_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"HC02196c"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HC02220c",
"name":"Formation of Sulfochenodeoxycholate",
"metabolites":{
"C02528_c":-1.0,
"HC02220_c":1.0,
"h_c":1.0,
"pap_c":1.0,
"paps_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6822_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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"HC02220c"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HC02194c",
"name":"Formation of Ursodeoxycholate",
"metabolites":{
"7klitchol_c":-1.0,
"HC02194_c":1.0,
"h_c":-1.0,
"nadp_c":1.0,
"nadph_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Bile acid synthesis",
"notes":{
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"HC02194c"
]
},
"annotation":{
"bigg.reaction":[
"HC02194c"
],
"sbo":"SBO:0000176"
}
},
{
"id":"URSCHOLCOAc",
"name":"Formation of Ursodeoxycholyl Coa",
"metabolites":{
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"amp_c":1.0,
"atp_c":-1.0,
"coa_c":-1.0,
"ppi_c":1.0,
"urscholcoa_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Bile acid synthesis",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"URSCHOLCOAc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HC02194te",
"name":"Transport of Bile Acid, Ursodeoxycholate, Active Transport",
"metabolites":{
"HC02194_c":-1.0,
"HC02194_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8647_AT1 or 8714_AT2 or 8714_AT1 or 1244_AT1 or 10257_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"XOL27OHtmc",
"name":"Transport of 26-Hydroxycholesterol, Intracellular",
"metabolites":{
"xol27oh_c":1.0,
"xol27oh_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, mitochondrial",
"notes":{
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"XOL27OHtmc"
]
},
"annotation":{
"bigg.reaction":[
"XOL27OHtmc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PROPHEt",
"name":"Transport of ProPhe, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"prophe_c":1.0,
"prophe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
"PROPHEt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PROPROARGt",
"name":"Transport of ProProArg, Extracellular",
"metabolites":{
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"h_e":-1.0,
"proproarg_c":1.0,
"proproarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"PROPROARGt"
],
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}
},
{
"id":"PROTRPLYSt",
"name":"Transport of ProTrpLys, Extracellular",
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"upper_bound":1000.0,
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"original_bigg_ids":[
"PROTRPLYSt"
]
},
"annotation":{
"bigg.reaction":[
"PROTRPLYSt"
],
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}
},
{
"id":"PROVALGLNt",
"name":"Transport of ProValGln, Extracellular",
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"h_c":1.0,
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"gene_reaction_rule":"6564_AT1 or 6565_AT1",
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"PROVALGLNt"
]
},
"annotation":{
"bigg.reaction":[
"PROVALGLNt"
],
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}
},
{
"id":"SERARGALAt",
"name":"Transport of SerArgAla, Extracellular",
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
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"original_bigg_ids":[
"SERARGALAt"
]
},
"annotation":{
"bigg.reaction":[
"SERARGALAt"
],
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}
},
{
"id":"SERCYSARGt",
"name":"Transport of SerCysArg, Extracellular",
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"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
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"notes":{
"original_bigg_ids":[
"SERCYSARGt"
]
},
"annotation":{
"bigg.reaction":[
"SERCYSARGt"
],
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}
},
{
"id":"SERGLYGLUt",
"name":"Transport of SerGlyGlu, Extracellular",
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"h_c":1.0,
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"upper_bound":1000.0,
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]
},
"annotation":{
"bigg.reaction":[
"SERGLYGLUt"
],
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}
},
{
"id":"VALLEUPHEt",
"name":"Transport of ValLeuPhe, Extracellular",
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"h_c":1.0,
"h_e":-1.0,
"valleuphe_c":1.0,
"valleuphe_e":-1.0
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"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
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"original_bigg_ids":[
"VALLEUPHEt"
]
},
"annotation":{
"bigg.reaction":[
"VALLEUPHEt"
],
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}
},
{
"id":"VALPHEARGt",
"name":"Transport of ValPheArg, Extracellular",
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"h_c":1.0,
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"valphearg_c":1.0,
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"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
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"original_bigg_ids":[
"VALPHEARGt"
]
},
"annotation":{
"bigg.reaction":[
"VALPHEARGt"
],
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}
},
{
"id":"VALSERARGt",
"name":"Transport of ValSerArg, Extracellular",
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"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
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"VALSERARGt"
]
},
"annotation":{
"bigg.reaction":[
"VALSERARGt"
],
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}
},
{
"id":"VALTRPVALt",
"name":"Transport of ValTrpVal, Extracellular",
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"h_e":-1.0,
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]
},
"annotation":{
"bigg.reaction":[
"VALTRPVALt"
],
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}
},
{
"id":"TRPGLYASPt",
"name":"Transport of TrpGlyAsp, Extracellular",
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"h_e":-1.0,
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"lower_bound":-1000.0,
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]
},
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"TRPGLYASPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ALALYSTHRr",
"name":"Metabolism (Formation/Degradation) of AlaLysThr",
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"alalysthr_c":-1.0,
"h2o_c":-2.0,
"lys__L_c":1.0,
"thr__L_c":1.0
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"lower_bound":-1000.0,
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]
},
"annotation":{
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"ALALYSTHRr"
],
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}
},
{
"id":"ARGALAPHEr",
"name":"Metabolism (Formation/Degradation) of ArgAlaPhe",
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"arg__L_c":1.0,
"argalaphe_c":-1.0,
"h2o_c":-2.0,
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"lower_bound":-1000.0,
"upper_bound":1000.0,
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"ARGALAPHEr"
]
},
"annotation":{
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"ARGALAPHEr"
],
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}
},
{
"id":"ARGARGr",
"name":"Metabolism (Formation/Degradation) of ArgArg",
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"argarg_c":-1.0,
"h2o_c":-1.0
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"ARGARGr"
]
},
"annotation":{
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],
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}
},
{
"id":"ARGCYSGLYr",
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]
},
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],
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}
},
{
"id":"ARGCYSSERr",
"name":"Metabolism (Formation/Degradation) of ArgCysSer",
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"cys__L_c":1.0,
"h2o_c":-2.0,
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]
},
"annotation":{
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],
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}
},
{
"id":"ARGGLUGLUr",
"name":"Metabolism (Formation/Degradation) of ArgGluGlu",
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"glu__L_c":2.0,
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"upper_bound":1000.0,
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]
},
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],
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}
},
{
"id":"ARGGLUPROr",
"name":"Metabolism (Formation/Degradation) of ArgGluPro",
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},
"annotation":{
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}
},
{
"id":"ARGGLYGLYr",
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"h2o_c":1.0
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},
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"ARGGLYGLYr"
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}
},
{
"id":"ARGHISTHRr",
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"his__L_c":1.0,
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]
},
"annotation":{
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"ARGHISTHRr"
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}
},
{
"id":"ARGLYSASPr",
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"asp__L_c":1.0,
"h2o_c":-2.0,
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]
},
"annotation":{
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"ARGLYSASPr"
],
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}
},
{
"id":"PCSF",
"name":"P-Cresol Sulfate Formation from P-Cresol",
"metabolites":{
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"paps_c":-1.0,
"pcresol_c":-1.0,
"pcs_c":1.0
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"lower_bound":0.0,
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]
},
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"PCSF"
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}
},
{
"id":"PCSsec",
"name":"Secretion of P-Cresol Sulfate ",
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"lower_bound":0.0,
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]
},
"annotation":{
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"PCSsec"
],
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}
},
{
"id":"EX_bgly_e",
"name":"Exchange of Hippurate (Benzoylglycinate) ",
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"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
"annotation":{
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}
},
{
"id":"MEPIt",
"name":"Transport of Metanephrine",
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
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},
"annotation":{
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],
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}
},
{
"id":"TREt",
"name":"Transport of Trehalose, Reversible",
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"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
"annotation":{
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}
},
{
"id":"LEULEUt",
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"gene_reaction_rule":"",
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},
"annotation":{
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}
},
{
"id":"GLYPROt",
"name":"Transport of Glycylproline",
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"glypro_e":1.0
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"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
"annotation":{
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],
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}
},
{
"id":"PROGLyt",
"name":"Transport of Prolylglycine",
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
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},
"annotation":{
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"PROGLyt"
],
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}
},
{
"id":"DHBPTt",
"name":"Transport of 6,7-Dihydrobiopterin",
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"dhbpt_e":1.0
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},
"annotation":{
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}
},
{
"id":"THBPTt",
"name":"Transport of 5,6,7,8-Tetrahydrobiopterin",
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},
"annotation":{
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},
{
"id":"EX_normete__L_e",
"name":"L-Normetanephrine exchange",
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"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
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}
},
{
"id":"EX_mepi_e",
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"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
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}
},
{
"id":"EX_maltttr_e",
"name":"Maltotetraose exchange",
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"maltttr_e":-1.0
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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},
"annotation":{
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"metanetx.reaction":[
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"sbo":"SBO:0000627",
"seed.reaction":[
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}
},
{
"id":"EX_thbpt_e",
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"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
"annotation":{
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}
},
{
"id":"EX_adprib_e",
"name":"ADPribose exchange",
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
"annotation":{
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"metanetx.reaction":[
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}
},
{
"id":"DM_itp_n",
"name":"Demand for ITP, Nuclear",
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
"annotation":{
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}
},
{
"id":"EX_proleuarg_e",
"name":"Exchange of ProLeuArg",
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
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}
},
{
"id":"EX_protrpthr_e",
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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},
"annotation":{
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}
},
{
"id":"EX_serargala_e",
"name":"Exchange of SerArgAla",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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},
"annotation":{
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}
},
{
"id":"EX_serargtrp_e",
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"metabolites":{
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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},
"annotation":{
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}
},
{
"id":"EX_sercysarg_e",
"name":"Exchange of SerCysArg",
"metabolites":{
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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},
"annotation":{
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}
},
{
"id":"EX_serglyglu_e",
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}
},
{
"id":"ARGSERSERr",
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}
},
{
"id":"ARGTYRVALr",
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}
},
{
"id":"ARGVALTRPr",
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}
},
{
"id":"ASNCYSCYSr",
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},
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}
},
{
"id":"ASNMETPROr",
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]
},
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"ASNMETPROr"
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}
},
{
"id":"ASNPHEASPr",
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"upper_bound":1000.0,
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]
},
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}
},
{
"id":"ASNPHECYSr",
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]
},
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}
},
{
"id":"ASNTYRGLYr",
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"upper_bound":1000.0,
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]
},
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"ASNTYRGLYr"
],
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}
},
{
"id":"ASNTYRPHEr",
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"phe__L_c":1.0,
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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"ASNTYRPHEr"
]
},
"annotation":{
"bigg.reaction":[
"ASNTYRPHEr"
],
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}
},
{
"id":"ASNTYRTHRr",
"name":"Metabolism (Formation/Degradation) of AsntyrThr",
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"h2o_c":-2.0,
"thr__L_c":1.0,
"tyr__L_c":1.0
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"upper_bound":1000.0,
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"ASNTYRTHRr"
]
},
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"ASNTYRTHRr"
],
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}
},
{
"id":"ASPASNGLUr",
"name":"Metabolism (Formation/Degradation) of AspAsnGlu",
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"glu__L_c":1.0,
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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"notes":{
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"ASPASNGLUr"
]
},
"annotation":{
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"ASPASNGLUr"
],
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}
},
{
"id":"ASPGLUr",
"name":"Metabolism (Formation/Degradation) of AspGlu",
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"aspglu_c":-1.0,
"glu__L_c":1.0,
"h2o_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
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"ASPGLUr"
]
},
"annotation":{
"bigg.reaction":[
"ASPGLUr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"ASPLYSHISr",
"name":"Metabolism (Formation/Degradation) of AspLysHis",
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"h2o_c":-2.0,
"his__L_c":1.0,
"lys__L_c":1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
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"ASPLYSHISr"
]
},
"annotation":{
"bigg.reaction":[
"ASPLYSHISr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"CYSGLNMETr",
"name":"Metabolism (Formation/Degradation) of CysGlnMet",
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"cysglnmet_c":-1.0,
"gln__L_c":1.0,
"h2o_c":-2.0,
"met__L_c":1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
"original_bigg_ids":[
"CYSGLNMETr"
]
},
"annotation":{
"bigg.reaction":[
"CYSGLNMETr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"CYSGLUHISr",
"name":"Metabolism (Formation/Degradation) of CysGluHis",
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"cysgluhis_c":-1.0,
"glu__L_c":1.0,
"h2o_c":-2.0,
"his__L_c":1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
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"CYSGLUHISr"
]
},
"annotation":{
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"CYSGLUHISr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GLNHISHISr",
"name":"Metabolism (Formation/Degradation) of GlnHisHis",
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"glnhishis_c":-1.0,
"h2o_c":-2.0,
"his__L_c":2.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
"original_bigg_ids":[
"GLNHISHISr"
]
},
"annotation":{
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"GLNHISHISr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GLNHISLYSr",
"name":"Metabolism (Formation/Degradation) of GlnHisLys",
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"h2o_c":-2.0,
"his__L_c":1.0,
"lys__L_c":1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
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"GLNHISLYSr"
]
},
"annotation":{
"bigg.reaction":[
"GLNHISLYSr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GLNPROGLUr",
"name":"Metabolism (Formation/Degradation) of GlnProGlu",
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"glnproglu_c":-1.0,
"glu__L_c":1.0,
"h2o_c":-2.0,
"pro__L_c":1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
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"GLNPROGLUr"
]
},
"annotation":{
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"GLNPROGLUr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GLNTRPGLUr",
"name":"Metabolism (Formation/Degradation) of GlnTrpGlu",
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"glu__L_c":1.0,
"h2o_c":-2.0,
"trp__L_c":1.0
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"upper_bound":1000.0,
"gene_reaction_rule":"",
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"GLNTRPGLUr"
]
},
"annotation":{
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],
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}
},
{
"id":"GLNTYRLEUr",
"name":"Metabolism (Formation/Degradation) of GlntyrLeu",
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"h2o_c":-2.0,
"leu__L_c":1.0,
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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"GLNTYRLEUr"
]
},
"annotation":{
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"GLNTYRLEUr"
],
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}
},
{
"id":"GLUARGLEUr",
"name":"Metabolism (Formation/Degradation) of GluArgLeu",
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"glu__L_c":1.0,
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"h2o_c":-2.0,
"leu__L_c":1.0
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
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"GLUARGLEUr"
]
},
"annotation":{
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"GLUARGLEUr"
],
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}
},
{
"id":"GLUMETHISr",
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"his__L_c":1.0,
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
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"GLUMETHISr"
]
},
"annotation":{
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"GLUMETHISr"
],
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}
},
{
"id":"GLUTHRr",
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"gluthr_c":-1.0,
"h2o_c":-1.0,
"thr__L_c":1.0
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
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"GLUTHRr"
]
},
"annotation":{
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"GLUTHRr"
],
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}
},
{
"id":"GLUTRPALAr",
"name":"Metabolism (Formation/Degradation) of GluTrpAla",
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"glutrpala_c":-1.0,
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
"annotation":{
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"GLUTRPALAr"
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"sbo":"SBO:0000176"
}
},
{
"id":"GLYHISASNr",
"name":"Metabolism (Formation/Degradation) of GlyHisAsn",
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"glyhisasn_c":-1.0,
"h2o_c":-2.0,
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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]
},
"annotation":{
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"GLYHISASNr"
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"sbo":"SBO:0000176"
}
},
{
"id":"PE224_HSte",
"name":"Transport of 1-Docosatetraenoyglycerophosphoethanolamine (22:4, Delta 7, 10, 13, 16)",
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"lower_bound":-1000.0,
"upper_bound":1000.0,
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"PE224_HSte"
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},
"annotation":{
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"PE224_HSte"
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}
},
{
"id":"EX_serphelys_e",
"name":"Exchange of SerPheLys",
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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},
"annotation":{
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}
},
{
"id":"EX_sertrphis_e",
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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},
"annotation":{
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"sbo":"SBO:0000627"
}
},
{
"id":"EX_thrargtyr_e",
"name":"Exchange of ThrArgtyr",
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"thrargtyr_e":-1.0
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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},
"annotation":{
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"sbo":"SBO:0000627"
}
},
{
"id":"EX_thrasntyr_e",
"name":"Exchange of ThrAsntyr",
"metabolites":{
"thrasntyr_e":-1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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},
"annotation":{
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}
},
{
"id":"EX_thrglnglu_e",
"name":"Exchange of ThrGlnGlu",
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"thrglnglu_e":-1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000627"
}
},
{
"id":"EX_thrhishis_e",
"name":"Exchange of ThrHisHis",
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"thrhishis_e":-1.0
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"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
"annotation":{
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"sbo":"SBO:0000627"
}
},
{
"id":"EX_thrilearg_e",
"name":"Exchange of ThrIleArg",
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"thrilearg_e":-1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000627"
}
},
{
"id":"EX_thrmetarg_e",
"name":"Exchange of ThrMetArg",
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"thrmetarg_e":-1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpalapro_e",
"name":"Exchange of TrpAlaPro",
"metabolites":{
"trpalapro_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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},
"annotation":{
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"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpaspasp_e",
"name":"Exchange of TrpAspAsp",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpgluleu_e",
"name":"Exchange of TrpGluLeu",
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"trpgluleu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpglutyr_e",
"name":"Exchange of TrpGlutyr",
"metabolites":{
"trpglutyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpglyval_e",
"name":"Exchange of TrpGlyVal",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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"notes":{
"original_bigg_ids":[
"EX_trpglyval[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trpglyval_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trphismet_e",
"name":"Exchange of TrpHisMet",
"metabolites":{
"trphismet_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trphismet[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trphismet_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpmetarg_e",
"name":"Exchange of TrpMetArg",
"metabolites":{
"trpmetarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trpmetarg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trpmetarg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpphe_e",
"name":"Exchange of TrpPhe",
"metabolites":{
"trpphe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trpphe[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trpphe_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpprogly_e",
"name":"Exchange of TrpProGly",
"metabolites":{
"trpprogly_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trpprogly[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trpprogly_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpproleu_e",
"name":"Exchange of TrpProLeu",
"metabolites":{
"trpproleu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trpproleu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trpproleu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpproval_e",
"name":"Exchange of TrpProVal",
"metabolites":{
"trpproval_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trpproval[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trpproval_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpsertyr_e",
"name":"Exchange of TrpSertyr",
"metabolites":{
"trpsertyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trpsertyr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trpsertyr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpthrglu_e",
"name":"Exchange of TrpThrGlu",
"metabolites":{
"trpthrglu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trpthrglu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trpthrglu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpthrile_e",
"name":"Exchange of TrpThrIle",
"metabolites":{
"trpthrile_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trpthrile[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trpthrile_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpthrtyr_e",
"name":"Exchange of TrpThrtyr",
"metabolites":{
"trpthrtyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trpthrtyr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trpthrtyr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpvalasp_e",
"name":"Exchange of TrpValAsp",
"metabolites":{
"trpvalasp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trpvalasp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trpvalasp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"PCHOLN261_HSte",
"name":"Transport of Lysopc A C26:1 (Delta 5)",
"metabolites":{
"pcholn261_hs_c":1.0,
"pcholn261_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN261_HSte"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN261_HSte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN28_HSte",
"name":"Transport of Lysopc A C28:0",
"metabolites":{
"pcholn28_hs_c":1.0,
"pcholn28_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN28_HSte"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN28_HSte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HDCECRNtr",
"name":"Transport of Palmitoleoyl-Carnitine",
"metabolites":{
"hdcecrn_c":1.0,
"hdcecrn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HDCECRNtr"
]
},
"annotation":{
"bigg.reaction":[
"HDCECRNtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LNELDCCRNtr",
"name":"Transport of 6Z,9Z-Octadecadienoylcarnitine",
"metabolites":{
"lneldccrn_c":1.0,
"lneldccrn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LNELDCCRNtr"
]
},
"annotation":{
"bigg.reaction":[
"LNELDCCRNtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"STCRNtr",
"name":"Transport of O-Octadecanoyl-R-Carnitine",
"metabolites":{
"stcrn_c":1.0,
"stcrn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"STCRNtr"
]
},
"annotation":{
"bigg.reaction":[
"STCRNtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_sphmyln_hs_e",
"name":"Exchange of Sphingomyelin",
"metabolites":{
"sphmyln_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_sphmyln_hs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_sphmyln_hs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"XOLEST182tl",
"name":"Intracellular Transport of 1-Linoleoyl-Cholesterol, Cholesterol-Ester (18:2, Delta 9, 12)",
"metabolites":{
"xolest182_hs_c":-1.0,
"xolest182_hs_l":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, lysosomal",
"notes":{
"original_bigg_ids":[
"XOLEST182tl"
]
},
"annotation":{
"bigg.reaction":[
"XOLEST182tl"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TMNDNCtl",
"name":"Intracellular Transport of Timnodonic Acid",
"metabolites":{
"tmndnc_c":1.0,
"tmndnc_l":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, lysosomal",
"notes":{
"original_bigg_ids":[
"TMNDNCtl"
]
},
"annotation":{
"bigg.reaction":[
"TMNDNCtl"
],
"sbo":"SBO:0000185"
}
},
{
"id":"XOLEST226tl",
"name":"Intracellular Transport of Cholesteryl Docosahexanoate, Cholesterol-Ester (22:6, Delta 4, 7, 10, 13, 16, 19)",
"metabolites":{
"xolest226_hs_c":-1.0,
"xolest226_hs_l":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, lysosomal",
"notes":{
"original_bigg_ids":[
"XOLEST226tl"
]
},
"annotation":{
"bigg.reaction":[
"XOLEST226tl"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CRVNCtl",
"name":"Intracellular Transport of Cervonic Acid, C22:6 N-3",
"metabolites":{
"crvnc_c":1.0,
"crvnc_l":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, lysosomal",
"notes":{
"original_bigg_ids":[
"CRVNCtl"
]
},
"annotation":{
"bigg.reaction":[
"CRVNCtl"
],
"sbo":"SBO:0000185"
}
},
{
"id":"BGLYtm",
"name":"Intracellular Transport for Benzoyl-Glycine",
"metabolites":{
"bgly_c":1.0,
"bgly_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, mitochondrial",
"notes":{
"original_bigg_ids":[
"BGLYtm"
]
},
"annotation":{
"bigg.reaction":[
"BGLYtm"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GNCORE1te",
"name":"Extracellular Transport of gncore  1",
"metabolites":{
"gncore1_c":-1.0,
"gncore1_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GNCORE1te"
]
},
"annotation":{
"bigg.reaction":[
"GNCORE1te"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GNCORE2te",
"name":"Extracellular Transport of gncore  2",
"metabolites":{
"gncore2_c":-1.0,
"gncore2_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GNCORE2te"
]
},
"annotation":{
"bigg.reaction":[
"GNCORE2te"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LHCYSTIN",
"name":"Formation of Homocystine",
"metabolites":{
"Lhcystin_c":-1.0,
"gthox_c":1.0,
"gthrd_c":-2.0,
"hcys__L_c":2.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Methionine and cysteine metabolism",
"notes":{
"original_bigg_ids":[
"LHCYSTIN"
]
},
"annotation":{
"bigg.reaction":[
"LHCYSTIN"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LHCYSTINt",
"name":"Transport of Homocystine",
"metabolites":{
"Lhcystin_c":-1.0,
"Lhcystin_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LHCYSTINt"
]
},
"annotation":{
"bigg.reaction":[
"LHCYSTINt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_Lhcystin_e",
"name":"Exchange of Homocystine",
"metabolites":{
"Lhcystin_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_Lhcystin[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_Lhcystin_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"MALOAAtm",
"name":"Dicarboxylate/tricarboxylate carrier (mal:oaa), mitochondrial",
"metabolites":{
"mal__L_c":1.0,
"mal__L_m":-1.0,
"oaa_c":-1.0,
"oaa_m":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, mitochondrial",
"notes":{
"original_bigg_ids":[
"MALOAtm"
]
},
"annotation":{
"bigg.reaction":[
"MALOAAtm"
],
"metanetx.reaction":[
"MNXR101346"
],
"sbo":"SBO:0000185",
"seed.reaction":[
"rxn09836"
]
}
},
{
"id":"EX_tyrala_e",
"name":"Exchange of TyrAla",
"metabolites":{
"tyrala_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tyrala[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tyrala_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tyralaphe_e",
"name":"Exchange of TyrAlaPhe",
"metabolites":{
"tyralaphe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tyralaphe[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tyralaphe_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tyrargglu_e",
"name":"Exchange of TyrArgGlu",
"metabolites":{
"tyrargglu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tyrargglu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tyrargglu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tyrasparg_e",
"name":"Exchange of TyrAspArg",
"metabolites":{
"tyrasparg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tyrasparg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tyrasparg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tyrcysgly_e",
"name":"Exchange of TyrCysGly",
"metabolites":{
"tyrcysgly_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tyrcysgly[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tyrcysgly_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tyrglu_e",
"name":"Exchange of TyrGlu",
"metabolites":{
"tyrglu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tyrglu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tyrglu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_valleuphe_e",
"name":"Exchange of ValLeuPhe",
"metabolites":{
"valleuphe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_valleuphe[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_valleuphe_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_vallystyr_e",
"name":"Exchange of ValLystyr",
"metabolites":{
"vallystyr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_vallystyr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_vallystyr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_valtrpphe_e",
"name":"Exchange of ValTrpPhe",
"metabolites":{
"valtrpphe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_valtrpphe[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_valtrpphe_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_valtrpval_e",
"name":"Exchange of ValTrpVal",
"metabolites":{
"valtrpval_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_valtrpval[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_valtrpval_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_valval_e",
"name":"Exchange of ValVal",
"metabolites":{
"valval_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_valval[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_valval_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_trpglyasp_e",
"name":"Exchange of TrpGlyAsp",
"metabolites":{
"trpglyasp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_trpglyasp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_trpglyasp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"ALAARGCYSt",
"name":"Transport of AlaArgCys, Extracellular",
"metabolites":{
"alaargcys_c":1.0,
"alaargcys_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ALAARGCYSt"
]
},
"annotation":{
"bigg.reaction":[
"ALAARGCYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLNLYSLYSt",
"name":"Transport of GlnLysLys, Extracellular",
"metabolites":{
"glnlyslys_c":1.0,
"glnlyslys_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLNLYSLYSt"
]
},
"annotation":{
"bigg.reaction":[
"GLNLYSLYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLNLYSTRPt",
"name":"Transport of GlnLysTrp, Extracellular",
"metabolites":{
"glnlystrp_c":1.0,
"glnlystrp_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLNLYSTRPt"
]
},
"annotation":{
"bigg.reaction":[
"GLNLYSTRPt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLULEUt",
"name":"Transport of GluLeu, Extracellular",
"metabolites":{
"gluleu_c":1.0,
"gluleu_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLULEUt"
]
},
"annotation":{
"bigg.reaction":[
"GLULEUt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLUTHRt",
"name":"Transport of GluThr, Extracellular",
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"h_e":-1.0
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"GLUTHRt"
]
},
"annotation":{
"bigg.reaction":[
"GLUTHRt"
],
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}
},
{
"id":"GLUTRPALAt",
"name":"Transport of GluTrpAla, Extracellular",
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"h_c":1.0,
"h_e":-1.0
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"GLUTRPALAt"
]
},
"annotation":{
"bigg.reaction":[
"GLUTRPALAt"
],
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}
},
{
"id":"GLYHISASNt",
"name":"Transport of GlyHisAsn, Extracellular",
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"h_c":1.0,
"h_e":-1.0
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"GLYHISASNt"
]
},
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"bigg.reaction":[
"GLYHISASNt"
],
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}
},
{
"id":"GLYHISLYSt",
"name":"Transport of GlyHisLys, Extracellular",
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"h_e":-1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
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"GLYHISLYSt"
]
},
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"bigg.reaction":[
"GLYHISLYSt"
],
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}
},
{
"id":"GLYLYSCYSt",
"name":"Transport of GlyLysCys, Extracellular",
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"h_c":1.0,
"h_e":-1.0
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"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
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"GLYLYSCYSt"
]
},
"annotation":{
"bigg.reaction":[
"GLYLYSCYSt"
],
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}
},
{
"id":"GLYLYSPHEt",
"name":"Transport of GlyLysPhe, Extracellular",
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"glylysphe_c":1.0,
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"h_c":1.0,
"h_e":-1.0
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"gene_reaction_rule":"6564_AT1 or 6565_AT1",
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"original_bigg_ids":[
"GLYLYSPHEt"
]
},
"annotation":{
"bigg.reaction":[
"GLYLYSPHEt"
],
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}
},
{
"id":"GLYTYRLYSt",
"name":"Transport of GlytyrLys, Extracellular",
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"glytyrlys_c":1.0,
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"h_c":1.0,
"h_e":-1.0
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"subsystem":"Transport, extracellular",
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"original_bigg_ids":[
"GLYTYRLYSt"
]
},
"annotation":{
"bigg.reaction":[
"GLYTYRLYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HISARGCYSt",
"name":"Transport of HisArgCys, Extracellular",
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"h_c":1.0,
"h_e":-1.0,
"hisargcys_c":1.0,
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"HISARGCYSt"
]
},
"annotation":{
"bigg.reaction":[
"HISARGCYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HISARGSERt",
"name":"Transport of HisArgSer, Extracellular",
"metabolites":{
"h_c":1.0,
"h_e":-1.0,
"hisargser_c":1.0,
"hisargser_e":-1.0
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"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
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"HISARGSERt"
]
},
"annotation":{
"bigg.reaction":[
"HISARGSERt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HISCYSCYSt",
"name":"Transport of HisCysCys, Extracellular",
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"h_e":-1.0,
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"notes":{
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]
},
"annotation":{
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"HISCYSCYSt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"MLTHFtm",
"name":"5,10-Methylenetetrahydrofolate transport from the cytosol to the mitochondria",
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"mlthf_m":1.0
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"lower_bound":-1000.0,
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"original_bigg_ids":[
"MLTHFtm"
]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"2MOPtm",
"name":"Transport of 2-Methyl-3-Oxopropanoate, Mitochondrial",
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"2mop_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
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"subsystem":"Transport, mitochondrial",
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]
},
"annotation":{
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"2MOPtm"
],
"sbo":"SBO:0000185"
}
},
{
"id":"URIK3",
"name":"Uridine kinase (ITP:Uridine)",
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"idp_c":1.0,
"itp_c":-1.0,
"ump_c":1.0,
"uri_c":-1.0
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]
},
"annotation":{
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"URIK3"
],
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"kegg.reaction":[
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],
"metanetx.reaction":[
"MNXR105164"
],
"sbo":"SBO:0000176",
"seed.reaction":[
"rxn00715"
]
}
},
{
"id":"PSDm_hsc",
"name":"Psdm Hsc",
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"h_c":-1.0,
"pe_hs_c":1.0,
"ps_hs_c":-1.0
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"r2514e",
"name":"Transport of Hexadecenoate (N-C16:1) via Carnitine Antiport",
"metabolites":{
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"hdcea_c":-1.0,
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},
"annotation":{
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],
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}
},
{
"id":"RE2675C2",
"name":"Re2675C2",
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"h_c":-1.0,
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"annotation":{
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],
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}
},
{
"id":"3MOXTYRESSte",
"name":"3-Methoxytyramine secretion via secretory vesicle (ATP driven)",
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],
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}
},
{
"id":"ADRNLtu",
"name":"Adrenaline (epinephrine) transport, uniport",
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},
"annotation":{
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],
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],
"sbo":"SBO:0000185"
}
},
{
"id":"AGPAT4",
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]
},
"annotation":{
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],
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}
},
{
"id":"BANDMT",
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"bandmt_c":1.0,
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},
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],
"metanetx.reaction":[
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],
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}
},
{
"id":"ACDO",
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"h_c":1.0,
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},
"annotation":{
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],
"biocyc":[
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"kegg.reaction":[
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],
"metanetx.reaction":[
"MNXR95227"
],
"reactome.reaction":[
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"R-SSC-1237119",
"R-TGU-1237119",
"R-SPO-1237119",
"R-ATH-1237119",
"R-OSA-1237119",
"R-GGA-1237119",
"R-DRE-1237119",
"R-CFA-1237119",
"R-XTR-1237119",
"R-MMU-1237119",
"R-SCE-1237119",
"R-HSA-1237119",
"R-CEL-1237119",
"R-DDI-1237119",
"R-RNO-1237119",
"R-DME-1237119"
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"rhea":[
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"24505",
"24506",
"24504"
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}
},
{
"id":"DKMPPD3_1",
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},
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}
},
{
"id":"DM_pe_hs_c",
"name":"Demand for Phosphatidylethanolamine",
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]
},
"annotation":{
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],
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}
},
{
"id":"SK_akg_c",
"name":"Sink akg(c)",
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"gene_reaction_rule":"",
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]
},
"annotation":{
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],
"sabiork":[
"13794"
],
"sbo":"SBO:0000632",
"seed.reaction":[
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"rxn08096",
"rxn13220"
]
}
},
{
"id":"SK_mi14p_c",
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"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
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},
"annotation":{
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],
"metanetx.reaction":[
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],
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}
},
{
"id":"GTHOXti2",
"name":"Oxidized glutathione irreversible active transport (rbc)",
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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"GTHOXti2"
]
},
"annotation":{
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"GTHOXti2"
],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"NORMETEVESSte",
"name":"L-Normetanephrine seceretion via secretory vesicle (ATP driven)",
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"atp_c":-2.0,
"h2o_c":-2.0,
"h_c":2.0,
"normete__L_c":-3.0,
"normete__L_e":3.0,
"pi_c":2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"OROATP",
"name":"Orotic acid transport inout via proton symporter",
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"orot_c":1.0,
"orot_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
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},
"annotation":{
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],
"metanetx.reaction":[
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"sbo":"SBO:0000185",
"seed.reaction":[
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]
}
},
{
"id":"HISGLUt",
"name":"Transport of HisGlu, Extracellular",
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"h_e":-1.0,
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"gene_reaction_rule":"6564_AT1 or 6565_AT1",
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},
"annotation":{
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}
},
{
"id":"HISGLUGLNt",
"name":"Transport of HisGluGln, Extracellular",
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"h_e":-1.0,
"hisglugln_c":1.0,
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},
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}
},
{
"id":"HISHISLYSt",
"name":"Transport of HisHisLys, Extracellular",
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"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
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},
"annotation":{
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}
},
{
"id":"HISLYSGLUt",
"name":"Transport of HisLysGlu, Extracellular",
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"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
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"notes":{
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},
"annotation":{
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},
{
"id":"HISLYSTHRt",
"name":"Transport of HisLysThr, Extracellular",
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"gene_reaction_rule":"6564_AT1 or 6565_AT1",
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]
},
"annotation":{
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],
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}
},
{
"id":"HISMETGLNt",
"name":"Transport of HisMetGln, Extracellular",
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"hismetgln_c":1.0,
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"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HISPHEARGt",
"name":"Transport of HisPheArg, Extracellular",
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6564_AT1 or 6565_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
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}
},
{
"id":"HISPROLYSt",
"name":"Transport of HisProLys, Extracellular",
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}
},
{
"id":"EX_asn__L_e",
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},
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}
},
{
"id":"LEUTYRTYRt",
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},
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},
{
"id":"SERPHELYSt",
"name":"Transport of SerPheLys, Extracellular",
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},
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},
{
"id":"THRARGTYRt",
"name":"Transport of ThrArgtyr, Extracellular",
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},
{
"id":"THRASNTYRt",
"name":"Transport of ThrAsntyr, Extracellular",
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},
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"bigg.reaction":[
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}
},
{
"id":"THRGLNGLUt",
"name":"Transport of ThrGlnGlu, Extracellular",
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},
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}
},
{
"id":"THRGLNTYRt",
"name":"Transport of ThrGlntyr, Extracellular",
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},
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],
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}
},
{
"id":"THRMETARGt",
"name":"Transport of ThrMetArg, Extracellular",
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"h_e":-1.0,
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},
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}
},
{
"id":"THRTHRARGt",
"name":"Transport of ThrThrArg, Extracellular",
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},
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},
{
"id":"TRPALAPROt",
"name":"Transport of TrpAlaPro, Extracellular",
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"sbo":"SBO:0000185"
}
},
{
"id":"TRPGLUPROt",
"name":"Transport of TrpGluPro, Extracellular",
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]
},
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"sbo":"SBO:0000185"
}
},
{
"id":"TRPGLYLEUt",
"name":"Transport of TrpGlyLeu, Extracellular",
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"h_e":-1.0,
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"subsystem":"Transport, extracellular",
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]
},
"annotation":{
"bigg.reaction":[
"TRPGLYLEUt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_cgly_e",
"name":"Cys-Gly exchange",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000627",
"seed.reaction":[
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}
},
{
"id":"EX_co2_e",
"name":"CO2 exchange",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
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],
"biocyc":[
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"metanetx.reaction":[
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],
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}
},
{
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}
},
{
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},
{
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},
{
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},
{
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}
},
{
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}
},
{
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},
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},
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},
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}
},
{
"id":"EX_met__L_e",
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},
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"sbo":"SBO:0000627",
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}
},
{
"id":"EX_na1_e",
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},
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"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
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"R-MMU-2730664",
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"R-BTA-2730664",
"R-CFA-3295580",
"R-XTR-2672334",
"R-RNO-2671885",
"R-HSA-2671885",
"R-RNO-2730664",
"R-SSC-2671885",
"R-HSA-3295580",
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"R-SSC-3295580",
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}
},
{
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},
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},
{
"id":"TRPILELYSt",
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"gene_reaction_rule":"6564_AT1 or 6565_AT1",
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},
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},
{
"id":"TRPLYSt",
"name":"Transport of TrpLys, Extracellular",
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"lower_bound":0.0,
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"gene_reaction_rule":"81539_AT1 or 11254_AT1 or 54407_AT1 or 55089_AT1 or (340024_AT1 and 57393_AT1) or (340024_AT1 and 59272_AT1)",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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"reactome.reaction":[
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"R-MMU-212642",
"R-HSA-212642",
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"R-GGA-212642",
"R-BTA-212642",
"R-SCE-212642",
"R-XTR-212642",
"R-DRE-212642",
"R-SSC-212642",
"R-CFA-212642"
],
"sbo":"SBO:0000185",
"seed.reaction":[
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]
}
},
{
"id":"MTRI",
"name":"5-methylthioribose-1-phosphate isomerase",
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"5mdru1p_c":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
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"subsystem":"Arginine and proline metabolism",
"notes":{
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]
},
"annotation":{
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],
"biocyc":[
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],
"ec-code":[
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],
"kegg.reaction":[
"R04420"
],
"metanetx.reaction":[
"MNXR101759"
],
"reactome.reaction":[
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"R-GGA-1299507",
"R-DME-1299507",
"R-CEL-1237096",
"R-MMU-1237096",
"R-SSC-1299507",
"R-CFA-1237096",
"R-DDI-1299507",
"R-CFA-1299507",
"R-DRE-1237096",
"R-SPO-1237096",
"R-RNO-1299507",
"R-SPO-1299507",
"R-XTR-1237096",
"R-ATH-1299507",
"R-OSA-1237096",
"R-DME-1237096",
"R-SCE-1237096",
"R-HSA-1237096",
"R-DRE-1299507",
"R-GGA-1237096",
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"R-CEL-1299507",
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"R-MMU-1299507",
"R-HSA-1299507",
"R-SSC-1237096",
"R-XTR-1299507",
"R-BTA-1237096",
"R-ATH-1237096"
],
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"19992",
"19990",
"19989"
],
"sbo":"SBO:0000176",
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]
}
},
{
"id":"TRPASPASPr",
"name":"Metabolism (Formation/Degradation) of TrpAspAsp",
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"TRPGLNGLNr",
"name":"Metabolism (Formation/Degradation) of TrpGlnGln",
"metabolites":{
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"h2o_c":-2.0,
"trp__L_c":1.0,
"trpglngln_c":-1.0
},
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"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"TRPGLUGLYr",
"name":"Metabolism (Formation/Degradation) of TrpGluGly",
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"gly_c":1.0,
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"trp__L_c":1.0,
"trpglugly_c":-1.0
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"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"TRPGLULEUr",
"name":"Metabolism (Formation/Degradation) of TrpGluLeu",
"metabolites":{
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"h2o_c":-2.0,
"leu__L_c":1.0,
"trp__L_c":1.0,
"trpgluleu_c":-1.0
},
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"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"TRPGLUPROr",
"name":"Metabolism (Formation/Degradation) of TrpGluPro",
"metabolites":{
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"h2o_c":-2.0,
"pro__L_c":1.0,
"trp__L_c":1.0,
"trpglupro_c":-1.0
},
"lower_bound":-1000.0,
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"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"TRPGLYLEUr",
"name":"Metabolism (Formation/Degradation) of TrpGlyLeu",
"metabolites":{
"glyleu_c":-1.0,
"h2o_c":1.0,
"trp__L_c":-1.0,
"trpglyleu_c":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
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"subsystem":"Peptide metabolism",
"notes":{
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]
},
"annotation":{
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"TRPGLYLEUr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TRPGLYPHEr",
"name":"Metabolism (Formation/Degradation) of TrpGlyPhe",
"metabolites":{
"glyphe_c":-1.0,
"h2o_c":1.0,
"trp__L_c":-1.0,
"trpglyphe_c":1.0
},
"lower_bound":-1000.0,
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"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
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},
"annotation":{
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"TRPGLYPHEr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TRPHISMETr",
"name":"Metabolism (Formation/Degradation) of TrpHisMet",
"metabolites":{
"h2o_c":-2.0,
"his__L_c":1.0,
"met__L_c":1.0,
"trp__L_c":1.0,
"trphismet_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
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"TRPHISMETr"
]
},
"annotation":{
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"TRPHISMETr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TRPILELYSr",
"name":"Metabolism (Formation/Degradation) of TrpIleLys",
"metabolites":{
"h2o_c":-2.0,
"ile__L_c":1.0,
"lys__L_c":1.0,
"trp__L_c":1.0,
"trpilelys_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
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"TRPILELYSr"
]
},
"annotation":{
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"TRPILELYSr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TRPMETVALr",
"name":"Metabolism (Formation/Degradation) of TrpMetVal",
"metabolites":{
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"met__L_c":1.0,
"trp__L_c":1.0,
"trpmetval_c":-1.0,
"val__L_c":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
"original_bigg_ids":[
"TRPMETVALr"
]
},
"annotation":{
"bigg.reaction":[
"TRPMETVALr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TRPPROGLYr",
"name":"Metabolism (Formation/Degradation) of TrpProGly",
"metabolites":{
"h2o_c":1.0,
"h_c":1.0,
"progly_c":-1.0,
"trp__L_c":-1.0,
"trpprogly_c":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"TRPPROLEUr",
"name":"Metabolism (Formation/Degradation) of TrpProLeu",
"metabolites":{
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"leu__L_c":1.0,
"pro__L_c":1.0,
"trp__L_c":1.0,
"trpproleu_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
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]
},
"annotation":{
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"TRPPROLEUr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TRPTHRGLUr",
"name":"Metabolism (Formation/Degradation) of TrpThrGlu",
"metabolites":{
"glu__L_c":1.0,
"h2o_c":-2.0,
"thr__L_c":1.0,
"trp__L_c":1.0,
"trpthrglu_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
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"TRPTHRGLUr"
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},
"annotation":{
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"TRPTHRGLUr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TRPTHRTYRr",
"name":"Metabolism (Formation/Degradation) of TrpThrtyr",
"metabolites":{
"h2o_c":-2.0,
"thr__L_c":1.0,
"trp__L_c":1.0,
"trpthrtyr_c":-1.0,
"tyr__L_c":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"TRPTHRTYRr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TRPTYRTYRr",
"name":"Metabolism (Formation/Degradation) of Trptyrtyr",
"metabolites":{
"h2o_c":-2.0,
"trp__L_c":1.0,
"trptyrtyr_c":-1.0,
"tyr__L_c":2.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
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"TRPTYRTYRr"
]
},
"annotation":{
"bigg.reaction":[
"TRPTYRTYRr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TRPVALASPr",
"name":"Metabolism (Formation/Degradation) of TrpValAsp",
"metabolites":{
"asp__L_c":1.0,
"h2o_c":-2.0,
"trp__L_c":1.0,
"trpvalasp_c":-1.0,
"val__L_c":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
"original_bigg_ids":[
"TRPVALASPr"
]
},
"annotation":{
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"TRPVALASPr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TYRALAPHEr",
"name":"Metabolism (Formation/Degradation) of TyrAlaPhe",
"metabolites":{
"ala__L_c":1.0,
"h2o_c":-2.0,
"phe__L_c":1.0,
"tyr__L_c":1.0,
"tyralaphe_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
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"TYRALAPHEr"
]
},
"annotation":{
"bigg.reaction":[
"TYRALAPHEr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"CE2537ABCt",
"name":"Transport of 15-Hydroxy- (8Z, 11Z, 13E)-Eicosatrienoate, Active",
"metabolites":{
"CE2537_c":1.0,
"CE2537_e":-1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"376497_AT1 or 11001_AT1 or 11000_AT1 or 10999_AT1 or 10998_AT1 or 28965_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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"CE2537ABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE7082UPKt",
"name":"Transport of 15(S)-HEPE, Diffusion",
"metabolites":{
"CE7082_c":1.0,
"CE7082_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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"CE7082UPKt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE7172UPKt",
"name":"Transport of 14, 15-DIHETE, Diffusion",
"metabolites":{
"CE7172_c":1.0,
"CE7172_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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"CE7172UPKt"
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},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"DIGALSGALSIDEte",
"name":"Transport of Digalactosylceramidesulfate ",
"metabolites":{
"digalsgalside_hs_c":-1.0,
"digalsgalside_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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"DIGALSGALSIDESECt"
]
},
"annotation":{
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"DIGALSGALSIDEte"
],
"metanetx.reaction":[
"MNXR97459"
],
"sbo":"SBO:0000185"
}
},
{
"id":"NRVNCABCt",
"name":"Transport of 15-Tetracosenoate, Diffusion",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"nrvnc_c":1.0,
"nrvnc_e":-1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"376497_AT1 or 11001_AT1 or 11000_AT1 or 10999_AT1 or 10998_AT1 or 28965_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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"NRVNCABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PAIL_hs_SECt",
"name":"Transport of 1-Phosphatidyl-1D-Myo-Inositol",
"metabolites":{
"pail_hs_c":-1.0,
"pail_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"PAILPALM_HSSECt",
"name":"Transport of 1-Palmitoylglycerophosphoinositol",
"metabolites":{
"pailpalm_hs_c":-1.0,
"pailpalm_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLAR_HSABCt",
"name":"Transport of 1-Arachidonoyl-Glycero-3-Phosphocholine",
"metabolites":{
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"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pcholar_hs_c":-1.0,
"pcholar_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5244_AT1 or 19_AT1 or 5205_AT1 or 57198_AT1 or 57194_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLHEP_HSABCt",
"name":"Transport of 1-Heptadecanoylglycerophosphocholine",
"metabolites":{
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"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pcholhep_hs_c":-1.0,
"pcholhep_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5244_AT1 or 19_AT1 or 5205_AT1 or 57198_AT1 or 57194_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLMYR_HsABCt",
"name":"Transport of 1-Myristoylglycerophosphocholine",
"metabolites":{
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"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pcholmyr_hs_c":-1.0,
"pcholmyr_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5244_AT1 or 19_AT1 or 5205_AT1 or 57198_AT1 or 57194_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN15_HSABCt",
"name":"Transport of 1-Pentadecanoylglycerophosphocholine, Sn1-Lpc (15:0)",
"metabolites":{
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"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pcholn15_hs_c":-1.0,
"pcholn15_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5244_AT1 or 19_AT1 or 5205_AT1 or 57198_AT1 or 57194_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN1836_HSABCt",
"name":"Transport of 1-Octadeca-Trienoylglycerophosphocholine, Sn1-Lpc (18:3, Delta 6, 9, 12)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pcholn1836_hs_c":-1.0,
"pcholn1836_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5244_AT1 or 19_AT1 or 5205_AT1 or 57198_AT1 or 57194_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN19_HSABCt",
"name":"Transport of 1-NoNADecanoylglycerophosphocholine, Sn1-Lpc (19:0)",
"metabolites":{
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"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pcholn19_hs_c":-1.0,
"pcholn19_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5244_AT1 or 19_AT1 or 5205_AT1 or 57198_AT1 or 57194_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
"bigg.reaction":[
"PCHOLN19_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN201_HSABCt",
"name":"Transport of 1-Eicosenoylglycerophosphocholine (Delta 11) , Sn1-Lpc (20:1)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pcholn201_hs_c":-1.0,
"pcholn201_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5244_AT1 or 19_AT1 or 5205_AT1 or 57198_AT1 or 57194_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN201_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN201_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN204_HSABCt",
"name":"Transport of 1-Eicosatetraenoylglycerophosphocholine (Delta 8, 11, 14, 17), Sn1-Lpc (20:4)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pcholn204_hs_c":-1.0,
"pcholn204_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5244_AT1 or 19_AT1 or 5205_AT1 or 57198_AT1 or 57194_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN204_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN204_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN205_HSABCt",
"name":"Transport of 1-Eicosapentenoylglycerophosphocholine (Delta 5, 8, 11, 14, 17), Sn1-Lpc (20:5)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pcholn205_hs_c":-1.0,
"pcholn205_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5244_AT1 or 19_AT1 or 5205_AT1 or 57198_AT1 or 57194_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN205_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN205_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN264_HSABCt",
"name":"Transport of 1-Lignocericylglycerophosphocholine (24:0), Lysopc A C24",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pcholn24_hs_c":-1.0,
"pcholn24_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5244_AT1 or 19_AT1 or 5205_AT1 or 57198_AT1 or 57194_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN264_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN264_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLSTE_HSABCt",
"name":"Transport of 1-Stearoylglycerophosphocholine",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pcholste_hs_c":-1.0,
"pcholste_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5244_AT1 or 19_AT1 or 5205_AT1 or 57198_AT1 or 57194_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLSTE_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLSTE_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PE12_HSABCt",
"name":"Transport of 1-Didecanoylglycerophosphoethanolamine (C12:0 Pe)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pe12_hs_c":-1.0,
"pe12_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"23250_AT1 or 286410_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PE12_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PE12_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TYRARGGLUr",
"name":"Metabolism (Formation/Degradation) of TyrArgGlu",
"metabolites":{
"arg__L_c":1.0,
"glu__L_c":1.0,
"h2o_c":-2.0,
"tyr__L_c":1.0,
"tyrargglu_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
"original_bigg_ids":[
"TYRARGGLUr"
]
},
"annotation":{
"bigg.reaction":[
"TYRARGGLUr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TYRASPARGr",
"name":"Metabolism (Formation/Degradation) of TyrAspArg",
"metabolites":{
"arg__L_c":1.0,
"asp__L_c":1.0,
"h2o_c":-2.0,
"tyr__L_c":1.0,
"tyrasparg_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
"original_bigg_ids":[
"TYRASPARGr"
]
},
"annotation":{
"bigg.reaction":[
"TYRASPARGr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TYRCYSGLYr",
"name":"Metabolism (Formation/Degradation) of TyrCysGly",
"metabolites":{
"cys__L_c":1.0,
"gly_c":1.0,
"h2o_c":-2.0,
"tyr__L_c":1.0,
"tyrcysgly_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
"original_bigg_ids":[
"TYRCYSGLYr"
]
},
"annotation":{
"bigg.reaction":[
"TYRCYSGLYr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TYRLEUARGr",
"name":"Metabolism (Formation/Degradation) of TyrLeuArg",
"metabolites":{
"arg__L_c":1.0,
"h2o_c":-2.0,
"leu__L_c":1.0,
"tyr__L_c":1.0,
"tyrleuarg_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
"original_bigg_ids":[
"TYRLEUARGr"
]
},
"annotation":{
"bigg.reaction":[
"TYRLEUARGr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TYRPHETYRr",
"name":"Metabolism (Formation/Degradation) of TyrPhetyr",
"metabolites":{
"h2o_c":-2.0,
"phe__L_c":1.0,
"tyr__L_c":2.0,
"tyrphetyr_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
"original_bigg_ids":[
"TYRPHETYRr"
]
},
"annotation":{
"bigg.reaction":[
"TYRPHETYRr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TYRTHRr",
"name":"Metabolism (Formation/Degradation) of TyrThr",
"metabolites":{
"h2o_c":-1.0,
"thr__L_c":1.0,
"tyr__L_c":1.0,
"tyrthr_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
"original_bigg_ids":[
"TYRTHRr"
]
},
"annotation":{
"bigg.reaction":[
"TYRTHRr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TYRTRPPHEr",
"name":"Metabolism (Formation/Degradation) of TyrTrpPhe",
"metabolites":{
"h2o_c":-2.0,
"phe__L_c":1.0,
"trp__L_c":1.0,
"tyr__L_c":1.0,
"tyrtrpphe_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
"original_bigg_ids":[
"TYRTRPPHEr"
]
},
"annotation":{
"bigg.reaction":[
"TYRTRPPHEr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"VALARGGLYr",
"name":"Metabolism (Formation/Degradation) of ValArgGly",
"metabolites":{
"arg__L_c":1.0,
"gly_c":1.0,
"h2o_c":-2.0,
"val__L_c":1.0,
"valarggly_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
"original_bigg_ids":[
"VALARGGLYr"
]
},
"annotation":{
"bigg.reaction":[
"VALARGGLYr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"VALHISASNr",
"name":"Metabolism (Formation/Degradation) of ValHisAsn",
"metabolites":{
"asn__L_c":1.0,
"h2o_c":-2.0,
"his__L_c":1.0,
"val__L_c":1.0,
"valhisasn_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
"original_bigg_ids":[
"VALHISASNr"
]
},
"annotation":{
"bigg.reaction":[
"VALHISASNr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"VALLYSTYRr",
"name":"Metabolism (Formation/Degradation) of ValLystyr",
"metabolites":{
"h2o_c":-2.0,
"lys__L_c":1.0,
"tyr__L_c":1.0,
"val__L_c":1.0,
"vallystyr_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
"original_bigg_ids":[
"VALLYSTYRr"
]
},
"annotation":{
"bigg.reaction":[
"VALLYSTYRr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"VALPHEARGr",
"name":"Metabolism (Formation/Degradation) of ValPheArg",
"metabolites":{
"arg__L_c":1.0,
"h2o_c":-2.0,
"phe__L_c":1.0,
"val__L_c":1.0,
"valphearg_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
"original_bigg_ids":[
"VALPHEARGr"
]
},
"annotation":{
"bigg.reaction":[
"VALPHEARGr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"VALSERARGr",
"name":"Metabolism (Formation/Degradation) of ValSerArg",
"metabolites":{
"arg__L_c":1.0,
"h2o_c":-2.0,
"ser__L_c":1.0,
"val__L_c":1.0,
"valserarg_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
"original_bigg_ids":[
"VALSERARGr"
]
},
"annotation":{
"bigg.reaction":[
"VALSERARGr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"VALTRPPHEr",
"name":"Metabolism (Formation/Degradation) of ValTrpPhe",
"metabolites":{
"h2o_c":-2.0,
"phe__L_c":1.0,
"trp__L_c":1.0,
"val__L_c":1.0,
"valtrpphe_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
"original_bigg_ids":[
"VALTRPPHEr"
]
},
"annotation":{
"bigg.reaction":[
"VALTRPPHEr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"VALVALr",
"name":"Metabolism (Formation/Degradation) of ValVal",
"metabolites":{
"h2o_c":-1.0,
"val__L_c":2.0,
"valval_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Peptide metabolism",
"notes":{
"original_bigg_ids":[
"VALVALr"
]
},
"annotation":{
"bigg.reaction":[
"VALVALr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_homoval_e",
"name":"Exchange of Homovanillate",
"metabolites":{
"homoval_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_homoval[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_homoval_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"GLYCLTtm",
"name":"Glycolate transport, mitochondria",
"metabolites":{
"glyclt_c":-1.0,
"glyclt_m":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, mitochondrial",
"notes":{
"original_bigg_ids":[
"GLYCLTtm"
]
},
"annotation":{
"bigg.reaction":[
"GLYCLTtm"
],
"biocyc":[
"META:RXN0-5111"
],
"metanetx.reaction":[
"MNXR100333"
],
"rhea":[
"29448",
"29450",
"29449",
"29447"
],
"sabiork":[
"12468"
],
"sbo":"SBO:0000185",
"seed.reaction":[
"rxn08653",
"rxn12426"
]
}
},
{
"id":"TYMc",
"name":"Formation of Tyraminium",
"metabolites":{
"h2o_c":1.0,
"h_c":-1.0,
"nadp_c":1.0,
"nadph_c":-1.0,
"o2_c":-1.0,
"peamn_c":-1.0,
"tym_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Tyrosine metabolism",
"notes":{
"original_bigg_ids":[
"TYMc"
]
},
"annotation":{
"bigg.reaction":[
"TYMc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"DOPAc",
"name":"Formation of Dopamine",
"metabolites":{
"dopa_c":1.0,
"h2o_c":1.0,
"h_c":-1.0,
"nadp_c":1.0,
"nadph_c":-1.0,
"o2_c":-1.0,
"tym_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Tyrosine metabolism",
"notes":{
"original_bigg_ids":[
"DOPAc"
]
},
"annotation":{
"bigg.reaction":[
"DOPAc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PCHOL2PALM_HSte",
"name":"Transport of 2-Palmitoylglycerophosphocholine",
"metabolites":{
"pchol2palm_hs_c":1.0,
"pchol2palm_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOL2PALM_HSte"
]
},
"annotation":{
"bigg.reaction":[
"PCHOL2PALM_HSte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"Pe13_HSABCt",
"name":"Transport of 1-Tridecanoylglycerophosphoethanolamine (C13:0 Pe)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pe13_hs_c":-1.0,
"pe13_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"23250_AT1 or 286410_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"Pe13_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"Pe13_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PE15_HSABCt",
"name":"Transport of 1-Pentadecanoylglycerophosphoethanolamine (C15:0 Pe)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pe15_hs_c":-1.0,
"pe15_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"23250_AT1 or 286410_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PE15_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PE15_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PE226_HSABCt",
"name":"Transport of 1-Docosahexenoylglyceroethanolamine (Delta 4, 7, 10, 13, 16, 19), Lpe (22:6)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pe226_hs_c":-1.0,
"pe226_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"23250_AT1 or 286410_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PE226_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PE226_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PEDH203_HSABCt",
"name":"Transport of 1-Dihomo-Linolenoylglycerophosphoethanolamine (20:3, Delta 8, 11, 14)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pedh203_hs_c":-1.0,
"pedh203_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"23250_AT1 or 286410_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PEDH203_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PEDH203_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PELPALM_HSABCt",
"name":"Transport of 1-Palmitoylglycerophosphoethanolamine",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pepalm_hs_c":-1.0,
"pepalm_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"23250_AT1 or 286410_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PELPALM_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PELPALM_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PEOLE_HSABCt",
"name":"Transport of 1-Oleoylglycerophosphoethanolamine (Delta 9)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"peole_hs_c":-1.0,
"peole_hs_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"23250_AT1 or 286410_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PEOLE_HSABCt"
]
},
"annotation":{
"bigg.reaction":[
"PEOLE_HSABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SPHMYLN18114_hs_SECt",
"name":"Transport of Sphingomyelin (D18:1/14:0)",
"metabolites":{
"sphmyln18114_hs_c":-1.0,
"sphmyln18114_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"SPHMYLN18114_hs_SECt"
]
},
"annotation":{
"bigg.reaction":[
"SPHMYLN18114_hs_SECt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SPHMYLN18115_hs_SECt",
"name":"Transport of Sphingomyelin (D18:1/15:0)",
"metabolites":{
"sphmyln18115_hs_c":-1.0,
"sphmyln18115_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"SPHMYLN18115_hs_SECt"
]
},
"annotation":{
"bigg.reaction":[
"SPHMYLN18115_hs_SECt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SPHMYLN18116_hs_SECt",
"name":"Transport of Sphingomyelin (D18:1/16:0)",
"metabolites":{
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{
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{
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},
{
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{
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{
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{
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{
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},
{
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},
{
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{
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},
{
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},
{
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},
{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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},
{
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{
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{
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{
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{
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{
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{
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{
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{
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},
{
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{
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},
{
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"sbo":"SBO:0000176"
}
},
{
"id":"LTHSTRLtr",
"name":"Transport of 5Alpha-Cholest-7-En-3Beta-Ol, Endoplasmatic Reticulum",
"metabolites":{
"lthstrl_c":-1.0,
"lthstrl_r":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
"notes":{
"original_bigg_ids":[
"LTHSTRLtr"
]
},
"annotation":{
"bigg.reaction":[
"LTHSTRLtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SK_11_cis_retfa_c",
"name":"Sink 11 cis retfa[c]",
"metabolites":{
"11_cis_retfa_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_11_cis_retfa[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_11_cis_retfa_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_C02528_c",
"name":"Sink for Chenodeoxycholate",
"metabolites":{
"C02528_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_C02528[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_C02528_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_HC02191_c",
"name":"Sink for Lithocholate",
"metabolites":{
"HC02191_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_HC02191[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_HC02191_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_HC02192_c",
"name":"Sink for Taurolithocholate",
"metabolites":{
"HC02192_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_HC02192[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_HC02192_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_HC02194_c",
"name":"Sink for Ursodeoxycholate",
"metabolites":{
"HC02194_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_HC02194[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_HC02194_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"PCHOL2STE_HSt1e",
"name":"Transport of 2-Stearoylglycerophosphocholine, Vescicular",
"metabolites":{
"pchol2ste_hs_c":1.0,
"pchol2ste_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOL2STE_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PCHOL2STE_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLAR_HSt1e",
"name":"Transport of 1-Arachidonoyl-Glycero-3-Phosphocholine, Vescicular",
"metabolites":{
"pcholar_hs_c":1.0,
"pcholar_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLAR_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLAR_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLDOC_HSt1e",
"name":"Transport of 1-Docosahexaenoylglycerophosphocholine, Vescicular",
"metabolites":{
"pcholdoc_hs_c":1.0,
"pcholdoc_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLDOC_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLDOC_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLEIC_HSt1e",
"name":"Transport of 1-Eicosadienoylglycerophosphocholine (Delta 11, 14), Vescicular",
"metabolites":{
"pcholeic_hs_c":1.0,
"pcholeic_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLEIC_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLEIC_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLMYR_Hst1e",
"name":"Transport of 1-Myristoylglycerophosphocholine, Vescicular",
"metabolites":{
"pcholmyr_hs_c":1.0,
"pcholmyr_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLMYR_Hst1e"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLMYR_Hst1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN19_HSt1e",
"name":"Transport of 1-NoNADecanoylglycerophosphocholine, Sn1-Lpc (19:0), Vescicular",
"metabolites":{
"pcholn19_hs_c":1.0,
"pcholn19_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN19_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN19_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN203_HSt1e",
"name":"Transport of 1-Dihomo-Linolenoylglycerophosphocholine (20:3, Delta 8, 11, 14), Lysopc A C20:3, Vescicular",
"metabolites":{
"pcholn203_hs_c":1.0,
"pcholn203_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN203_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN203_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN204_HSt1e",
"name":"Transport of 1-Eicosatetraenoylglycerophosphocholine (Delta 8, 11, 14, 17), Sn1-Lpc (20:4), Vescicular",
"metabolites":{
"pcholn204_hs_c":1.0,
"pcholn204_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN204_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN204_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN205_HSt1e",
"name":"Transport of 1-Eicosapentenoylglycerophosphocholine (Delta 5, 8, 11, 14, 17), Sn1-Lpc (20:5), Vescicular",
"metabolites":{
"pcholn205_hs_c":1.0,
"pcholn205_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN205_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN205_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN224_HSt1e",
"name":"Transport of 1-Docosatetraenoylglycerophosphocholine (Delta 7, 10, 13, 16), Sn1-Lpc (22:4), Vescicular",
"metabolites":{
"pcholn224_hs_c":1.0,
"pcholn224_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN224_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN224_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN2254_HSt1e",
"name":"Transport of 1-Docosapentenoylglycerophosphocholine (Delta 4, 7, 10, 13, 16), Sn1-Lpc (22:5)-W6, Vescicular",
"metabolites":{
"pcholn2254_hs_c":1.0,
"pcholn2254_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN2254_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN2254_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLN264_HSt1e",
"name":"Transport of 1-Lignocericylglycerophosphocholine (24:0), Lysopc A C24, Vescicular",
"metabolites":{
"pcholn24_hs_c":1.0,
"pcholn24_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLN264_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLN264_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLOLE_HSt1e",
"name":"Transport of 1-Oleoylglycerophosphocholine (Delta 9), Vescicular",
"metabolites":{
"pcholole_hs_c":1.0,
"pcholole_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLOLE_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLOLE_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PEPALM_HSt1e",
"name":"Transport of 1-Palmitoylglycerophosphocholine, Vescicular",
"metabolites":{
"pcholpalm_hs_c":1.0,
"pcholpalm_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PEPALM_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PEPALM_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PCHOLPALME_HSt1e",
"name":"Transport of 1-Palmitoleoylglycerophosphocholine (Delta 9), Vescicular",
"metabolites":{
"pcholpalme_hs_c":1.0,
"pcholpalme_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PCHOLPALME-HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PCHOLPALME_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"Pe13_HSt1e",
"name":"Transport of 1-Tridecanoylglycerophosphoethanolamine (C13:0 Pe), Vescicular",
"metabolites":{
"pe13_hs_c":1.0,
"pe13_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"Pe13_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"Pe13_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PE17_HSt1e",
"name":"Transport of 1-Heptadecanoylglycerophosphoethanolamine (C17:0 Pe), Vescicular",
"metabolites":{
"pe17_hs_c":1.0,
"pe17_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PE17_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PE17_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PE203_HSt1e",
"name":"1-Eicosatrienoylglycerophosphoethanolamine (Delta 11, 14, 17), Lpe (20:3), Vescicular",
"metabolites":{
"pe203_hs_c":1.0,
"pe203_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PE203_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PE203_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PE2LINL_HSt1e",
"name":"Transport of 2-Linoleoylglycerophosphoethanolamine, Vescicular",
"metabolites":{
"pe2linl_hs_c":1.0,
"pe2linl_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PE2LINL_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PE2LINL_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PEDH203_HSt1e",
"name":"Transport of 1-Dihomo-Linolenoylglycerophosphoethanolamine (20:3, Delta 8, 11, 14), Vescicular",
"metabolites":{
"pedh203_hs_c":1.0,
"pedh203_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PEDH203_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
"PEDH203_HSt1e"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PELINL_HSt1e",
"name":"Transport of 1-Linoleoylglycerophosphoethanolamine (Delta 9, 12), Vescicular",
"metabolites":{
"pelinl_hs_c":1.0,
"pelinl_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PELINL_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"PEOLE_HSt1e",
"name":"Transport of 1-Oleoylglycerophosphoethanolamine (Delta 9), Vescicular",
"metabolites":{
"peole_hs_c":1.0,
"peole_hs_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PEOLE_HSt1e"
]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"TRYPTAte",
"name":"Tryptaminium Transport, Cytosol",
"metabolites":{
"h_c":-1.0,
"h_e":1.0,
"trypta_c":-1.0,
"trypta_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"222962_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TRYPTAte"
]
},
"annotation":{
"bigg.reaction":[
"TRYPTAte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SELMETHte",
"name":"Transport in via Sodium Symport into Extracellular Space",
"metabolites":{
"na1_c":1.0,
"na1_e":-1.0,
"selmeth_c":1.0,
"selmeth_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"81539_AT1 or 11254_AT1 or 54407_AT1 or 6584_AT1 or (340024_AT1 and 57393_AT1) or (340024_AT1 and 59272_AT1)",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"SELMETHte"
]
},
"annotation":{
"bigg.reaction":[
"SELMETHte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE7090te",
"name":"Transport (ATP-Dependent) into Extracellular Space",
"metabolites":{
"CE7090_c":-1.0,
"CE7090_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10257_AT1 or 4363_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE7090te"
]
},
"annotation":{
"bigg.reaction":[
"CE7090te"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE7096te",
"name":"Transport (ATP-Dependent) into Extracellular Space",
"metabolites":{
"CE7096_c":-1.0,
"CE7096_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10257_AT1 or 4363_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
"CE7096te"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE1447te",
"name":"Transport (ATP-Dependent) into Extracellular Space",
"metabolites":{
"CE1447_c":-1.0,
"CE1447_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10257_AT1 or 4363_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"C05769te3",
"name":"Transport by OATP1B Carriers into Extracellular Space",
"metabolites":{
"C05769_c":1.0,
"C05769_e":-1.0,
"hco3_c":-1.0,
"hco3_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10599_AT1 or 28234_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"C05770te4",
"name":"Transport by OATP1B Carriers into Extracellular Space",
"metabolites":{
"C05770_c":1.0,
"C05770_e":-1.0,
"hco3_c":-1.0,
"hco3_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10599_AT1 or 28234_AT1 or 11309_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"MLTHFte3",
"name":"Transport by Folr into Extracellular Space",
"metabolites":{
"mlthf_c":1.0,
"mlthf_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2348_AT1 or 2350_AT1 or 2352_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
"MLTHFte3"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CE2705t",
"name":"Transport by Ent1/Ent2 into Extracellular Space",
"metabolites":{
"CE2705_c":1.0,
"CE2705_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3177_AT1 or 2030_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CE2705t"
]
},
"annotation":{
"bigg.reaction":[
"CE2705t"
],
"sbo":"SBO:0000185"
}
},
{
"id":"MMAte",
"name":"Transport via Proton Antiport (Ammonium Transporter Rh Type C Or Type B) into Extracellular Space",
"metabolites":{
"h_c":-1.0,
"h_e":1.0,
"mma_c":1.0,
"mma_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"57127_AT1 or 51458_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"MMAte"
]
},
"annotation":{
"bigg.reaction":[
"MMAte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TYMte",
"name":"Tyraminium Transport, Cytosol",
"metabolites":{
"tym_c":-1.0,
"tym_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6580_AT1 or 6582_AT1 or 6581_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TYMte"
]
},
"annotation":{
"bigg.reaction":[
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}
},
{
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},
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},
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{
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},
{
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},
{
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{
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},
{
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},
{
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},
{
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}
},
{
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},
{
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"33171",
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},
{
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},
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},
{
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"name":"Thiamin exchange",
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},
{
"id":"EX_trp__L_e",
"name":"L-Tryptophan exchange",
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},
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"upper_bound":1000.0,
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},
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},
{
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"name":"Uracil exchange",
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},
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},
{
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},
{
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},
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},
{
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},
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}
},
{
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"name":"Glucosamine-6-phosphate deaminase",
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},
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{
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},
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},
{
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},
{
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},
{
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{
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},
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{
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},
{
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},
{
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},
{
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},
{
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{
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{
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{
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{
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{
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{
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"annotation":{
"bigg.reaction":[
"EX_glutcon_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"3HIVActm",
"name":"Transport of 3-Hydroxy-Isovalerate, Mitochondrial",
"metabolites":{
"3hivac_c":1.0,
"3hivac_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, mitochondrial",
"notes":{
"original_bigg_ids":[
"3HIVActm"
]
},
"annotation":{
"bigg.reaction":[
"3HIVActm"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_3hivac_e",
"name":"Exchange of 3-Hydroxy-Isovalerate",
"metabolites":{
"3hivac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_3hivac[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_3hivac_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"3OHSEBACx",
"name":"Formation of 3-Hydroxy-Sebacic Acid",
"metabolites":{
"3ohsebac_x":1.0,
"3ohsebcoa_x":-1.0,
"coa_x":1.0,
"h2o_x":-1.0,
"h_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"3OHSEBACx"
],
"sbo":"SBO:0000176"
}
},
{
"id":"3OHSEBACtxc",
"name":"Transportof 3-Hydroxy-Sebacic Acid, Peroxisomal",
"metabolites":{
"3ohsebac_c":1.0,
"3ohsebac_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, peroxisomal",
"notes":{
"original_bigg_ids":[
"3OHSEBACtxc"
]
},
"annotation":{
"bigg.reaction":[
"3OHSEBACtxc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"3OHSEBACte",
"name":"Transport of 3-Hydroxy-Sebacic Acid, Extracellular",
"metabolites":{
"3ohsebac_c":-1.0,
"3ohsebac_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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"3OHSEBACte"
]
},
"annotation":{
"bigg.reaction":[
"3OHSEBACte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_3ohsebac_e",
"name":"Exchange of 3-Hydroxy-Sebacic Acid",
"metabolites":{
"3ohsebac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_3ohsebac[e]"
]
},
"annotation":{
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],
"sbo":"SBO:0000627"
}
},
{
"id":"3OHSUBCOAx",
"name":"Formation of 3-Hydoxy-Suberyl Coa",
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"h2o2_x":1.0,
"h2o_x":-1.0,
"o2_x":-1.0,
"sbcoa_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(51_AT1 and 1891_AT1) or (51_AT1 and 1962_AT1) or (51_AT2 and 1891_AT1) or (51_AT2 and 1962_AT1)",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0296",
"name":"HMR 0296",
"metabolites":{
"M01235_c":1.0,
"M01235_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28965_AT1 or 2170_AT1 or 376497_AT1 or 948_AT1 or 11000_AT1 or 2169_AT1 or 2168_AT1 or 2173_AT1 or 2171_AT1 or 10999_AT1 or 2172_AT1 or 2167_AT1 or 646486_AT1 or 646480_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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"HMR_0296"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0296"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0297",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
"metabolites":{
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"M01236_c":1.0,
"amp_c":1.0,
"atp_c":-1.0,
"coa_c":-1.0,
"ppi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2182_AT1 or 23205_AT1 or 2181_AT1 or 81616_AT1 or 11001_AT1 or 2180_AT1 or 23305_AT1 or 51703_AT1",
"subsystem":"Fatty acid synthesis",
"notes":{
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"HMR_0297"
]
},
"annotation":{
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"HMR_0297"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0298",
"name":"Palmitoyl Coenzyme A Hydrolase",
"metabolites":{
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"M01236_c":-1.0,
"coa_c":1.0,
"h2o_c":-1.0,
"h_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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"HMR_0298"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0298"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0299",
"name":"HMR 0299",
"metabolites":{
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"M01235_e":1.0,
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"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
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},
"lower_bound":0.0,
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"gene_reaction_rule":"19_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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"HMR_0299"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0299"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0300",
"name":"HMR 0300",
"metabolites":{
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"M01207_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28965_AT1 or 2170_AT1 or 376497_AT1 or 948_AT1 or 11000_AT1 or 2169_AT1 or 2168_AT1 or 2173_AT1 or 2171_AT1 or 10999_AT1 or 2172_AT1 or 2167_AT1 or 646486_AT1 or 646480_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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"HMR_0300"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0301",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
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"M01207_c":-1.0,
"amp_c":1.0,
"atp_c":-1.0,
"coa_c":-1.0,
"ppi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2182_AT1 or 23205_AT1 or 2181_AT1 or 81616_AT1 or 11001_AT1 or 2180_AT1 or 23305_AT1 or 51703_AT1",
"subsystem":"Fatty acid synthesis",
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0307",
"name":"HMR 0307",
"metabolites":{
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"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
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},
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"gene_reaction_rule":"19_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0308",
"name":"HMR 0308",
"metabolites":{
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"M02053_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28965_AT1 or 2170_AT1 or 376497_AT1 or 948_AT1 or 11000_AT1 or 2169_AT1 or 2168_AT1 or 2173_AT1 or 2171_AT1 or 10999_AT1 or 2172_AT1 or 2167_AT1 or 646486_AT1 or 646480_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0309",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
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"coa_c":-1.0,
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},
"lower_bound":0.0,
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"gene_reaction_rule":"2182_AT1 or 23205_AT1 or 2181_AT1 or 81616_AT1 or 11001_AT1 or 2180_AT1 or 23305_AT1 or 51703_AT1",
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},
"annotation":{
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],
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}
},
{
"id":"HMR_0310",
"name":"Palmitoyl Coenzyme A Hydrolase",
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"M02053_c":1.0,
"coa_c":1.0,
"h2o_c":-1.0,
"h_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
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},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0311",
"name":"HMR 0311",
"metabolites":{
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"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
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"gene_reaction_rule":"19_AT1",
"subsystem":"Transport, extracellular",
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0317",
"name":"HMR 0317",
"metabolites":{
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"atp_c":-1.0,
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"docosac_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
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"subsystem":"Transport, extracellular",
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},
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"sbo":"SBO:0000185"
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},
{
"id":"HMR_0321",
"name":"HMR 0321",
"metabolites":{
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"gene_reaction_rule":"19_AT1",
"subsystem":"Transport, extracellular",
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},
"annotation":{
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"sbo":"SBO:0000185"
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},
{
"id":"HMR_0323",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
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"coa_c":-1.0,
"ppi_c":1.0
},
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"gene_reaction_rule":"2182_AT1 or 23205_AT1 or 2181_AT1 or 81616_AT1 or 11001_AT1 or 2180_AT1 or 23305_AT1 or 51703_AT1",
"subsystem":"Fatty acid synthesis",
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},
"annotation":{
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"sbo":"SBO:0000176"
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},
{
"id":"HMR_0326",
"name":"HMR 0326",
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},
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"upper_bound":1000.0,
"gene_reaction_rule":"28965_AT1 or 2170_AT1 or 376497_AT1 or 948_AT1 or 11000_AT1 or 2169_AT1 or 2168_AT1 or 2173_AT1 or 2171_AT1 or 10999_AT1 or 2172_AT1 or 2167_AT1 or 646486_AT1 or 646480_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"3OHSUBACtxc",
"name":"Transport of 3-Hydoxy-Suberic Acid, Peroxisomal",
"metabolites":{
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"3ohsubac_x":-1.0
},
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"gene_reaction_rule":"",
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},
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"sbo":"SBO:0000185"
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},
{
"id":"3OHSUBACte",
"name":"Transport of 3-Hydoxy-Suberic Acid, Extracellular",
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"EX_3ohsubac_e",
"name":"Exchange of 3-Hydoxy-Suberic Acid",
"metabolites":{
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},
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"sbo":"SBO:0000627"
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},
{
"id":"CAPROICc",
"name":"Formation of Hexanoic Acid",
"metabolites":{
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"coa_c":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"hxcoa_c":-1.0
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},
"annotation":{
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"sbo":"SBO:0000176"
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},
{
"id":"EX_5ohhexa_e",
"name":"Exchange of 5-Hydroxy-Hexanoate",
"metabolites":{
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},
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"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
"annotation":{
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"sbo":"SBO:0000627"
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},
{
"id":"7OHOCTAc",
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"nadph_c":-1.0,
"o2_c":-1.0,
"octa_c":-1.0
},
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},
"annotation":{
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"sbo":"SBO:0000176"
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},
{
"id":"7OHOCTAte",
"name":"Transport of 7-Hydroxy-Octanoate, Extracellular",
"metabolites":{
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},
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},
{
"id":"EX_7ohocata_e",
"name":"Exchange of 7-Hydroxy-Octanoate",
"metabolites":{
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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},
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"sbo":"SBO:0000627"
}
},
{
"id":"ETHMALCOAc",
"name":"Formation of Ethylmalonyl Coa",
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"co2_c":-1.0,
"ethmalcoa_c":1.0,
"h_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
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},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"ETHMALACc",
"name":"Formation of Ethylmalonic Acid",
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"ethmalac_c":1.0,
"ethmalcoa_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"ETHMALACte",
"name":"Transport of Ethylmalonic Acid",
"metabolites":{
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"ethmalac_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HEXGLYc",
"name":"Formation of Hexanoyl-Glycine",
"metabolites":{
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"gly_c":-1.0,
"h_c":1.0,
"hexgly_c":1.0,
"hxcoa_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10249_AT1",
"subsystem":"Glycine, serine, alanine, and threonine metabolism",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"METHSUCCOAc",
"name":"Formation of Methyl-Succinyl Coa",
"metabolites":{
"ethmalcoa_c":-1.0,
"methsuccoa_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"METHSUCCte",
"name":"Transport of Methyl-Succinate",
"metabolites":{
"methsucc_c":-1.0,
"methsucc_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_methsucc_e",
"name":"Exchange of Methyl-Succinate",
"metabolites":{
"methsucc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
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"sbo":"SBO:0000627"
}
},
{
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"name":"Transport of Suberyl-Glycine",
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]
},
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}
},
{
"id":"4OHBUTm",
"name":"Formation of 4-Hydroxy-Butyrate",
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}
},
{
"id":"4OHBUTtce",
"name":"Transport of 4-Hydroxy-Butyrate, Extracellular",
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},
{
"id":"HMR_0327",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
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},
{
"id":"HMR_0328",
"name":"Palmitoyl Coenzyme A Hydrolase",
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},
{
"id":"HMR_0343",
"name":"HMR 0343",
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},
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},
{
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"name":"Alpha-Linolenoyl-CoA hydrolase (18:3(9Z,12Z,15Z))",
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},
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],
"kegg.reaction":[
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],
"metanetx.reaction":[
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],
"sabiork":[
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],
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"seed.reaction":[
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]
}
},
{
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"name":"HMR 0359",
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},
{
"id":"HMR_0362",
"name":"Palmitoyl Coenzyme A Hydrolase",
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},
{
"id":"HMR_0363",
"name":"HMR 0363",
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},
{
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},
{
"id":"HMR_0370",
"name":"Palmitoyl Coenzyme A Hydrolase",
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},
{
"id":"HMR_0374",
"name":"Palmitoyl Coenzyme A Hydrolase",
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},
{
"id":"HMR_0375",
"name":"HMR 0375",
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},
{
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},
{
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"gene_reaction_rule":"28965_AT1 or 2170_AT1 or 376497_AT1 or 948_AT1 or 11000_AT1 or 2169_AT1 or 2168_AT1 or 2173_AT1 or 2171_AT1 or 10999_AT1 or 2172_AT1 or 2167_AT1 or 646486_AT1 or 646480_AT1",
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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{
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{
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{
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},
{
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},
{
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{
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{
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{
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{
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{
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{
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{
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},
{
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{
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{
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},
{
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},
{
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},
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},
{
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},
{
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"name":"Transport of 5Alpha-Androstane-3, 17-Dione, Extracellular",
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},
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},
{
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{
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},
{
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},
{
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},
{
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},
{
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},
{
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{
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},
{
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},
{
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{
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{
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{
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{
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{
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{
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{
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{
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"h_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2523_AT1 or 2524_AT1",
"subsystem":"Glycosphingolipid metabolism",
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"original_bigg_ids":[
"HMR_0864"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0864"
],
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}
},
{
"id":"HMR_0867",
"name":"HMR 0867",
"metabolites":{
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"udpacgal_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
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]
},
"annotation":{
"bigg.reaction":[
"HMR_0867"
],
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}
},
{
"id":"HMR_0878",
"name":"4-Galactosyl-N-Acetylglucosaminide 3-Alpha-L-Fucosyltransferase",
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},
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"HMR_0878"
]
},
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"bigg.reaction":[
"HMR_0878"
],
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}
},
{
"id":"HMR_0889",
"name":"N-Acetyllactosaminide Beta-1, 3-N-Acetylglucosaminyltransferase",
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"HMR_0889"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0889"
],
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}
},
{
"id":"HMR_0906",
"name":"HMR 0906",
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"original_bigg_ids":[
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]
},
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"bigg.reaction":[
"HMR_0906"
],
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}
},
{
"id":"HMR_0908",
"name":"Galactoside 2-Alpha-L-Fucosyltransferase",
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"HMR_0908"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0908"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0909",
"name":"Galactoside 2-Alpha-L-Fucosyltransferase",
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"lower_bound":0.0,
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"gene_reaction_rule":"2523_AT1 or 2524_AT1",
"subsystem":"Glycosphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"HMR_0909"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0909"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0913",
"name":"HMR 0913",
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},
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, lysosomal",
"notes":{
"original_bigg_ids":[
"HMR_0913"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0913"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PGESc",
"name":"Prostaglandin E synthase",
"metabolites":{
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"prostgh2_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10728_AT1 or 80142_AT1 or 9536_AT1",
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"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
"PGESc"
],
"ec-code":[
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],
"metanetx.reaction":[
"MNXR102534"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_1737",
"name":"24-Hydroxycholesterol 7Alpha-Hydroxylase",
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"h_c":-1.0,
"nadp_c":1.0,
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"o2_c":-1.0,
"xol24oh_c":-1.0,
"xoltri24_c":1.0
},
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"HMR_1737"
]
},
"annotation":{
"bigg.reaction":[
"HMR_1737"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_1739",
"name":"7Alpha-Hydroxycholest-4-En-3-One 12Alpha-Hydroxylase",
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"o2_c":-1.0
},
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"gene_reaction_rule":"1582_AT1",
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"original_bigg_ids":[
"HMR_1739"
]
},
"annotation":{
"bigg.reaction":[
"HMR_1739"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_1741",
"name":"Delta4-3-Oxosteroid 5Beta-Reductase",
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"h_c":-1.0,
"nadp_c":1.0,
"nadph_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6718_AT1",
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"HMR_1741"
]
},
"annotation":{
"bigg.reaction":[
"HMR_1741"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_1742",
"name":"3Alpha-Hydroxysteroid 3-Dehydrogenase (Si-Specific)",
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"M01081_c":-1.0,
"h_c":-1.0,
"nadp_c":1.0,
"nadph_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1109_AT1",
"subsystem":"Bile acid synthesis",
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"HMR_1742"
]
},
"annotation":{
"bigg.reaction":[
"HMR_1742"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_1743",
"name":"3Alpha-Hydroxysteroid 3-Dehydrogenase (Si-Specific)",
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"M01083_c":-1.0,
"h_c":-1.0,
"nadp_c":1.0,
"nadph_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1109_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"HMR_1743"
]
},
"annotation":{
"bigg.reaction":[
"HMR_1743"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_1749",
"name":"Cholestanetriol 26-Monooxygenase",
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"h2o_m":2.0,
"h_m":-1.0,
"nadp_m":1.0,
"nadph_m":-1.0,
"o2_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1593_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
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"HMR_1749"
]
},
"annotation":{
"bigg.reaction":[
"HMR_1749"
],
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}
},
{
"id":"HMR_1750",
"name":"Cholestanetriol 26-Monooxygenase",
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"h_m":-3.0,
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"o2_m":-1.0
},
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"upper_bound":1000.0,
"gene_reaction_rule":"1593_AT1",
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"notes":{
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"HMR_1750"
]
},
"annotation":{
"bigg.reaction":[
"HMR_1750"
],
"sbo":"SBO:0000176"
}
},
{
"id":"CE5072te",
"name":"Transport of 21-Hydroxyallopregnanolone, Extracellular",
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"gene_reaction_rule":"5243_AT1",
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"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
"CE5072te"
],
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}
},
{
"id":"11DOCRTSTRNte",
"name":"Transport of 11-Deoxycorticosterone, Extracellular",
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"gene_reaction_rule":"5243_AT1",
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"original_bigg_ids":[
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]
},
"annotation":{
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"11DOCRTSTRNte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PRGNLONEte",
"name":"Transport of Pregnenolone, Extracellular",
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"prgnlone_c":-1.0,
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},
"lower_bound":0.0,
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"gene_reaction_rule":"5243_AT1",
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]
},
"annotation":{
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"PRGNLONEte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"17AHPRGNLONEte",
"name":"Transport of 17Alpha-Hydroxypregnenolone, Extracellular",
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]
},
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],
"sbo":"SBO:0000185"
}
},
{
"id":"PRGNLONESte",
"name":"Transport of Pregnenolone Sulfate, Extracellular",
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},
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"gene_reaction_rule":"5243_AT1",
"subsystem":"Transport, extracellular",
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]
},
"annotation":{
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],
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}
},
{
"id":"MMAt2e",
"name":"Facilitated Diffusion via Aquaporin into Extracellular Space",
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},
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"upper_bound":1000.0,
"gene_reaction_rule":"343_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"CE2006te",
"name":"Transport (ATP-Dependent) into Extracellular Space",
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},
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"gene_reaction_rule":"4363_AT1",
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"N8ASPMDte",
"name":"N (8)-Acetylspermidinium Transport, Cytosol",
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},
"lower_bound":-1000.0,
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"gene_reaction_rule":"6580_AT1",
"subsystem":"Transport, extracellular",
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]
},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"CE4890te2",
"name":"Facilitated Diffusion Through Uniport Oct2 into Extracellular Space",
"metabolites":{
"CE4890_c":-1.0,
"CE4890_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6582_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"C09642te",
"name":"Facilitated Diffusion Through Uniport Oct2 into Extracellular Space",
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"C09642_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6582_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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"C09642te"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_5g2oxpt_e",
"name":"Exchange of 5-Guanidino-2-Oxopentanoic Acid",
"metabolites":{
"5g2oxpt_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_andrstndn_e",
"name":"Exchange of Androst-4-Ene-3, 17-Dione",
"metabolites":{
"andrstndn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EANDRSTRNtr",
"name":"Transport of 16Alpha-Hydroxydehydroepiandrosterone, Endoplasmatic Reticulum",
"metabolites":{
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"eandrstrn_c":1.0,
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},
"lower_bound":0.0,
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"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_eandrstrn_e",
"name":"Exchange of 16Alpha-Hydroxydehydroepiandrosterone",
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},
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"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
"annotation":{
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"sbo":"SBO:0000627"
}
},
{
"id":"ESTRONEte",
"name":"Transport of Estrone, Extracellular",
"metabolites":{
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},
"lower_bound":0.0,
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"gene_reaction_rule":"",
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_C05298_e",
"name":"Exchange of 2-Hydroxyestrone",
"metabolites":{
"C05298_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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},
"annotation":{
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}
},
{
"id":"EX_C05301_e",
"name":"Exchange of 2-Hydroxyestradiol-17Beta",
"metabolites":{
"C05301_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_C05301[e]"
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},
"annotation":{
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}
},
{
"id":"EX_CE5072_e",
"name":"Exchange of 21-Hydroxyallopregnanolone",
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},
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_CE5072[e]"
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},
"annotation":{
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}
},
{
"id":"EX_11docrtstrn_e",
"name":"Exchange of 11-Deoxycorticosterone",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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},
"annotation":{
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}
},
{
"id":"EX_CE2211_e",
"name":"Exchange of Allopregnanolone",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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"EX_CE2211[e]"
]
},
"annotation":{
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],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_17ahprgstrn_e",
"name":"Exchange of 17Alpha-Hydroxyprogesterone",
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"17ahprgstrn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000627"
}
},
{
"id":"HC02020te",
"name":"Transport of Cholesterol-Ester-Palm, Extracellular Space, within Lipoproteins",
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]
},
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"HC02020te"
],
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}
},
{
"id":"EX_HC02020_e",
"name":"Exchange of Cholesterol-Ester-Palm",
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"EX_HC02020[e]"
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},
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}
},
{
"id":"XOL24OHtr",
"name":"Transport of (24S)-24-Hydroxycholesterol, Endoplasmatic Reticulum, within Lipoproteins",
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]
},
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"bigg.reaction":[
"XOL24OHtr"
],
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}
},
{
"id":"XOL27OHte",
"name":"Transport of 26-Hydroxycholesterol, Extracellular Space, within Lipoproteins",
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]
},
"annotation":{
"bigg.reaction":[
"XOL27OHte"
],
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}
},
{
"id":"HMR_1751",
"name":"Cholestanetriol 26-Monooxygenase",
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]
},
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}
},
{
"id":"HMR_1752",
"name":"HMR 1752",
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]
},
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"bigg.reaction":[
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],
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}
},
{
"id":"HMR_1754",
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},
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"bigg.reaction":[
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}
},
{
"id":"HMR_1760",
"name":"Alpha-Methylacyl Coenzyme A Racemase",
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]
},
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"bigg.reaction":[
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}
},
{
"id":"HMR_1761",
"name":"Alpha-Methylacyl Coenzyme A Racemase",
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]
},
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"bigg.reaction":[
"HMR_1761"
],
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}
},
{
"id":"HMR_1764",
"name":"HMR 1764",
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"HMR_1764"
]
},
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"HMR_1764"
],
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}
},
{
"id":"HMR_1766",
"name":"Cholest-5-Ene-3Beta, 7Alpha-Diol 3Beta-Dehydrogenase",
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]
},
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],
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}
},
{
"id":"HMR_1769",
"name":"Delta4-3-Oxosteroid 5Beta-Reductase",
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]
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],
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}
},
{
"id":"HMR_1770",
"name":"3Alpha-Hydroxysteroid 3-Dehydrogenase (Si-Specific)",
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]
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],
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}
},
{
"id":"HMR_1807",
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]
},
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"HMR_1807"
],
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}
},
{
"id":"HMR_1834",
"name":"Glycodeoxycholate Amidohydrolase",
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]
},
"annotation":{
"bigg.reaction":[
"HMR_1834"
],
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}
},
{
"id":"HMR_1847",
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]
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],
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}
},
{
"id":"HMR_1928",
"name":"22Beta-Hydroxycholesterol:Oxygen Oxidoreductase (Side-Chain-Cleaving)",
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]
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],
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}
},
{
"id":"HMR_1941",
"name":"3Beta-Hydroxy-Delta5-Steroid Dehydrogenase",
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],
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}
},
{
"id":"HMR_1948",
"name":"17Alpha-Hydroxypregnenolone, Hydrogen-Donor:Oxygen Oxidoreductase (21-Hydroxylating)",
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]
},
"annotation":{
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],
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}
},
{
"id":"HMR_1967",
"name":"3Beta-Hydroxy-Delta5-Steroid Dehydrogenase",
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"annotation":{
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},
{
"id":"HMR_1970",
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},
{
"id":"HMR_1976",
"name":"3-Oxo-5Alpha-Steroid 4-Dehydrogenase (NADP+)",
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},
{
"id":"HMR_1979",
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},
{
"id":"HMR_1988",
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]
},
"annotation":{
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],
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}
},
{
"id":"HMR_1989",
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},
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},
{
"id":"EX_xol27oh_e",
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},
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},
{
"id":"XOL25OHtr",
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},
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}
},
{
"id":"EX_dsmsterol_e",
"name":"Exchange of Desmosterol",
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},
{
"id":"CHSTEROLSte",
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},
"annotation":{
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}
},
{
"id":"3ITYR_Lte",
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},
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},
{
"id":"35DIODTYRte",
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},
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}
},
{
"id":"13_CIS_RETNte",
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},
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}
},
{
"id":"CE1617te",
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},
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},
{
"id":"EX_CE1617_e",
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},
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}
},
{
"id":"IDL_HSSYN",
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},
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},
"annotation":{
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],
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}
},
{
"id":"IDL_HSDEG",
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},
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},
"annotation":{
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}
},
{
"id":"HDL_HSSYN",
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},
"annotation":{
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],
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}
},
{
"id":"EX_34dhoxmand_e",
"name":"Exchange of 3,4-Dihydroxymandelate",
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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},
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],
"sbo":"SBO:0000627"
}
},
{
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{
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"name":"HMR 2495",
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{
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{
"id":"HMR_2671",
"name":"Carnitine O-Acetyltransferase",
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},
{
"id":"HMR_2675",
"name":"Carnitine O-Palmitoyltransferase",
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},
{
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"name":"HMR 2679",
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}
},
{
"id":"HMR_2684",
"name":"Carnitine O-Palmitoyltransferase",
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"sbo":"SBO:0000176"
}
},
{
"id":"HMR_2685",
"name":"HMR 2685",
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]
},
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},
{
"id":"HMR_2686",
"name":"Carnitine O-Acetyltransferase",
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"coa_m":1.0,
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]
},
"annotation":{
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"sbo":"SBO:0000176"
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},
{
"id":"HMR_2688",
"name":"HMR 2688",
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},
{
"id":"HMR_2689",
"name":"Carnitine O-Acetyltransferase",
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},
{
"id":"HMR_2690",
"name":"Carnitine O-Palmitoyltransferase",
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"M00123_c":-1.0,
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]
},
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},
{
"id":"HMR_2691",
"name":"HMR 2691",
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"crn_m":-1.0
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]
},
"annotation":{
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},
{
"id":"HMR_2693",
"name":"Carnitine O-Palmitoyltransferase",
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"coa_c":1.0,
"crn_c":-1.0
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},
"annotation":{
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],
"sbo":"SBO:0000176"
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},
{
"id":"HMR_2695",
"name":"HMR 2695",
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"crn_m":-1.0
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"lower_bound":-1000.0,
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"sbo":"SBO:0000185"
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},
{
"id":"DOPAOQNOX",
"name":"Dopamine-O-Quinone Oxidase",
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"CE5276_c":-1.0,
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"lower_bound":0.0,
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},
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},
{
"id":"NADPQNOXR",
"name":"Dt-Diaphorase: NADP Quinone Oxireductase",
"metabolites":{
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"CE5665_c":1.0,
"h_c":-1.0,
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},
"annotation":{
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},
{
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"name":"Dt-Diaphorase: NAD Quinone Oxireductase",
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"h_c":-1.0,
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},
"annotation":{
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"sbo":"SBO:0000176"
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},
{
"id":"DACT",
"name":"2, 3-Dihydro-1H-Indole-5, 6-Dione Tautomerization",
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"sbo":"SBO:0000176"
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},
{
"id":"DACGST",
"name":"2, 3-Dihydro-1H-Indole-5, 6-Dione Glutathione Conjugation",
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"sbo":"SBO:0000176"
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},
{
"id":"TYRDHINDOX",
"name":"Tyrosinase: 5, 6-Dihydroxyindole Oxygen Oxidoreductase",
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},
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"sbo":"SBO:0000176"
}
},
{
"id":"EX_5cysdopa_e",
"name":"Exchange of 5-S-Cysteinyldopamine ",
"metabolites":{
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"subsystem":"Extracellular exchange",
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"sbo":"SBO:0000627"
}
},
{
"id":"CE2172t",
"name":"Transport of 6, 7-Dihydroxy-1, 2, 3, 4-Tetrahydroisoquinoline",
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},
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],
"sbo":"SBO:0000185"
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},
{
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"name":"Alkaline Ceramidase 1 (Acer1) Or Alkaline Ceramidase 3 (Acer3)",
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"sphings_r":1.0
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"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"ACER21g",
"name":"Alkaline Ceramidase 2 (Acer2) Or Alkaline Ceramidase 3 (Acer3)",
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"crm_hs_g":-1.0,
"h2o_g":-1.0,
"sphings_g":1.0
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},
{
"id":"ACER22g",
"name":"Alkaline Ceramidase 2 (Acer2) Or Alkaline Ceramidase 3 (Acer3)",
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},
{
"id":"ACER31r",
"name":"Alkaline Ceramidase 3 (Acer3)",
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"h2o_r":-1.0,
"phcrm_hs_r":-1.0,
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"subsystem":"Sphingolipid metabolism",
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},
"annotation":{
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},
{
"id":"BGAL1l",
"name":"Beta-Galactosidase, Lysosomal",
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"gm1_hs_l":-1.0,
"gm2_hs_l":1.0,
"h2o_l":-1.0
},
"lower_bound":0.0,
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},
{
"id":"CRMte",
"name":"Ceramide Diffusion",
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},
"lower_bound":-1000.0,
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"gene_reaction_rule":"",
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]
},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"EX_gluside_hs_e",
"name":"Exchange/Demand Reaction",
"metabolites":{
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},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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},
"annotation":{
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"sbo":"SBO:0000627"
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},
{
"id":"GA1tl",
"name":"Ganglioside Ga1 (Asialo Gm1) Endocytosis",
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"ga1_hs_l":1.0
},
"lower_bound":0.0,
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},
"annotation":{
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},
{
"id":"GALGLUSIDEtg2",
"name":"Lactosylceramide Endocytosis",
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"galgluside_hs_g":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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},
"annotation":{
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},
{
"id":"GD3tg",
"name":"Ganglioside Gd3 Endocytosis",
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"gd3_hs_g":1.0
},
"lower_bound":0.0,
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},
"annotation":{
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"sbo":"SBO:0000185"
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},
{
"id":"GLUSIDEte",
"name":"Vesicle Transport of Glucosylceramide from Golgi to Extracellular",
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"gluside_hs_g":-1.0
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},
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},
{
"id":"GLUSIDEtl",
"name":"Endocytosis of Glucosylceramide",
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"atp_l":-1.0,
"gluside_hs_e":-1.0,
"gluside_hs_l":1.0,
"h2o_l":-1.0,
"h_l":1.0,
"pi_l":1.0
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]
},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"GM2tl",
"name":"Ganglioside Gm2 Endocytosis",
"metabolites":{
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"gm2_hs_l":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"HEXAHBl",
"name":"Hexosaminidase A;Lysosomal Or Hexosaminidase B;Lysosomal",
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"ga2_hs_l":-1.0,
"galgluside_hs_l":1.0,
"h2o_l":-1.0
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"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(3073_AT1 and 3074_AT1 and 2760_AT1) or (3074_AT1 and 2760_AT1)",
"subsystem":"Sphingolipid metabolism",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"NEU11l",
"name":"Sialidase, Lysosomal (Neu1)",
"metabolites":{
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"galgluside_hs_l":1.0,
"gm3_hs_l":-1.0,
"h2o_l":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2720_AT1 and 4758_AT1 and 5476_AT1 and 2588_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
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]
},
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"M00008_r":-1.0,
"amp_r":1.0,
"atp_r":-1.0,
"coa_r":-1.0,
"ppi_r":1.0
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]
},
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],
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}
},
{
"id":"HMR_3003",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
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]
},
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}
},
{
"id":"HMR_3018",
"name":"HMR 3018",
"metabolites":{
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"M03047_x":1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"215_AT1",
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]
},
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],
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}
},
{
"id":"HMR_3053",
"name":"HMR 3053",
"metabolites":{
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]
},
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"bigg.reaction":[
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],
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}
},
{
"id":"HMR_3056",
"name":"HMR 3056",
"metabolites":{
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"subsystem":"Fatty acid oxidation",
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]
},
"annotation":{
"bigg.reaction":[
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],
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}
},
{
"id":"HMR_3058",
"name":"Enoyl Coenzyme A Hydratase",
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"M00783_x":1.0,
"h2o_x":-1.0
},
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"upper_bound":1000.0,
"gene_reaction_rule":"1962_AT1",
"subsystem":"Fatty acid oxidation",
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"HMR_3058"
]
},
"annotation":{
"bigg.reaction":[
"HMR_3058"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_3064",
"name":"3-Hydroxyacyl Coenzyme A Dehydrogenase",
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"CE2249_x":-1.0,
"CE2253_x":1.0,
"h_x":1.0,
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"gene_reaction_rule":"1962_AT1 or 3295_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"HMR_3064"
]
},
"annotation":{
"bigg.reaction":[
"HMR_3064"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_3065",
"name":"Acetyl Coenzyme A C-Acyltransferase",
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"CE2253_x":-1.0,
"accoa_x":1.0,
"coa_x":-1.0,
"docoscoa_x":1.0
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"gene_reaction_rule":"30_AT1 or 4645_AT1",
"subsystem":"Fatty acid oxidation",
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"HMR_3065"
]
},
"annotation":{
"bigg.reaction":[
"HMR_3065"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_3066",
"name":"Acyl Coenzyme A Oxidase",
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"o2_x":-1.0
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"subsystem":"Fatty acid oxidation",
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]
},
"annotation":{
"bigg.reaction":[
"HMR_3066"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_3068",
"name":"3-Hydroxyacyl Coenzyme A Dehydrogenase",
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"CE2250_x":1.0,
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"nadh_x":1.0
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]
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"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_3069",
"name":"Acetyl Coenzyme A C-Acyltransferase",
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"coa_x":-1.0
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"subsystem":"Fatty acid oxidation",
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"HMR_3069"
]
},
"annotation":{
"bigg.reaction":[
"HMR_3069"
],
"sbo":"SBO:0000176"
}
},
{
"id":"ACOAO8p",
"name":"Acyl CoA oxidase  octadecanoyl CoA   peroxisomal",
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"o2_x":-1.0,
"od2coa_x":1.0,
"stcoa_x":-1.0
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"subsystem":"Fatty acid oxidation",
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]
},
"annotation":{
"bigg.reaction":[
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],
"metanetx.reaction":[
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],
"rhea":[
"38974",
"38972",
"38971",
"38973"
],
"sabiork":[
"6545"
],
"sbo":"SBO:0000176",
"seed.reaction":[
"rxn09475"
]
}
},
{
"id":"HMR_3076",
"name":"3-Hydroxyacyl Coenzyme A Dehydrogenase",
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"nadh_x":1.0
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]
},
"annotation":{
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],
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}
},
{
"id":"HMR_3094",
"name":"Acyl Coenzyme A Oxidase",
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"h2o2_x":1.0,
"o2_x":-1.0,
"occoa_x":-1.0
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"subsystem":"Fatty acid oxidation",
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_3095",
"name":"Enoyl Coenzyme A Hydratase",
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"HC01415_x":-1.0,
"h2o_x":-1.0
},
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"subsystem":"Fatty acid oxidation",
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"HMR_3095"
]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_3098",
"name":"Acyl Coenzyme A Oxidase",
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"hx2coa_x":1.0,
"hxcoa_x":-1.0,
"o2_x":-1.0
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"lower_bound":0.0,
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"subsystem":"Fatty acid oxidation",
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_3100",
"name":"3-Hydroxyacyl Coenzyme A Dehydrogenase",
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"HC01408_x":1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0
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"subsystem":"Fatty acid oxidation",
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_3107",
"name":"Medium-Chain Acyl Coenzyme A Dehydrogenase",
"metabolites":{
"CE2242_m":1.0,
"docoscoa_m":-1.0,
"fad_m":-1.0,
"fadh2_m":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"37_AT1 or 33_AT1 or 34_AT1 or 28976_AT1",
"subsystem":"Fatty acid oxidation",
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]
},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"HMR_3108",
"name":"Enoyl Coenzyme A Hydratase",
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"CE2246_m":1.0,
"h2o_m":-1.0
},
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"gene_reaction_rule":"3030_AT1 or 1892_AT1",
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]
},
"annotation":{
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],
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}
},
{
"id":"HMR_3109",
"name":"3-Hydroxyacyl Coenzyme A Dehydrogenase",
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"CE2250_m":1.0,
"h_m":1.0,
"nad_m":-1.0,
"nadh_m":1.0
},
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"gene_reaction_rule":"3028_AT1 or 3030_AT1 or 3033_AT1",
"subsystem":"Fatty acid oxidation",
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_3110",
"name":"Acetyl Coenzyme A C-Acyltransferase",
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"arachcoa_m":1.0,
"coa_m":-1.0
},
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_3112",
"name":"Enoyl Coenzyme A Hydratase",
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"CE2247_m":1.0,
"h2o_m":-1.0
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"subsystem":"Fatty acid oxidation",
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"HMR_3112"
]
},
"annotation":{
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"HMR_3112"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_3230",
"name":"Medium-Chain Acyl Coenzyme A Dehydrogenase",
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"M03019_m":1.0,
"fad_m":-1.0,
"fadh2_m":1.0
},
"lower_bound":0.0,
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"subsystem":"Fatty acid oxidation",
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]
},
"annotation":{
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"HMR_3230"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PHCRMtg",
"name":"Phytoceramide Transport, Golgi Apparatus",
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"phcrm_hs_g":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"SPHGNtn",
"name":"Sphinganine Intracellular Transport",
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"sphgn_c":-1.0,
"sphgn_n":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, nuclear",
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]
},
"annotation":{
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"SPHGNtn"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_gd1a_hs_e",
"name":"Exchange of Gd1A",
"metabolites":{
"gd1a_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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},
"annotation":{
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"sbo":"SBO:0000627"
}
},
{
"id":"DHCRMter",
"name":"Dihydroceramide Transport, Endoplasmatic Reticulum",
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"dhcrm_hs_r":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"PHSGPL11c",
"name":"Sphingosine-1-Phosphate Lyase 1 (Phytosphingosine-1-Phosphate, Cytosol)",
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"hhxdcal_c":1.0,
"phsph1p_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Sphingolipid metabolism",
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},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"EX_34dhpe_e",
"name":"Exchange of 3, 4-Dihydroxyphenylethanol ",
"metabolites":{
"34dhpe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
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]
},
"annotation":{
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],
"sbo":"SBO:0000627"
}
},
{
"id":"DM_no2_c",
"name":"Demand for  Nitrite",
"metabolites":{
"no2_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
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]
},
"annotation":{
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],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_gm1_hs_n",
"name":"Demand for  Gm1 ",
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"gm1_hs_n":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
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},
"annotation":{
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"sbo":"SBO:0000628"
}
},
{
"id":"DM_6hddopaqn_c",
"name":"Demand for  6-Hydroxydopamine-Quinone",
"metabolites":{
"6hddopaqn_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
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]
},
"annotation":{
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"sbo":"SBO:0000628"
}
},
{
"id":"GALSIDEter",
"name":"Galactocerebroside Intracellular Transport",
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"galside_hs_r":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
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]
},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"Rtotaltg",
"name":"Fatty Acid Intracellular Transport",
"metabolites":{
"Rtotal_c":-1.0,
"Rtotal_g":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, golgi apparatus",
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"GD1Atg",
"name":"Transport of Gd1A ",
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"gd1a_hs_g":-1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"",
"subsystem":"Transport, golgi apparatus",
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0241",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
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"M00004_c":1.0,
"amp_c":1.0,
"atp_c":-1.0,
"coa_c":-1.0,
"ppi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2182_AT1 or 23205_AT1 or 2181_AT1 or 81616_AT1 or 11001_AT1 or 2180_AT1 or 23305_AT1 or 51703_AT1",
"subsystem":"Fatty acid synthesis",
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},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0242",
"name":"Palmitoyl Coenzyme A Hydrolase",
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"M00004_c":-1.0,
"coa_c":1.0,
"h2o_c":-1.0,
"h_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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},
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"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0245",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
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"amp_c":1.0,
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"coa_c":-1.0,
"ppi_c":1.0
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"lower_bound":0.0,
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"gene_reaction_rule":"2182_AT1 or 23205_AT1 or 2181_AT1 or 81616_AT1 or 11001_AT1 or 2180_AT1 or 23305_AT1 or 51703_AT1",
"subsystem":"Fatty acid synthesis",
"notes":{
"original_bigg_ids":[
"HMR_0245"
]
},
"annotation":{
"bigg.reaction":[
"HMR_0245"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0247",
"name":"HMR 0247",
"metabolites":{
"M01238_c":-1.0,
"M01238_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
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},
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"gene_reaction_rule":"19_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0253",
"name":"HMR 0253",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"ocdca_c":-1.0,
"ocdca_e":1.0,
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},
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"gene_reaction_rule":"19_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"HMR_0253"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0255",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
"metabolites":{
"M00019_c":-1.0,
"M00020_c":1.0,
"amp_c":1.0,
"atp_c":-1.0,
"coa_c":-1.0,
"ppi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2182_AT1 or 23205_AT1 or 2181_AT1 or 81616_AT1 or 11001_AT1 or 2180_AT1 or 23305_AT1 or 51703_AT1",
"subsystem":"Fatty acid synthesis",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0257",
"name":"HMR 0257",
"metabolites":{
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"M00019_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
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"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0261",
"name":"HMR 0261",
"metabolites":{
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"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"vacc_c":-1.0,
"vacc_e":1.0
},
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"gene_reaction_rule":"19_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"HMR_0261"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0278",
"name":"HMR 0278",
"metabolites":{
"M02613_c":1.0,
"M02613_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28965_AT1 or 2170_AT1 or 376497_AT1 or 948_AT1 or 11000_AT1 or 2169_AT1 or 2168_AT1 or 2173_AT1 or 2171_AT1 or 10999_AT1 or 2172_AT1 or 2167_AT1 or 646486_AT1 or 646480_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0279",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
"metabolites":{
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"M02613_c":-1.0,
"amp_c":1.0,
"atp_c":-1.0,
"coa_c":-1.0,
"ppi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2182_AT1 or 23205_AT1 or 2181_AT1 or 81616_AT1 or 11001_AT1 or 2180_AT1 or 23305_AT1 or 51703_AT1",
"subsystem":"Fatty acid synthesis",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0281",
"name":"HMR 0281",
"metabolites":{
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"M02613_e":1.0,
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"atp_c":-1.0,
"h2o_c":-1.0,
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"subsystem":"Transport, extracellular",
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0287",
"name":"HMR 0287",
"metabolites":{
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"arach_e":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
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},
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"subsystem":"Transport, extracellular",
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0810",
"name":"Globoside Alpha-N-Acetylgalactosaminyltransferase",
"metabolites":{
"M02197_c":1.0,
"gbside_hs_c":-1.0,
"h_c":1.0,
"udp_c":1.0,
"udpacgal_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"26301_AT1",
"subsystem":"Glycosphingolipid metabolism",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0390",
"name":"Palmitoyl Coenzyme A Hydrolase",
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"coa_c":1.0,
"h2o_c":-1.0,
"h_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0395",
"name":"HMR 0395",
"metabolites":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"FACOAE1836Z9Z12Z",
"name":"Gamma-Linolenoyl-CoA hydrolase (18:3(6Z,9Z,12Z))",
"metabolites":{
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"h2o_c":-1.0,
"h_c":1.0,
"lnlncg_c":1.0,
"lnlncgcoa_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
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]
},
"annotation":{
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],
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0406",
"name":"Palmitoyl Coenzyme A Hydrolase",
"metabolites":{
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"dlnlcg_c":1.0,
"dlnlcgcoa_c":-1.0,
"h2o_c":-1.0,
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},
"lower_bound":0.0,
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"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
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]
},
"annotation":{
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],
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}
},
{
"id":"HMR_0414",
"name":"Palmitoyl Coenzyme A Hydrolase",
"metabolites":{
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"adrncoa_c":-1.0,
"coa_c":1.0,
"h2o_c":-1.0,
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},
"lower_bound":0.0,
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0418",
"name":"Palmitoyl Coenzyme A Hydrolase",
"metabolites":{
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"h2o_c":-1.0,
"h_c":1.0,
"tettet6_c":1.0,
"tettet6coa_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0419",
"name":"HMR 0419",
"metabolites":{
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"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"tettet6_c":-1.0,
"tettet6_e":1.0
},
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"subsystem":"Transport, extracellular",
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0422",
"name":"Palmitoyl Coenzyme A Hydrolase",
"metabolites":{
"coa_c":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"tetpent6_c":1.0,
"tetpent6coa_c":-1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0428",
"name":"HMR 0428",
"metabolites":{
"M00008_c":1.0,
"M00008_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28965_AT1 or 2170_AT1 or 376497_AT1 or 948_AT1 or 11000_AT1 or 2169_AT1 or 2168_AT1 or 2173_AT1 or 2171_AT1 or 10999_AT1 or 2172_AT1 or 2167_AT1 or 646486_AT1 or 646480_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0431",
"name":"HMR 0431",
"metabolites":{
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"M00008_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
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},
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"gene_reaction_rule":"19_AT1",
"subsystem":"Transport, extracellular",
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0432",
"name":"HMR 0432",
"metabolites":{
"M00021_c":1.0,
"M00021_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28965_AT1 or 2170_AT1 or 376497_AT1 or 948_AT1 or 11000_AT1 or 2169_AT1 or 2168_AT1 or 2173_AT1 or 2171_AT1 or 10999_AT1 or 2172_AT1 or 2167_AT1 or 646486_AT1 or 646480_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0435",
"name":"HMR 0435",
"metabolites":{
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"h2o_c":-1.0,
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},
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"subsystem":"Transport, extracellular",
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0436",
"name":"HMR 0436",
"metabolites":{
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},
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"gene_reaction_rule":"28965_AT1 or 2170_AT1 or 376497_AT1 or 948_AT1 or 11000_AT1 or 2169_AT1 or 2168_AT1 or 2173_AT1 or 2171_AT1 or 10999_AT1 or 2172_AT1 or 2167_AT1 or 646486_AT1 or 646480_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"HMR_0436"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0438",
"name":"Palmitoyl Coenzyme A Hydrolase",
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"M00265_c":1.0,
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"h2o_c":-1.0,
"h_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"11332_AT1 or 10965_AT1 or 570_AT1 or 122970_AT1 or 641371_AT1 or 641372_AT1 or 344967_AT1",
"subsystem":"Fatty acid oxidation",
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]
},
"annotation":{
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}
},
{
"id":"HMR_0439",
"name":"HMR 0439",
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},
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"HMR_0467",
"name":"HMR 0467",
"metabolites":{
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"pail_hs_r":1.0
},
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"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"G3PD2",
"name":"Glycerol-3-phosphate dehydrogenase (NADP)",
"metabolites":{
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"glyc3p_c":-1.0,
"h_c":1.0,
"nadp_c":-1.0,
"nadph_c":1.0
},
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},
"annotation":{
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],
"ec-code":[
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],
"kegg.reaction":[
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],
"metanetx.reaction":[
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],
"rhea":[
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"11099",
"11098",
"11097"
],
"sabiork":[
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],
"sbo":"SBO:0000176",
"seed.reaction":[
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]
}
},
{
"id":"G3PD",
"name":"Glycerol-3-phosphate dehydrogenase (FAD)",
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"glyc3p_c":-1.0
},
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},
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],
"kegg.reaction":[
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],
"metanetx.reaction":[
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],
"reactome.reaction":[
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"R-MMU-188467",
"R-DDI-188467",
"R-BTA-188467",
"R-SCE-188467",
"R-GGA-188467",
"R-SSC-188467",
"R-PFA-188467",
"R-OSA-188467",
"R-SPO-188467",
"R-DRE-188467",
"R-RNO-188467",
"R-CEL-188467",
"R-XTR-188467",
"R-CFA-188467",
"R-TGU-188467",
"R-HSA-188467",
"R-DME-188467"
],
"rhea":[
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"31285",
"31284",
"31286"
],
"sbo":"SBO:0000176",
"seed.reaction":[
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}
},
{
"id":"HMR_0942",
"name":"Unspecific Monooxygenase",
"metabolites":{
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"arachd_c":-1.0,
"h2o_c":1.0,
"h_c":-1.0,
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"o2_c":-1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"64816_AT1 or 1565_AT1 or 1577_AT1 or 1562_AT1 or 1571_AT1 or 1573_AT1 or 1588_AT1 or 1545_AT1 or 1559_AT1 or 1558_AT1 or 1543_AT1 or 1544_AT1 or 1580_AT1 or 113612_AT1 or 1576_AT1 or 1551_AT1 or 1557_AT1 or 29785_AT1 or 57834_AT1 or 199974_AT1 or 66002_AT1 or 260293_AT1 or 11283_AT1 or 1555_AT1 or 1572_AT1 or 1553_AT1 or 1549_AT1 or 1548_AT1",
"subsystem":"Arachidonic acid metabolism",
"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_0946",
"name":"Unspecific Monooxygenase",
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},
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},
{
"id":"HMR_0950",
"name":"HMR 0950",
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},
{
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},
{
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},
{
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},
{
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},
{
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{
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},
{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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{
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},
{
"id":"HMR_3344",
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{
"id":"HMR_3348",
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},
{
"id":"HMR_3350",
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{
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{
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{
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{
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{
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{
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{
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{
"id":"HMR_2611",
"name":"Carnitine O-Palmitoyltransferase",
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{
"id":"HMR_2613",
"name":"Carnitine O-Acetyltransferase",
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},
{
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{
"id":"HMR_2635",
"name":"Carnitine O-Acetyltransferase",
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{
"id":"HMR_2644",
"name":"HMR 2644",
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},
{
"id":"HMR_6747",
"name":"L-Metanephrine:Oxygen Oxidoreductase (Deaminating) (Flavin-Containing)",
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"h2o2_c":1.0,
"h2o_c":-1.0,
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},
{
"id":"HMR_6755",
"name":"Catechol O-Methyltransferase",
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{
"id":"HMR_6782",
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"nad_c":1.0,
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{
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"ec-code":[
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"kegg.reaction":[
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"metanetx.reaction":[
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"19642",
"19644",
"19643"
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"sabiork":[
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"seed.reaction":[
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}
},
{
"id":"HMR_6786",
"name":"4-Hydroxybenzoyl Coenzyme A Hydrolase",
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"4hbzcoa_c":-1.0,
"coa_c":1.0,
"h2o_c":-1.0,
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},
{
"id":"HMR_6826",
"name":"Thyroxine 5'-Deiodinase",
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"i_c":-1.0,
"nadp_c":-1.0,
"nadph_c":1.0,
"triodthy_c":1.0
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},
{
"id":"HMR_6834",
"name":"Thyroxine 5'-Deiodinase",
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"HC02187_c":1.0,
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{
"id":"HMR_6838",
"name":"HMR 6838",
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"triodthysuf_c":1.0
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},
{
"id":"HMR_6839",
"name":"Steryl-Sulfatase",
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"h2o_c":-1.0,
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"so4_c":1.0,
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{
"id":"HMR_6844",
"name":"HMR 6844",
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},
{
"id":"HMR_6874",
"name":"L-Tyrosine, L-Dopa:Oxygen Oxidoreductase",
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"h2o_c":1.0,
"o2_c":-1.0,
"tyr__L_c":-1.0
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},
{
"id":"HMR_6910",
"name":"3-Demethylubiquinol 3-O-Methyltransferase",
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"ahcys_m":1.0,
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"h_m":3.0,
"q10h2_m":1.0
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},
{
"id":"HMR_6977",
"name":"S-Adenosyl-L-Methionine:Cytochrome-C-L-Lysine N6-Methyltransferase",
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},
{
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{
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{
"id":"HMR_7180",
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{
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{
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{
"id":"HMR_7198",
"name":"HMR 7198",
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"Ser_Gly_Ala_X_Gly_r":1.0
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{
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"name":"HMR 7255",
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"doldp__L_c":1.0,
"h_c":-20.0
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{
"id":"HMR_7278",
"name":"UDPglucose:Dolichyl-Phosphate Beta-D-Glucosyltransferase",
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"udpg_r":-1.0
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{
"id":"HMR_7328",
"name":"HMR 7328",
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{
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{
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{
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{
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},
{
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"udpacgal_l":1.0
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}
},
{
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},
{
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"name":"5 diphosphoinositol 1 2 3 4 6 pentakisphosphate synthase",
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"R-MMU-1855227",
"R-PFA-1855227",
"R-DRE-1855207",
"R-DRE-1855227",
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"12794",
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},
{
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"name":"HMR 7715",
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},
{
"id":"HMR_7724",
"name":"HMR 7724",
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},
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},
{
"id":"HMR_7727",
"name":"HMR 7727",
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},
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"sbo":"SBO:0000185"
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},
{
"id":"HMR_7755",
"name":"ATP:Glycerone Phosphotransferase",
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"dhap_e":1.0,
"h_e":1.0
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},
{
"id":"HMR_7757",
"name":"HMR 7757",
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},
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},
{
"id":"HMR_7758",
"name":"HMR 7758",
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},
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}
},
{
"id":"HMR_7903",
"name":"HMR 7903",
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"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
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},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"HMR_7947",
"name":"HMR 7947",
"metabolites":{
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},
{
"id":"HMR_7949",
"name":"HMR 7949",
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"annotation":{
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},
{
"id":"HMR_8056",
"name":"HMR 8056",
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},
{
"id":"HMR_8084",
"name":"HMR 8084",
"metabolites":{
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"gene_reaction_rule":"",
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},
{
"id":"HMR_8086",
"name":"HMR 8086",
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"gene_reaction_rule":"",
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},
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"sbo":"SBO:0000185"
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},
{
"id":"HMR_8287",
"name":"HMR 8287",
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"subsystem":"Blood group synthesis",
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},
"annotation":{
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"sbo":"SBO:0000176"
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},
{
"id":"HMR_8397",
"name":"HMR 8397",
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"gene_reaction_rule":"23556_AT1",
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"annotation":{
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"sbo":"SBO:0000176"
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},
{
"id":"HMR_8399",
"name":"HMR 8399",
"metabolites":{
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"pe_hs_r":-1.0
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},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"LALDO2",
"name":"D-Lactaldehyde:NADP+ 1-oxidoreductase",
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"mthgxl_c":-1.0,
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"subsystem":"Pyruvate metabolism",
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},
"annotation":{
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"metanetx.reaction":[
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"sbo":"SBO:0000176"
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},
{
"id":"HMR_8505",
"name":"HMR 8505",
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"subsystem":"Transport, mitochondrial",
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},
{
"id":"HMR_8510",
"name":"HMR 8510",
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}
},
{
"id":"ID3ACALDtm",
"name":"Indole 3 acetaldehyde mitochondrial transport via diffusion",
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},
"annotation":{
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"metanetx.reaction":[
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"sbo":"SBO:0000185",
"seed.reaction":[
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"rxn10831"
]
}
},
{
"id":"HMR_8571",
"name":"Alpha-Amylase",
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"h2o_e":-2.0
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"gene_reaction_rule":"84569_AT1 or 277_AT1 or 278_AT1 or 276_AT1 or 280_AT1 or 279_AT1",
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},
{
"id":"HMR_8572",
"name":"Alpha-Amylase",
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},
{
"id":"HMR_8573",
"name":"Alpha-Amylase",
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},
{
"id":"HMR_8574",
"name":"Alpha-Amylase",
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},
{
"id":"HMR_8575",
"name":"Alpha-Amylase",
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},
{
"id":"HMR_8576",
"name":"Alpha-Amylase",
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},
{
"id":"HMR_8578",
"name":"Alpha-Amylase",
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},
{
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"name":"Alpha-Amylase",
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},
{
"id":"HMR_8585",
"name":"3-Phospho-D-Glyceroyl-Phosphate:Alpha-D-Glucose-1-Phosphate 6-Phosphotransferase",
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},
{
"id":"HMR_8590",
"name":"HMR 8590",
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},
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},
{
"id":"7DHCDCHOLabc",
"name":"7-Dehydrochenodeoxycholic acid ABC bile acid transporter",
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"h_c":1.0,
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},
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},
{
"id":"CA24GSc",
"name":"UDP-Glucuronosyltransferase (UGT) cytosolic (cholic acid)",
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},
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},
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},
{
"id":"CA24Gte",
"name":"Glucuronidated bile acid excretion (CA-24G)",
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},
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},
{
"id":"CA3St",
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},
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},
{
"id":"CDCA24GSc",
"name":"UDP-Glucuronosyltransferase (UGT) cytosolic (chenodeoxycholic acid)",
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"subsystem":"Bile acid synthesis",
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"original_bigg_ids":[
"CDCA24GSc"
]
},
"annotation":{
"bigg.reaction":[
"CDCA24GSc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"CDCA24GSr",
"name":"UDP-Glucuronosyltransferase (UGT) (chenodeoxycholic acid)",
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"cdca24g_r":1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"54659_AT1 or 10941_AT1 or 79799_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
"CDCA24GSr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"CDCA24Gtr",
"name":"Glucuronidated Compound Transport (CDCA-24G)",
"metabolites":{
"cdca24g_c":-1.0,
"cdca24g_r":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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"CDCA24Gtr"
]
},
"annotation":{
"bigg.reaction":[
"CDCA24Gtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CDCA3GSc",
"name":"UDP-Glucuronosyltransferase (UGT) cytosolic (chenodeoxycholic acid)",
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"C02528_c":-1.0,
"cdca3g_c":1.0,
"udp_c":1.0,
"udpglcur_c":-1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"7364_AT1 or 10941_AT1 or 79799_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
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]
},
"annotation":{
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"CDCA3GSc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"CDCA3GSr",
"name":"UDP-Glucuronosyltransferase (UGT) ER (chenodeoxycholic acid)",
"metabolites":{
"C02528_r":-1.0,
"cdca3g_r":1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
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"lower_bound":0.0,
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"gene_reaction_rule":"7364_AT1 or 10941_AT1 or 79799_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"CDCA3Gte",
"name":"Glucuronidated bile acid excretion (CDCA-3G)",
"metabolites":{
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"atp_c":-1.0,
"cdca3g_c":-1.0,
"cdca3g_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"8714_AT3 or 8647_AT1 or 8714_AT2 or 8714_AT1 or 1244_AT1 or 9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"CDCA3Gtr",
"name":"Glucuronidated Compound Transport (CDCA-3G)",
"metabolites":{
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"cdca3g_r":1.0
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"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"DCA24GSc",
"name":"UDP-Glucuronosyltransferase (UGT) cytosolic (deoxycholic acid)",
"metabolites":{
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"dchac_c":-1.0,
"udp_c":1.0,
"udpglcur_c":-1.0
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"subsystem":"Bile acid synthesis",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"DCA24Gte",
"name":"Glucuronidated bile acid excretion (DCA-24g)",
"metabolites":{
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"atp_c":-1.0,
"dca24g_c":-1.0,
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},
"lower_bound":0.0,
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"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"DCA24Gtr",
"name":"Glucuronidated Compound Transport (DCA-24g)",
"metabolites":{
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"dca24g_r":1.0
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"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"DCA3GSc",
"name":"UDP-Glucuronosyltransferase (UGT) cytosolic (deoxycholic acid)",
"metabolites":{
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"dchac_c":-1.0,
"udp_c":1.0,
"udpglcur_c":-1.0
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"gene_reaction_rule":"7364_AT1 or 10941_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"DCA3Gte",
"name":"Glucuronidated bile acid excretion (DCA-3G)",
"metabolites":{
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"atp_c":-1.0,
"dca3g_c":-1.0,
"dca3g_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"8714_AT3 or 8647_AT1 or 8714_AT2 or 8714_AT1 or 1244_AT1 or 9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"DCA3Gtr",
"name":"Glucuronidated Compound Transport (DCA-3G)",
"metabolites":{
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"dca3g_r":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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"DCA3Gtr"
]
},
"annotation":{
"bigg.reaction":[
"DCA3Gtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DCASULT",
"name":"Deoxycholic acid sulfotransferase",
"metabolites":{
"dca3s_c":1.0,
"dchac_c":-1.0,
"h_c":1.0,
"pap_c":1.0,
"paps_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6822_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
"DCASULT"
],
"sbo":"SBO:0000176"
}
},
{
"id":"DM_12dhchol_c",
"name":"DM 12dhchol(c)",
"metabolites":{
"12dhchol_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_12dhchol[c]"
]
},
"annotation":{
"bigg.reaction":[
"DM_12dhchol_c"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_3dhcdchol_c",
"name":"DM 3dhcdchol(c)",
"metabolites":{
"3dhcdchol_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
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],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_3dhchol_c",
"name":"DM 3dhchol(c)",
"metabolites":{
"3dhchol_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_3dhchol[c]"
]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_3dhlchol_c",
"name":"DM 3dhlchol(c)",
"metabolites":{
"3dhlchol_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
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"DM_3dhlchol[c]"
]
},
"annotation":{
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],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_cdca24g_c",
"name":"DM cdca24g(c)",
"metabolites":{
"cdca24g_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
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]
},
"annotation":{
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"sbo":"SBO:0000628"
}
},
{
"id":"DM_cdca3g_c",
"name":"DM cdca3g(c)",
"metabolites":{
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},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_coprost_c",
"name":"DM coprost(c)",
"metabolites":{
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},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_dca3g_c",
"name":"DM dca3g(c)",
"metabolites":{
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},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
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},
"annotation":{
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],
"sbo":"SBO:0000628"
}
},
{
"id":"HDCA24GSc",
"name":"UDP-Glucuronosyltransferase (UGT) cytosolic (hyodeoxycholic acid)",
"metabolites":{
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"h_c":1.0,
"hdca24g_c":1.0,
"udp_c":1.0,
"udpglcur_c":-1.0
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"gene_reaction_rule":"54659_AT1 or 10941_AT1 or 79799_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HDCA24GSr",
"name":"UDP-Glucuronosyltransferase (UGT) (hyodeoxycholic acid)",
"metabolites":{
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"h_r":1.0,
"hdca24g_r":1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
},
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"gene_reaction_rule":"54659_AT1 or 10941_AT1 or 79799_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_2650",
"name":"Carnitine O-Acetyltransferase",
"metabolites":{
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"M02102_m":1.0,
"coa_m":1.0,
"crn_m":-1.0
},
"lower_bound":-1000.0,
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"gene_reaction_rule":"1384_AT1 or 1376_AT1",
"subsystem":"Transport, mitochondrial",
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_2651",
"name":"Carnitine O-Palmitoyltransferase",
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"M02103_c":1.0,
"coa_c":1.0,
"crn_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1374_AT1 or 126129_AT1 or 1375_AT1",
"subsystem":"Fatty acid oxidation",
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]
},
"annotation":{
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"sbo":"SBO:0000176"
}
},
{
"id":"HMR_2653",
"name":"Carnitine O-Acetyltransferase",
"metabolites":{
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"M02103_m":1.0,
"coa_m":1.0,
"crn_m":-1.0
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"gene_reaction_rule":"1384_AT1 or 1376_AT1",
"subsystem":"Transport, mitochondrial",
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"CARN180t_m",
"name":"Octadecanoyl-l-carnitine:carnitine antiport (Cytosol to mitochondira)",
"metabolites":{
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"crn_m":-1.0,
"stcrn_c":-1.0,
"stcrn_m":1.0
},
"lower_bound":-1000.0,
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"gene_reaction_rule":"114571_AT1 or 6580_AT1 or 788_AT1 or 123096_AT1 or 6583_AT1",
"subsystem":"Transport, mitochondrial",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_2659",
"name":"Carnitine O-Acetyltransferase",
"metabolites":{
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"coa_m":1.0,
"crn_m":-1.0,
"odecrn_m":1.0
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"gene_reaction_rule":"1384_AT1 or 1376_AT1",
"subsystem":"Transport, mitochondrial",
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_2661",
"name":"HMR 2661",
"metabolites":{
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"crn_m":1.0,
"vacccrn_c":1.0,
"vacccrn_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"114571_AT1 or 6580_AT1 or 788_AT1 or 123096_AT1 or 6583_AT1",
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"notes":{
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]
},
"annotation":{
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"sbo":"SBO:0000185"
}
},
{
"id":"VACCCPT2",
"name":"Carnitine transferase",
"metabolites":{
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"crn_m":1.0,
"vacccoa_m":1.0,
"vacccrn_m":-1.0
},
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"subsystem":"Transport, mitochondrial",
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_2667",
"name":"HMR 2667",
"metabolites":{
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"crn_m":-1.0,
"elaidcrn_c":-1.0,
"elaidcrn_m":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"114571_AT1 or 6580_AT1 or 788_AT1 or 123096_AT1 or 6583_AT1",
"subsystem":"Transport, mitochondrial",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_2669",
"name":"Carnitine O-Palmitoyltransferase",
"metabolites":{
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"M02638_c":1.0,
"coa_c":1.0,
"crn_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1374_AT1 or 126129_AT1 or 1375_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_2955",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
"metabolites":{
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"M00004_r":1.0,
"amp_r":1.0,
"atp_r":-1.0,
"coa_r":-1.0,
"ppi_r":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2182_AT1 or 23205_AT1 or 2181_AT1 or 81616_AT1 or 11001_AT1 or 2180_AT1 or 23305_AT1 or 51703_AT1",
"subsystem":"Fatty acid synthesis",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_2956",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
"metabolites":{
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"ppi_r":1.0
},
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"gene_reaction_rule":"2182_AT1 or 23205_AT1 or 2181_AT1 or 81616_AT1 or 11001_AT1 or 2180_AT1 or 23305_AT1 or 51703_AT1",
"subsystem":"Fatty acid synthesis",
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_2962",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
"metabolites":{
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"M00020_r":1.0,
"amp_r":1.0,
"atp_r":-1.0,
"coa_r":-1.0,
"ppi_r":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2182_AT1 or 23205_AT1 or 2181_AT1 or 81616_AT1 or 11001_AT1 or 2180_AT1 or 23305_AT1 or 51703_AT1",
"subsystem":"Fatty acid synthesis",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_2964",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
"metabolites":{
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"atp_r":-1.0,
"coa_r":-1.0,
"lneldc_r":-1.0,
"lneldccoa_r":1.0,
"ppi_r":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2182_AT1 or 23205_AT1 or 2181_AT1 or 81616_AT1 or 11001_AT1 or 2180_AT1 or 23305_AT1 or 51703_AT1",
"subsystem":"Fatty acid synthesis",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_2966",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
"metabolites":{
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"arachcoa_r":1.0,
"atp_r":-1.0,
"coa_r":-1.0,
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{
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{
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{
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},
{
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},
{
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},
{
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{
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{
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{
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{
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"gene_reaction_rule":"197257_AT1 or 124637_AT1",
"subsystem":"Pyruvate metabolism",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_3864",
"name":"HMR 3864",
"metabolites":{
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"3sala_m":-1.0,
"glu__L_c":-1.0,
"glu__L_m":1.0,
"h_c":-1.0,
"h_m":1.0
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"gene_reaction_rule":"10165_AT1 or 8604_AT1",
"subsystem":"Transport, mitochondrial",
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]
},
"annotation":{
"bigg.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_3867",
"name":"HMR 3867",
"metabolites":{
"fald_c":-1.0,
"fald_x":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, peroxisomal",
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]
},
"annotation":{
"bigg.reaction":[
"HMR_3867"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_3953",
"name":"HMR 3953",
"metabolites":{
"6pgc_c":-1.0,
"6pgc_r":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, endoplasmic reticular",
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]
},
"annotation":{
"bigg.reaction":[
"HMR_3953"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_3996",
"name":"L-Cysteine:NAD+ Oxidoreductase;",
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"cysi__L_c":-1.0,
"h_c":-1.0,
"nad_c":1.0,
"nadh_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":0.0,
"gene_reaction_rule":"",
"subsystem":"Methionine and cysteine metabolism",
"notes":{
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"HMR_3996"
]
},
"annotation":{
"bigg.reaction":[
"HMR_3996"
],
"sbo":"SBO:0000176"
}
},
{
"id":"SMOX",
"name":"Spermine oxidase",
"metabolites":{
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"h2o2_c":1.0,
"h2o_c":-1.0,
"o2_c":-1.0,
"spmd_c":1.0,
"sprm_c":-1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"",
"subsystem":"Beta-Alanine metabolism",
"notes":{
"original_bigg_ids":[
"HMR_4078"
]
},
"annotation":{
"bigg.reaction":[
"SMOX"
],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"CYTDK2",
"name":"Cytidine kinase (GTP)",
"metabolites":{
"cmp_c":1.0,
"cytd_c":-1.0,
"gdp_c":1.0,
"gtp_c":-1.0,
"h_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"9917_AT1 or 79672_AT1 or 79707_AT1 or 64122_AT1 or 55277_AT1",
"subsystem":"Pyrimidine synthesis",
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]
},
"annotation":{
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],
"biocyc":[
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],
"ec-code":[
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"2.7.1.213"
],
"kegg.reaction":[
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],
"metanetx.reaction":[
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],
"rhea":[
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"28164",
"28162",
"28163"
],
"sbo":"SBO:0000176",
"seed.reaction":[
"rxn00369"
]
}
},
{
"id":"NADS1",
"name":"NAD synthase (nh3)",
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"atp_c":-1.0,
"dnad_c":-1.0,
"h_c":1.0,
"nad_c":1.0,
"nh4_c":-1.0,
"ppi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"55191_AT1",
"subsystem":"NAD metabolism",
"notes":{
"original_bigg_ids":[
"HMR_4261"
]
},
"annotation":{
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"NADS1"
],
"biocyc":[
"META:NAD-SYNTH-NH3-RXN"
],
"ec-code":[
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"6.3.1.5"
],
"kegg.reaction":[
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],
"metanetx.reaction":[
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"rhea":[
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"21190",
"21191",
"21189"
],
"sabiork":[
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],
"sbo":"SBO:0000176",
"seed.reaction":[
"rxn00138"
]
}
},
{
"id":"NADDP",
"name":"NAD diphosphatase",
"metabolites":{
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"h2o_c":-1.0,
"h_c":2.0,
"nad_c":-1.0,
"nmn_c":1.0
},
"lower_bound":0.0,
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"gene_reaction_rule":"83594_AT1",
"subsystem":"NAD metabolism",
"notes":{
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]
},
"annotation":{
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"NADDP"
],
"biocyc":[
"META:NADPYROPHOSPHAT-RXN"
],
"ec-code":[
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"3.6.1.9"
],
"kegg.reaction":[
"R00103"
],
"metanetx.reaction":[
"MNXR101861"
],
"rhea":[
"11802",
"11800",
"11801",
"11803"
],
"sabiork":[
"684"
],
"sbo":"SBO:0000176",
"seed.reaction":[
"rxn00076",
"rxn05823"
]
}
},
{
"id":"NADS1n",
"name":"NAD synthase  nh3   nuclear",
"metabolites":{
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"atp_n":-1.0,
"dnad_n":-1.0,
"h_n":1.0,
"nad_n":1.0,
"nh4_n":-1.0,
"ppi_n":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"55191_AT1",
"subsystem":"NAD metabolism",
"notes":{
"original_bigg_ids":[
"HMR_4278"
]
},
"annotation":{
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"NADS1n"
],
"biocyc":[
"META:NAD-SYNTH-NH3-RXN"
],
"ec-code":[
"6.3.5.1",
"6.3.1.5"
],
"kegg.reaction":[
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],
"metanetx.reaction":[
"MNXR101897"
],
"rhea":[
"21188",
"21190",
"21191",
"21189"
],
"sabiork":[
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],
"sbo":"SBO:0000176",
"seed.reaction":[
"rxn00138"
]
}
},
{
"id":"THRA",
"name":"Threonine aldolase",
"metabolites":{
"acald_c":1.0,
"gly_c":1.0,
"thr__L_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Glycine, serine, alanine, and threonine metabolism",
"notes":{
"original_bigg_ids":[
"HMR_4284"
]
},
"annotation":{
"bigg.reaction":[
"THRA"
],
"biocyc":[
"META:THREONINE-ALDOLASE-RXN"
],
"ec-code":[
"4.1.2.5",
"4.1.2.48"
],
"kegg.reaction":[
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],
"metanetx.reaction":[
"MNXR104833"
],
"rhea":[
"19625",
"19626",
"19627",
"19628"
],
"sbo":"SBO:0000176",
"seed.reaction":[
"rxn00541"
]
}
},
{
"id":"HMR_4422",
"name":"L-Ornithine Carboxy-Lyase (Putrescine-Forming)",
"metabolites":{
"co2_e":1.0,
"h_e":-1.0,
"orn_e":-1.0,
"ptrc_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"4953_AT1",
"subsystem":"Arginine and proline metabolism",
"notes":{
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"HMR_4422"
]
},
"annotation":{
"bigg.reaction":[
"HMR_4422"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_4702",
"name":"HMR 4702",
"metabolites":{
"HC01522_c":1.0,
"co2_c":1.0,
"h2o_c":1.0,
"hgentis_c":-1.0,
"nadp_c":1.0,
"nadph_c":-1.0,
"o2_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Tyrosine metabolism",
"notes":{
"original_bigg_ids":[
"HMR_4702"
]
},
"annotation":{
"bigg.reaction":[
"HMR_4702"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PPPGO2_1",
"name":"Protoporphyrinogen oxidase (aerobic)",
"metabolites":{
"h2o2_c":3.0,
"o2_c":-3.0,
"ppp9_c":1.0,
"pppg9_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5498_AT1",
"subsystem":"Heme synthesis",
"notes":{
"original_bigg_ids":[
"HMR_4757"
]
},
"annotation":{
"bigg.reaction":[
"PPPGO2_1"
],
"sbo":"SBO:0000176"
}
},
{
"id":"BILIRED2",
"name":"Nadh biliverdin reductase",
"metabolites":{
"bilirub_c":1.0,
"biliverd_c":-1.0,
"h_c":-1.0,
"nad_c":1.0,
"nadh_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"645_AT1 or 644_AT1",
"subsystem":"Heme synthesis",
"notes":{
"original_bigg_ids":[
"HMR_4764"
]
},
"annotation":{
"bigg.reaction":[
"BILIRED2"
],
"ec-code":[
"1.3.1.24"
],
"kegg.reaction":[
"R02391"
],
"metanetx.reaction":[
"MNXR96260"
],
"rhea":[
"15797",
"15799",
"15800",
"15798"
],
"sabiork":[
"2333"
],
"sbo":"SBO:0000176",
"seed.reaction":[
"rxn01722"
]
}
},
{
"id":"HMR_4771",
"name":"HMR 4771",
"metabolites":{
"HC01609_c":-1.0,
"h2o_c":-1.0,
"hmbil_c":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Heme synthesis",
"notes":{
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"HMR_4771"
]
},
"annotation":{
"bigg.reaction":[
"HMR_4771"
],
"sbo":"SBO:0000176"
}
},
{
"id":"PROAKGOX1",
"name":"Prolyl 4-hydroxylase",
"metabolites":{
"4hpro_LT_c":1.0,
"akg_c":-1.0,
"co2_c":1.0,
"o2_c":-1.0,
"pro__L_c":-1.0,
"succ_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8974_AT1 or 5033_AT1 or 283208_AT1",
"subsystem":"Arginine and proline metabolism",
"notes":{
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"HMR_4776"
]
},
"annotation":{
"bigg.reaction":[
"PROAKGOX1"
],
"biocyc":[
"META:RXN490-3641"
],
"ec-code":[
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"1.14.11"
],
"kegg.reaction":[
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],
"metanetx.reaction":[
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],
"rhea":[
"51511",
"51508",
"51509",
"51510"
],
"sbo":"SBO:0000176",
"seed.reaction":[
"rxn00932"
]
}
},
{
"id":"HMR_4777",
"name":"L-Proline, 2-Oxoglutarate:Oxygen Oxidoreductase (4-Hydroxylating)",
"metabolites":{
"4hpro_LT_m":1.0,
"akg_m":-1.0,
"co2_m":1.0,
"o2_m":-1.0,
"pro__L_m":-1.0,
"succ_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8974_AT1 or 5033_AT1 or 283208_AT1",
"subsystem":"Arginine and proline metabolism",
"notes":{
"original_bigg_ids":[
"HMR_4777"
]
},
"annotation":{
"bigg.reaction":[
"HMR_4777"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_4782",
"name":"HMR 4782",
"metabolites":{
"1p3h5c_c":1.0,
"4hpro_LT_c":-1.0,
"h2o_c":2.0,
"h_c":-1.0,
"o2_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Arginine and proline metabolism",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"HMR_4782"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_4783",
"name":"HMR 4783",
"metabolites":{
"1p3h5c_m":1.0,
"4hpro_LT_m":-1.0,
"h2o_m":2.0,
"h_m":-1.0,
"o2_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Arginine and proline metabolism",
"notes":{
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"HMR_4783"
]
},
"annotation":{
"bigg.reaction":[
"HMR_4783"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_4831",
"name":"Lactose: (Acceptor) 3-Oxidoreductase",
"metabolites":{
"HC01446_e":1.0,
"h_e":1.0,
"lcts_e":-1.0,
"nad_e":-1.0,
"nadh_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Galactose metabolism",
"notes":{
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"HMR_4831"
]
},
"annotation":{
"bigg.reaction":[
"HMR_4831"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HMR_4955",
"name":"HMR 4955",
"metabolites":{
"dsT_antigen_c":1.0,
"dsT_antigen_g":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, golgi apparatus",
"notes":{
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"HMR_4955"
]
},
"annotation":{
"bigg.reaction":[
"HMR_4955"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HDCA6GSr",
"name":"UDP-Glucuronosyltransferase (UGT) ER (hyodeoxycholic acid)",
"metabolites":{
"M02155_r":-1.0,
"h_r":1.0,
"hdca6g_r":1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"7363_AT1 or 7364_AT1 or 10941_AT1 or 79799_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
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"HDCA6GSr"
]
},
"annotation":{
"bigg.reaction":[
"HDCA6GSr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HDCA6Gte",
"name":"Glucuronidated bile acid excretion (HDCA-6G)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"hdca6g_c":-1.0,
"hdca6g_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8647_AT1 or 8714_AT2 or 8714_AT1 or 1244_AT1 or 9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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"HDCA6Gte"
]
},
"annotation":{
"bigg.reaction":[
"HDCA6Gte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HYOCHOLabc",
"name":"Hyocholic acid ABC bile acid transporter",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"hyochol_c":-1.0,
"hyochol_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8647_AT1 or 8714_AT2 or 8714_AT1 or 1244_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HYOCHOLabc"
]
},
"annotation":{
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"HYOCHOLabc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HYOCHOLtr",
"name":"Bile salt transport (hyocholic acid)",
"metabolites":{
"hyochol_c":-1.0,
"hyochol_r":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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"HYOCHOLtr"
]
},
"annotation":{
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"HYOCHOLtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ICDCHOLabc",
"name":"Isochenodeoxycholic acid ABC bile acid transporter",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"icdchol_c":-1.0,
"icdchol_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8647_AT1 or 8714_AT2 or 8714_AT1 or 1244_AT1 or 10257_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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"ICDCHOLabc"
]
},
"annotation":{
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"ICDCHOLabc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ICDCHOLt",
"name":"Isochenodeoxycholic acid transport via bicarbonate countertransport",
"metabolites":{
"hco3_c":-1.0,
"hco3_e":1.0,
"icdchol_c":1.0,
"icdchol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28234_AT1 or 10599_AT1 or 123264_AT1 or 200931_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ICDCHOLt"
]
},
"annotation":{
"bigg.reaction":[
"ICDCHOLt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ISOCHOLabc",
"name":"Isocholic acid ABC bile acid transporter",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"isochol_c":-1.0,
"isochol_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8647_AT1 or 8714_AT2 or 8714_AT1 or 1244_AT1 or 10257_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ISOCHOLabc"
]
},
"annotation":{
"bigg.reaction":[
"ISOCHOLabc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ISOCHOLt2",
"name":"Isocholic acid transport via sodium cotransport",
"metabolites":{
"isochol_c":1.0,
"isochol_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6554_AT1 or 6555_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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"ISOCHOLt2"
]
},
"annotation":{
"bigg.reaction":[
"ISOCHOLt2"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LCA24GSc",
"name":"UDP-Glucuronosyltransferase (UGT) cytosolic (lithocholic acid)",
"metabolites":{
"HC02191_c":-1.0,
"lca24g_c":1.0,
"udp_c":1.0,
"udpglcur_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"54659_AT1 or 7364_AT1 or 10941_AT1 or 79799_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"LCA24GSc"
]
},
"annotation":{
"bigg.reaction":[
"LCA24GSc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCA24GSr",
"name":"UDP-Glucuronosyltransferase (UGT) ER (lithocholic acid)",
"metabolites":{
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"lca24g_r":1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"54659_AT1 or 7364_AT1 or 10941_AT1 or 79799_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"LCA24GSr"
]
},
"annotation":{
"bigg.reaction":[
"LCA24GSr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCA3GSc",
"name":"UDP-Glucuronosyltransferase (UGT) cytosolic (lithocholic acid)",
"metabolites":{
"HC02191_c":-1.0,
"lca3g_c":1.0,
"udp_c":1.0,
"udpglcur_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"7364_AT1 or 10941_AT1 or 79799_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"LCA3GSc"
]
},
"annotation":{
"bigg.reaction":[
"LCA3GSc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LCA3Gte",
"name":"Glucuronidated bile acid excretion (LCA-3G)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"lca3g_c":-1.0,
"lca3g_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8647_AT1 or 8714_AT2 or 8714_AT1 or 1244_AT1 or 9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LCA3Gte"
]
},
"annotation":{
"bigg.reaction":[
"LCA3Gte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LCA3Gtr",
"name":"Glucuronidated Compound Transport (LCA-3G)",
"metabolites":{
"lca3g_c":-1.0,
"lca3g_r":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LCA3Gtr"
]
},
"annotation":{
"bigg.reaction":[
"LCA3Gtr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LCA3Sabc",
"name":"Lithocholic acid 3-sulfate ABC bile acid transporter",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"lca3s_c":-1.0,
"lca3s_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8714_AT2 or 8714_AT1 or 10257_AT1 or 1244_AT1 or 9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LCA3Sabc"
]
},
"annotation":{
"bigg.reaction":[
"LCA3Sabc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LCA3St",
"name":"Lithocholic acid 3-sulfate transport via bicarbonate countertransport",
"metabolites":{
"hco3_c":-1.0,
"hco3_e":1.0,
"lca3s_c":1.0,
"lca3s_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28234_AT1 or 10599_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LCA3St"
]
},
"annotation":{
"bigg.reaction":[
"LCA3St"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LCASULT",
"name":"Lithocholic acid sulfotransferase",
"metabolites":{
"HC02191_c":-1.0,
"h_c":1.0,
"lca3s_c":1.0,
"pap_c":1.0,
"paps_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6822_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"LCASULT"
]
},
"annotation":{
"bigg.reaction":[
"LCASULT"
],
"sbo":"SBO:0000176"
}
},
{
"id":"M02155tr",
"name":"Bile salt transport (hyodeoxycholic acid)",
"metabolites":{
"M02155_c":-1.0,
"M02155_r":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"M02155tr"
]
},
"annotation":{
"bigg.reaction":[
"M02155tr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TCA3Sabc",
"name":"Taurocholic acid 3-sulfate ABC bile acid transporter",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"tca3s_c":-1.0,
"tca3s_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8714_AT2 or 8714_AT1 or 10257_AT1 or 1244_AT1 or 9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TCA3Sabc"
]
},
"annotation":{
"bigg.reaction":[
"TCA3Sabc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TCA3St",
"name":"Taurocholic acid 3-sulfate transport via bicarbonate countertransport",
"metabolites":{
"hco3_c":-1.0,
"hco3_e":1.0,
"tca3s_c":1.0,
"tca3s_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28234_AT1 or 10599_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TCA3St"
]
},
"annotation":{
"bigg.reaction":[
"TCA3St"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TCDCASULT",
"name":"Taurochenodeoxycholic acid sulfotransferase",
"metabolites":{
"h_c":1.0,
"pap_c":1.0,
"paps_c":-1.0,
"tcdca3s_c":1.0,
"tdchola_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6822_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"TCDCASULT"
]
},
"annotation":{
"bigg.reaction":[
"TCDCASULT"
],
"sbo":"SBO:0000176"
}
},
{
"id":"TDCASULT",
"name":"Taurodeoxycholic acid sulfotransferase",
"metabolites":{
"h_c":1.0,
"pap_c":1.0,
"paps_c":-1.0,
"tdca3s_c":1.0,
"tdechola_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6822_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"TDCASULT"
]
},
"annotation":{
"bigg.reaction":[
"TDCASULT"
],
"sbo":"SBO:0000176"
}
},
{
"id":"THYOCHOLt2",
"name":"Taurohyocholic acid transport via sodium cotransport",
"metabolites":{
"na1_c":2.0,
"na1_e":-2.0,
"thyochol_c":1.0,
"thyochol_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6554_AT1 or 6555_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"THYOCHOLt2"
]
},
"annotation":{
"bigg.reaction":[
"THYOCHOLt2"
],
"sbo":"SBO:0000185"
}
},
{
"id":"TUDCA3Sabc",
"name":"Tauroursodeoxycholic acid 3-sulfate ABC bile acid transporter",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"tudca3s_c":-1.0,
"tudca3s_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8714_AT2 or 8714_AT1 or 10257_AT1 or 1244_AT1 or 9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"TUDCA3Sabc"
]
},
"annotation":{
"bigg.reaction":[
"TUDCA3Sabc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"3HPVShc",
"name":"Oxidation of pravastatin to 3-hydroxy pravastatin in hepatocytes",
"metabolites":{
"3hpvs_r":1.0,
"h2o_r":1.0,
"h_r":-1.0,
"nadp_r":1.0,
"nadph_r":-1.0,
"o2_r":-1.0,
"pvs_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1576_AT1 or (4051_AT1 or 8529_AT1)",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"3HPVShc"
]
},
"annotation":{
"bigg.reaction":[
"3HPVShc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"3HPVSthc",
"name":"Uptake of 3-hydroxy pravastatin by hepatocytes",
"metabolites":{
"3hpvs_c":1.0,
"3hpvs_e":-1.0,
"hco3_c":-1.0,
"hco3_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10599_AT1 or 11309_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"3HPVSthc"
]
},
"annotation":{
"bigg.reaction":[
"3HPVSthc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"3HSMVACIDteb",
"name":"Efflux of 3-hydroxy-simvastatin-acid form into bile",
"metabolites":{
"3hsmvacid_c":-1.0,
"3hsmvacid_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"3HSMVACIDteb"
]
},
"annotation":{
"bigg.reaction":[
"3HSMVACIDteb"
],
"sbo":"SBO:0000185"
}
},
{
"id":"3ISPVStep",
"name":"3-alpha-iso-pravastatin exit into portal blood",
"metabolites":{
"3ispvs_c":-1.0,
"3ispvs_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"3ISPVStep"
]
},
"annotation":{
"bigg.reaction":[
"3ISPVStep"
],
"sbo":"SBO:0000185"
}
},
{
"id":"3ISPVSthc",
"name":"Uptake of 3-alpha-iso-pravastatin by hepatocytes",
"metabolites":{
"3ispvs_c":1.0,
"3ispvs_e":-1.0,
"hco3_c":-1.0,
"hco3_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10599_AT1 or 11309_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"3ISPVSthc"
]
},
"annotation":{
"bigg.reaction":[
"3ISPVSthc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"3MEACMPhc",
"name":"Formation of 3-methoxy-acetaminophen in hepatocytes",
"metabolites":{
"3meacmp_c":1.0,
"3ohacmp_c":-1.0,
"ahcys_c":1.0,
"amet_c":-1.0,
"h_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"3MEACMPhc"
]
},
"annotation":{
"bigg.reaction":[
"3MEACMPhc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"3OHACMPhr",
"name":"Oxidation of acetaminophen to 3-OH-acetaminophen in hepatocytes",
"metabolites":{
"3ohacmp_r":1.0,
"acmp_r":-1.0,
"h2o_r":1.0,
"h_r":-1.0,
"nadp_r":1.0,
"nadph_r":-1.0,
"o2_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1548_AT1 or 1571_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"3OHACMPhr"
]
},
"annotation":{
"bigg.reaction":[
"3OHACMPhr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"3OHACMPtev",
"name":"Efflux of 3-OH-acetaminophen into hepatic vein",
"metabolites":{
"3ohacmp_c":-1.0,
"3ohacmp_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"3OHACMPtev"
]
},
"annotation":{
"bigg.reaction":[
"3OHACMPtev"
],
"sbo":"SBO:0000185"
}
},
{
"id":"4BHGLZABCt",
"name":"Excretion of 4-beta-OH-gliclazide into bile",
"metabolites":{
"4bhglz_c":-1.0,
"4bhglz_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"4BHGLZABCt"
]
},
"annotation":{
"bigg.reaction":[
"4BHGLZABCt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"4HATVACIDOXDhc",
"name":"Oxidation of atorvastatin acid to 4-hydroxy-atorvastatin-acid in hepatocytes",
"metabolites":{
"4hatvacid_r":1.0,
"atvacid_r":-1.0,
"h2o_r":1.0,
"h_r":-1.0,
"nadp_r":1.0,
"nadph_r":-1.0,
"o2_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1576_AT1 or 1577_AT1 or 1558_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"4HATVACIDOXDhc"
]
},
"annotation":{
"bigg.reaction":[
"4HATVACIDOXDhc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"4HATVACIDteb",
"name":"Efflux of 4-hydroxy-atorvastatin-acid into bile",
"metabolites":{
"4hatvacid_c":-1.0,
"4hatvacid_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1244_AT1 or 5243_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"4HATVACIDteb"
]
},
"annotation":{
"bigg.reaction":[
"4HATVACIDteb"
],
"sbo":"SBO:0000185"
}
},
{
"id":"4HATVACIDtep",
"name":"Efflux of 4-hydroxy-atorvastatin-acid into portal blood",
"metabolites":{
"4hatvacid_c":-1.0,
"4hatvacid_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"4HATVACIDtep"
]
},
"annotation":{
"bigg.reaction":[
"4HATVACIDtep"
],
"sbo":"SBO:0000185"
}
},
{
"id":"4HATVACIDthc",
"name":"Uptake of 4-hydroxy-atorvastatin-acid into hepatocytes",
"metabolites":{
"4hatvacid_c":1.0,
"4hatvacid_e":-1.0,
"hco3_c":-1.0,
"hco3_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10599_AT1 or 11309_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"4HATVACIDthc"
]
},
"annotation":{
"bigg.reaction":[
"4HATVACIDthc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"4HATVLAChc",
"name":"Conversion of 4-hydroxy-atorvastatin-lactone to its acid form in hepatocytes",
"metabolites":{
"4hatvacid_c":-1.0,
"4hatvlac_c":1.0,
"amp_c":1.0,
"atp_c":-1.0,
"ppi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"4HATVLAChc"
]
},
"annotation":{
"bigg.reaction":[
"4HATVLAChc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"4HATVLACteb",
"name":"Efflux of 4-hydroxy-atorvastatin-lactone into bile",
"metabolites":{
"4hatvlac_c":-1.0,
"4hatvlac_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1244_AT1 or 5243_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"4HATVLACteb"
]
},
"annotation":{
"bigg.reaction":[
"4HATVLACteb"
],
"sbo":"SBO:0000185"
}
},
{
"id":"4HATVLACtep",
"name":"Efflux of 4-hydroxy-atorvastatin-lactone into portal blood",
"metabolites":{
"4hatvlac_c":-1.0,
"4hatvlac_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"4HATVLACtep"
]
},
"annotation":{
"bigg.reaction":[
"4HATVLACtep"
],
"sbo":"SBO:0000185"
}
},
{
"id":"4HATVLACthc",
"name":"Uptake of 4-hydroxy-atorvastatin-lactone into hepatocytes",
"metabolites":{
"4hatvlac_c":1.0,
"4hatvlac_e":-1.0,
"hco3_c":-1.0,
"hco3_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10599_AT1 or 11309_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"4HATVLACthc"
]
},
"annotation":{
"bigg.reaction":[
"4HATVLACthc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"4HMDGLUCtev",
"name":"Efflux of 4-OH-midazolam-glucuronide into hepatic vein",
"metabolites":{
"4hmdgluc_c":-1.0,
"4hmdgluc_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"4HMDGLUCtev"
]
},
"annotation":{
"bigg.reaction":[
"4HMDGLUCtev"
],
"sbo":"SBO:0000185"
}
},
{
"id":"4HMDZGLUChr",
"name":"Glucuronidation of 4-OH-midazolam in enterocytes",
"metabolites":{
"4hmdgluc_r":1.0,
"4ohmdz_r":-1.0,
"h_r":1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"54657_AT1 or 7363_AT1 or 7364_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"4HMDZGLUChr"
]
},
"annotation":{
"bigg.reaction":[
"4HMDZGLUChr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"4OHMDZhr",
"name":"Oxidation of midazolam to 4-OH-midazolam in hepatocytes",
"metabolites":{
"4ohmdz_r":1.0,
"h2o_r":1.0,
"h_r":-1.0,
"mdz_r":-1.0,
"nadp_r":1.0,
"nadph_r":-1.0,
"o2_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1576_AT1 or 1577_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"4OHMDZhr"
]
},
"annotation":{
"bigg.reaction":[
"4OHMDZhr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"4OHMDZtev",
"name":"Efflux of 4-OH-midazolam into hepatic vein",
"metabolites":{
"4ohmdz_c":-1.0,
"4ohmdz_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"4OHMDZtev"
]
},
"annotation":{
"bigg.reaction":[
"4OHMDZtev"
],
"sbo":"SBO:0000185"
}
},
{
"id":"56DHPVSteb",
"name":"Efflux of 3-keto-5,6,-dihydroxy-pravastatin into bile",
"metabolites":{
"56dhpvs_c":-1.0,
"56dhpvs_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
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},
"annotation":{
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}
},
{
"id":"56EPPVShc",
"name":"Oxidation of 3-alpha-iso-pravastatin to 5,6-epoxy-3-alpha-iso-pravastatin in hepatocytes",
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"56eppvs_r":1.0,
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{
"id":"56EPPVSteb",
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}
},
{
"id":"5OHFVSGLUtev",
"name":"Exit of 5-hydroxy-fluvastatin-glucuronide into hepatic vein for excretion in urine",
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}
},
{
"id":"6AHGLZtev",
"name":"Excretion of 6-alpha-OH-gliclazide into hepatic vein",
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}
},
{
"id":"6BHGLZGLCABCt",
"name":"Excretion of 6-beta-OH-gliclazide-glucuronide into bile",
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}
},
{
"id":"6BHGLZGLChr",
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}
},
{
"id":"6BHGLZGLCtev",
"name":"Excretion of 6-beta-OH-gliclazide-glucuronide into hepatic vein",
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},
{
"id":"6BHGLZhr",
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{
"id":"6BHGLZtev",
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},
{
"id":"6CSMVhep",
"name":"Oxidation of 6-exomethylene simvastatin to 6-beta-hydroxy carboxy simvastatin lactone form",
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},
{
"id":"6EPSteb",
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{
"id":"6EPVStep",
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{
"id":"6EPVSthc",
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}
},
{
"id":"6HMSMVACIDteb",
"name":"Efflux of 6-beta-hydroxy-methyl-simvastatin-acid into bile",
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{
"id":"6HSMVACIDteb",
"name":"Efflux of 6-beta-hydroxy simvastatin acid into bile",
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{
"id":"6HSMVhep",
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{
"id":"6MELVACtbc",
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{
"id":"ATVLAChr",
"name":"Spontaneous conversion of atorvastain lactone ether glucuronide (G3) to atorvastatin-lactone in hepatocytes",
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{
"id":"ATVLACtu",
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{
"id":"Am19CStev",
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{
"id":"CARIBUP_SGLUhep",
"name":"Glucuronidation of S-carboxy ibuprofen",
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},
{
"id":"CARIBUP_Sthv",
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{
"id":"CRGLZtev",
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},
{
"id":"CRVS1tev",
"name":"Exit of cerivastatin-M1 into hepatic vein",
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{
"id":"CRVSATPtu",
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{
"id":"CRVSM1SPhc",
"name":"De-lactonization of cerivastatin-M22 to cerivastatin-M1 in hepatocytes",
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{
"id":"CRVSM1hr",
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{
"id":"CRVSM1teb",
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{
"id":"CRVSM23teb",
"name":"Efflux of cerivastatin-M23 into bile",
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{
"id":"CRVSM24tev",
"name":"Exit of cerivastatin-M24 into hepatic vein",
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{
"id":"CRVStu",
"name":"Cerivastatin uptake by enterocytes",
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},
{
"id":"CRVSthc",
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},
{
"id":"CSASULPhc",
"name":"Conjugation of cyclosporine with sulphate for excretion in hepatocytes",
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{
"id":"CSASULPteb",
"name":"Efflux of cyclosporine-sulphate into bile",
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},
{
"id":"CSASULPtev",
"name":"Efflux of cyclosporine-sulphate into hepatic vein",
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},
{
"id":"CSAtu",
"name":"Efflux of cyclosporine by P-gp from the enterocytes into lumen",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"csa_c":-1.0,
"csa_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5243_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"CSAtu"
]
},
"annotation":{
"bigg.reaction":[
"CSAtu"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CVM23GLUChc",
"name":"Glucuronidation of cerivastatin-M23",
"metabolites":{
"crvsm23_r":-1.0,
"cvm23gluc_r":1.0,
"h_r":1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"54658_AT1 or 54659_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"CVM23GLUChc"
]
},
"annotation":{
"bigg.reaction":[
"CVM23GLUChc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"CYSACMPAChc",
"name":"Acetylation of cysteine-conjugate-acetaminophen in hepatocytes",
"metabolites":{
"accoa_c":-1.0,
"coa_c":1.0,
"cysacmp_c":-1.0,
"h_c":1.0,
"meracmp_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"CYSACMPAChc"
]
},
"annotation":{
"bigg.reaction":[
"CYSACMPAChc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"DESFVShc",
"name":"Oxidation of fluvastatin to N-desisopropyl-fluvastatin in hepatocytes",
"metabolites":{
"ahcys_r":-3.0,
"amet_r":3.0,
"desfvs_r":1.0,
"fvs_r":-1.0,
"h2o2_r":1.0,
"h_r":-4.0,
"nadp_r":1.0,
"nadph_r":-1.0,
"o2_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1559_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"DESFVShc"
]
},
"annotation":{
"bigg.reaction":[
"DESFVShc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"DHGLZtev",
"name":"Excretion of dehydro-gliclazide into hepatic vein",
"metabolites":{
"dhglz_c":-1.0,
"dhglz_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"DHGLZtev"
]
},
"annotation":{
"bigg.reaction":[
"DHGLZtev"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DSPVShc",
"name":"Oxidation of pravastatin to desacyl pravastatin in hepatocytes",
"metabolites":{
"ahcys_r":-5.0,
"amet_r":5.0,
"dspvs_r":1.0,
"h2o_r":2.0,
"h_r":-6.0,
"nadp_r":1.0,
"nadph_r":-1.0,
"pvs_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1576_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"DSPVShc"
]
},
"annotation":{
"bigg.reaction":[
"DSPVShc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"DSPVStev",
"name":"Exit of desacyl dehydro-pravastatin into hepatic vein",
"metabolites":{
"dspvs_c":-1.0,
"dspvs_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"DSPVStev"
]
},
"annotation":{
"bigg.reaction":[
"DSPVStev"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EPOXTAChr",
"name":"Formation of epoxy derivative of tacrolimus in hepatocytes",
"metabolites":{
"ahcys_r":-3.0,
"amet_r":3.0,
"epoxtac_r":1.0,
"h_r":-3.0,
"o2_r":-1.0,
"tacr_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"EPOXTAChr"
]
},
"annotation":{
"bigg.reaction":[
"EPOXTAChr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_12htacr_e",
"name":"Exchange reaction for 12-hydroxy tacrolimus in intestinal lumen",
"metabolites":{
"12htacr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_12htacr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_12htacr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_1331tacr_e",
"name":"Exchange reaction for 13,31-O-Didesmethyl-tacrolimus in hepatic vein",
"metabolites":{
"1331tacr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_1331tacr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_1331tacr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_14hmdz_e",
"name":"Exchange reaction for 1,4-Dihydroxy-midazolam in hepatic vein",
"metabolites":{
"14hmdz_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_14hmdz[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_14hmdz_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_1531tacr_e",
"name":"Exchange reaction for 15, 31-O-Didesmethyl-tacrolimus in hepatic vein",
"metabolites":{
"1531tacr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_1531tacr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_1531tacr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_15dmt_e",
"name":"Exchange reaction for 15-O-desmethyl tacrolimus in intestinal lumen",
"metabolites":{
"15dmt_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_15dmt[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_15dmt_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_1hibup__S_e",
"name":"Exchange reaction for 1-hydroxy-ibuprofen in hepatic vein",
"metabolites":{
"1hibup__S_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_1hibup_S[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_1hibup__S_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_1hmdgluc_e",
"name":"Exchange reaction for 1-OH-midazolam-glucuronide in portal blood",
"metabolites":{
"1hmdgluc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_1hmdgluc[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_1hmdgluc_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_1ohmdz_e",
"name":"Exchange reaction for 1-OH-midazolam in portal blood",
"metabolites":{
"1ohmdz_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_1ohmdz[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_1ohmdz_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_2hatvacid_e",
"name":"Exchange reaction for 2-hydroxy-atorvastatin-acid in portal blood",
"metabolites":{
"2hatvacid_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_2hatvacid[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_2hatvacid_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_2hatvlac_e",
"name":"Exchange reaction for 2-hydroxy-atorvastatin-lactone in portal blood",
"metabolites":{
"2hatvlac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_2hatvlac[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_2hatvlac_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_2hatvlacgluc_e",
"name":"Exchange reaction for 2-hydroxy-atorvastatin-lactone-glucuronide in bile",
"metabolites":{
"2hatvlacgluc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_2hatvlacgluc[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_2hatvlacgluc_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_2hibup__R_e",
"name":"Exchange reaction for R-2-hydroxy-ibuprofen in hepatic vein",
"metabolites":{
"2hibup__R_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_2hibup_R[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_2hibup__R_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_2hibup__S_e",
"name":"Exchange reaction for S-2-hydroxy-ibuprofen in hepatic vein",
"metabolites":{
"2hibup__S_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_2hibup_S[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_2hibup__S_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_35dhpvs_e",
"name":"Exchange reaction for 3-alpha-5-beta-dihydroxy pravastatin in portal blood",
"metabolites":{
"35dhpvs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_35dhpvs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_35dhpvs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_3hibup__S_e",
"name":"Exchange reaction for S-3-hydroxy-ibuprofen in hepatic vein",
"metabolites":{
"3hibup__S_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_3hibup_S[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_3hibup__S_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_3hibupglu__S_e",
"name":"Exchange reaction for 3-hydroxy S-ibuprofen-glucuronide in hepatic vein",
"metabolites":{
"3hibupglu__S_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_3hibupglu_S[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_3hibupglu__S_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_lstnm4_e",
"name":"Exchange reaction for Losartan-M4 (glucuronide derivative) in hepatic vein",
"metabolites":{
"lstnm4_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lstnm4[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lstnm4_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_lstnm5_e",
"name":"Exchange reaction for Losartan-M5 in hepatic vein",
"metabolites":{
"lstnm5_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lstnm5[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lstnm5_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_lstnm7_e",
"name":"Exchange reaction for Losartan-N2-glucuronide / Losartan-M7 in portal blood",
"metabolites":{
"lstnm7_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lstnm7[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lstnm7_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"HMR_4964",
"name":"HMR 4964",
"metabolites":{
"cit_c":-1.0,
"cit_m":1.0,
"h_c":-1.0,
"h_m":1.0,
"mal__L_c":1.0,
"mal__L_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6576_AT1",
"subsystem":"Transport, mitochondrial",
"notes":{
"original_bigg_ids":[
"HMR_4964"
]
},
"annotation":{
"bigg.reaction":[
"HMR_4964"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_5249",
"name":"HMR 5249",
"metabolites":{
"sphmyln_hs_l":-1.0,
"sphmyln_hs_r":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, lysosomal",
"notes":{
"original_bigg_ids":[
"HMR_5249"
]
},
"annotation":{
"bigg.reaction":[
"HMR_5249"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_5409",
"name":"HMR 5409",
"metabolites":{
"h2co3_e":-1.0,
"h_e":1.0,
"hco3_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Miscellaneous",
"notes":{
"original_bigg_ids":[
"HMR_5409"
]
},
"annotation":{
"bigg.reaction":[
"HMR_5409"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FE2utm",
"name":"Iron  II  uptake  mitochondrial ",
"metabolites":{
"fe2_c":-1.0,
"fe2_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51312_AT1 or 81894_AT1",
"subsystem":"Transport, mitochondrial",
"notes":{
"original_bigg_ids":[
"HMR_5420"
]
},
"annotation":{
"bigg.reaction":[
"FE2utm"
],
"biocyc":[
"META:TRANS-RXN-8"
],
"metanetx.reaction":[
"MNXR99505"
],
"rhea":[
"28488",
"28487",
"28489",
"28486"
],
"sbo":"SBO:0000185",
"seed.reaction":[
"rxn08476",
"rxn08475",
"rxn13286",
"rxn10963"
]
}
},
{
"id":"HMR_6359",
"name":"HMR 6359",
"metabolites":{
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"dgsn_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"64078_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_6359"
]
},
"annotation":{
"bigg.reaction":[
"HMR_6359"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_6363",
"name":"HMR 6363",
"metabolites":{
"dad_2_c":1.0,
"dad_2_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"64078_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_6363"
]
},
"annotation":{
"bigg.reaction":[
"HMR_6363"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_6364",
"name":"HMR 6364",
"metabolites":{
"dcyt_c":1.0,
"dcyt_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"64078_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HMR_6364"
]
},
"annotation":{
"bigg.reaction":[
"HMR_6364"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_6397",
"name":"Dihydrolipoyl Dehydrogenase",
"metabolites":{
"dhlam_c":1.0,
"h_c":-1.0,
"lipoate_c":-1.0,
"nad_c":1.0,
"nadh_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1738_AT1",
"subsystem":"Lipoate metabolism",
"notes":{
"original_bigg_ids":[
"HMR_6397"
]
},
"annotation":{
"bigg.reaction":[
"HMR_6397"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FADRx2",
"name":"FAD reductase",
"metabolites":{
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"fadh2_c":1.0,
"h_c":-1.0,
"nadp_c":1.0,
"nadph_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"645_AT1",
"subsystem":"Vitamin B2 metabolism",
"notes":{
"original_bigg_ids":[
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]
},
"annotation":{
"bigg.reaction":[
"FADRx2"
],
"ec-code":[
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"1.5.1.30"
],
"kegg.reaction":[
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],
"metanetx.reaction":[
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],
"rhea":[
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"30151",
"30153",
"30152"
],
"sabiork":[
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],
"sbo":"SBO:0000176",
"seed.reaction":[
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]
}
},
{
"id":"CLHCOtex",
"name":"Chloride transport via bicarbonate countertransport",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"hco3_c":-2.0,
"hco3_e":2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"116369_AT1 or 115111_AT1 or 1836_AT1 or 115019_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"CLHCOtex"
],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185"
}
},
{
"id":"HMR_6550",
"name":"Phosphatidylinositol-3, 4, 5-Trisphosphate 3-Phosphatase",
"metabolites":{
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"pail34p_hs_c":-1.0,
"pail4p_hs_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"93492_AT1 or 5728_AT1",
"subsystem":"Inositol phosphate metabolism",
"notes":{
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]
},
"annotation":{
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],
"sbo":"SBO:0000176"
}
},
{
"id":"MITKP",
"name":"D-myo-Inositol 1,3,4,5-tetrakisphosphate 3-phosphohydrolase",
"metabolites":{
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"mi1345p_c":-1.0,
"mi145p_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9562_AT1",
"subsystem":"Inositol phosphate metabolism",
"notes":{
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]
},
"annotation":{
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],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"ITKPK",
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]
},
"annotation":{
"bigg.reaction":[
"EX_7dhchol_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_cdca3g_e",
"name":"EX cdca3g(e)",
"metabolites":{
"cdca3g_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_cdca3g[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_cdca3g_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_dca24g_e",
"name":"EX dca24g(e)",
"metabolites":{
"dca24g_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_dca24g[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_dca24g_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_dca3g_e",
"name":"EX dca3g(e)",
"metabolites":{
"dca3g_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_dca3g[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_dca3g_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_gca3s_e",
"name":"EX gca3s(e)",
"metabolites":{
"gca3s_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_gca3s[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_gca3s_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_gcdca3s_e",
"name":"EX gcdca3s(e)",
"metabolites":{
"gcdca3s_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_gcdca3s[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_gcdca3s_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_gdca3s_e",
"name":"EX gdca3s(e)",
"metabolites":{
"gdca3s_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_gdca3s[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_gdca3s_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_gudca3s_e",
"name":"EX gudca3s(e)",
"metabolites":{
"gudca3s_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_gudca3s[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_gudca3s_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hca24g_e",
"name":"EX hca24g(e)",
"metabolites":{
"hca24g_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hca24g[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hca24g_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hca6g_e",
"name":"EX hca6g(e)",
"metabolites":{
"hca6g_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hca6g[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hca6g_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hyochol_e",
"name":"EX hyochol(e)",
"metabolites":{
"hyochol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hyochol[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hyochol_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_isochol_e",
"name":"EX isochol(e)",
"metabolites":{
"isochol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_isochol[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_isochol_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_lca24g_e",
"name":"EX lca24g(e)",
"metabolites":{
"lca24g_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lca24g[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lca24g_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_lca3s_e",
"name":"EX lca3s(e)",
"metabolites":{
"lca3s_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lca3s[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lca3s_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tcdca3s_e",
"name":"EX tcdca3s(e)",
"metabolites":{
"tcdca3s_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tcdca3s[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tcdca3s_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_uchol_e",
"name":"EX uchol(e)",
"metabolites":{
"uchol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_uchol[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_uchol_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_udca3s_e",
"name":"EX udca3s(e)",
"metabolites":{
"udca3s_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_udca3s[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_udca3s_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"GCA3Sabc",
"name":"Glycocholic acid 3-sulfate ABC bile acid transporter",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"gca3s_c":-1.0,
"gca3s_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8714_AT2 or 8714_AT1 or 10257_AT1 or 1244_AT1 or 9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GCA3Sabc"
]
},
"annotation":{
"bigg.reaction":[
"GCA3Sabc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GCDCA3St",
"name":"Glycochenodeoxycholic acid 3-sulfate via bicarbonate countertransport",
"metabolites":{
"gcdca3s_c":1.0,
"gcdca3s_e":-1.0,
"hco3_c":-1.0,
"hco3_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28234_AT1 or 10599_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GCDCA3St"
]
},
"annotation":{
"bigg.reaction":[
"GCDCA3St"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GCDCASULT",
"name":"Glycochenodeoxycholic acid sulfotransferase",
"metabolites":{
"dgchol_c":-1.0,
"gcdca3s_c":1.0,
"h_c":1.0,
"pap_c":1.0,
"paps_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6822_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"GCDCASULT"
]
},
"annotation":{
"bigg.reaction":[
"GCDCASULT"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GDCA3Sabc",
"name":"Glycodeoxycholic acid 3-sulfate ABC bile acid transporter",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"gdca3s_c":-1.0,
"gdca3s_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8714_AT2 or 8714_AT1 or 10257_AT1 or 1244_AT1 or 9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GDCA3Sabc"
]
},
"annotation":{
"bigg.reaction":[
"GDCA3Sabc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GDCASULT",
"name":"Glycodeoxycholic acid sulfotransferase",
"metabolites":{
"M01989_c":-1.0,
"gdca3s_c":1.0,
"h_c":1.0,
"pap_c":1.0,
"paps_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6822_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"GDCASULT"
]
},
"annotation":{
"bigg.reaction":[
"GDCASULT"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GUDCA3Sabc",
"name":"Glycoursodeoxycholic acid 3-sulfate ABC bile acid transporter",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"gudca3s_c":-1.0,
"gudca3s_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8714_AT2 or 8714_AT1 or 10257_AT1 or 1244_AT1 or 9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GUDCA3Sabc"
]
},
"annotation":{
"bigg.reaction":[
"GUDCA3Sabc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GUDCA3St",
"name":"Glycoursodeoxycholic acid 3-sulfate via bicarbonate countertransport",
"metabolites":{
"gudca3s_c":1.0,
"gudca3s_e":-1.0,
"hco3_c":-1.0,
"hco3_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"28234_AT1 or 10599_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GUDCA3St"
]
},
"annotation":{
"bigg.reaction":[
"GUDCA3St"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HCA24GSc",
"name":"UDP-Glucuronosyltransferase (UGT) cytosolic (hyocholic acid)",
"metabolites":{
"hca24g_c":1.0,
"hyochol_c":-1.0,
"udp_c":1.0,
"udpglcur_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"7364_AT1 or 10941_AT1 or 79799_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"HCA24GSc"
]
},
"annotation":{
"bigg.reaction":[
"HCA24GSc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HCA24Gte",
"name":"Glucuronidated bile acid excretion (HCA-24G)",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"hca24g_c":-1.0,
"hca24g_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8714_AT3 or 8647_AT1 or 8714_AT2 or 8714_AT1 or 1244_AT1 or 9429_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"HCA24Gte"
]
},
"annotation":{
"bigg.reaction":[
"HCA24Gte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"HCA6GSc",
"name":"UDP-Glucuronosyltransferase (UGT) cytosolic (hyocholic acid)",
"metabolites":{
"hca6g_c":1.0,
"hyochol_c":-1.0,
"udp_c":1.0,
"udpglcur_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"7363_AT1 or 7364_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"HCA6GSc"
]
},
"annotation":{
"bigg.reaction":[
"HCA6GSc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"HCA6GSr",
"name":"UDP-Glucuronosyltransferase (UGT) ER (hyocholic acid)",
"metabolites":{
"hca6g_r":1.0,
"hyochol_r":-1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"7363_AT1 or 7364_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"HCA6GSr"
]
},
"annotation":{
"bigg.reaction":[
"HCA6GSr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"UCHOLt2",
"name":"Ursocholic acid transport via sodium cotransport",
"metabolites":{
"na1_c":2.0,
"na1_e":-2.0,
"uchol_c":1.0,
"uchol_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6554_AT1 or 6555_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"UCHOLt2"
]
},
"annotation":{
"bigg.reaction":[
"UCHOLt2"
],
"sbo":"SBO:0000185"
}
},
{
"id":"UDCASULT",
"name":"Ursodeoxycholic acid sulfotransferase",
"metabolites":{
"HC02194_c":-1.0,
"h_c":1.0,
"pap_c":1.0,
"paps_c":-1.0,
"udca3s_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6822_AT1",
"subsystem":"Bile acid synthesis",
"notes":{
"original_bigg_ids":[
"UDCASULT"
]
},
"annotation":{
"bigg.reaction":[
"UDCASULT"
],
"sbo":"SBO:0000176"
}
},
{
"id":"UDCHOLt2",
"name":"Ursodeoxycholic acid transport via sodium cotransport",
"metabolites":{
"HC02194_c":1.0,
"HC02194_e":-1.0,
"na1_c":2.0,
"na1_e":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6554_AT1 or 6555_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"UDCHOLt2"
]
},
"annotation":{
"bigg.reaction":[
"UDCHOLt2"
],
"sbo":"SBO:0000185"
}
},
{
"id":"12HTACRhr",
"name":"Oxidation of tacrolimus in hepatocytes",
"metabolites":{
"12htacr_r":1.0,
"h2o_r":1.0,
"h_r":-1.0,
"nadp_r":1.0,
"nadph_r":-1.0,
"o2_r":-1.0,
"tacr_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1576_AT1 or 1577_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"12HTACRhr"
]
},
"annotation":{
"bigg.reaction":[
"12HTACRhr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"12HTACRtu",
"name":"Efflux of 12-hydroxy tacrolimus into intestinal lumen by ABC transporter",
"metabolites":{
"12htacr_c":-1.0,
"12htacr_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"12HTACRtu"
]
},
"annotation":{
"bigg.reaction":[
"12HTACRtu"
],
"sbo":"SBO:0000185"
}
},
{
"id":"1331TACRtev",
"name":"Exit of 13,31-O-Didesmethyl-tacrolimus into hepatic vein",
"metabolites":{
"1331tacr_c":-1.0,
"1331tacr_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"1331TACRtev"
]
},
"annotation":{
"bigg.reaction":[
"1331TACRtev"
],
"sbo":"SBO:0000185"
}
},
{
"id":"14MDZtev",
"name":"Efflux of 1,4-Dihydroxy-midazolam into hepatic vein",
"metabolites":{
"14hmdz_c":-1.0,
"14hmdz_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"14MDZtev"
]
},
"annotation":{
"bigg.reaction":[
"14MDZtev"
],
"sbo":"SBO:0000185"
}
},
{
"id":"1513TACRtep",
"name":"Exit of 13,15-O-didesmethyl tacrolimus into portal blood",
"metabolites":{
"1513tacr_c":-1.0,
"1513tacr_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"1513TACRtep"
]
},
"annotation":{
"bigg.reaction":[
"1513TACRtep"
],
"sbo":"SBO:0000185"
}
},
{
"id":"1531TACRhr",
"name":"Demethylation of 15-O-desmethyl tacrolimus to 15, 31-O-Didesmethyl-tacrolimus in hepatocytes",
"metabolites":{
"1531tacr_r":1.0,
"15dmt_r":-1.0,
"ahcys_r":-1.0,
"amet_r":1.0,
"h_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"1531TACRhr"
]
},
"annotation":{
"bigg.reaction":[
"1531TACRhr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"1531TACRteb",
"name":"Efflux of 15, 31-O-Didesmethyl-tacrolimus into bile",
"metabolites":{
"1531tacr_c":-1.0,
"1531tacr_e":1.0,
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"1531TACRteb"
]
},
"annotation":{
"bigg.reaction":[
"1531TACRteb"
],
"sbo":"SBO:0000185"
}
},
{
"id":"15DMTtep",
"name":"Exit of 15-O-desmethyl tacrolimus into portal blood",
"metabolites":{
"15dmt_c":-1.0,
"15dmt_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"15DMTtep"
]
},
"annotation":{
"bigg.reaction":[
"15DMTtep"
],
"sbo":"SBO:0000185"
}
},
{
"id":"1HIBUPGLUC_Sthv",
"name":"Release of 1-hydroxy S-ibuprofen-glucuronide into hepatic vein",
"metabolites":{
"1hibupglu__S_c":-1.0,
"1hibupglu__S_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"1HIBUPGLUC_Sthv"
]
},
"annotation":{
"bigg.reaction":[
"1HIBUPGLUC_Sthv"
],
"sbo":"SBO:0000185"
}
},
{
"id":"1HIBUP_SGLUhep",
"name":"Glucuronidation of 1-hydroxy ibuprofen",
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},
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},
{
"id":"1HMDZGLUChc",
"name":"Uptake of 1-OH-midazolam-glucuronide into hepatocytes",
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},
{
"id":"1OHMDZhr",
"name":"Oxidation of midazolam to 1-OH-midazolam in hepatocytes",
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}
},
{
"id":"1OHMDZtep",
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},
{
"id":"2HATVLAChc",
"name":"Conversion of 2-hydroxy-atorvastatin-acid to its lactone form in hepatocytes",
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},
{
"id":"2HATVACIDGLUChr",
"name":"Glucuronidation of 2-hydroxy-atorvastatin-acid in hepatocytes",
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},
{
"id":"2HATVACIDGLUCteb",
"name":"Efflux of 2-hydroxy-atorvastatin-acyl-glucuronide into bile",
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},
{
"id":"2HATVACIDhc",
"name":"Conversion of 2-hydroxy-atorvastatin-lactone to its acid form in hepatocytes",
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},
{
"id":"2HATVACIDteb",
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},
{
"id":"2HATVACIDtep",
"name":"Efflux of 2-hydroxy-atorvastatin-acid into portal blood",
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{
"id":"2HATVLACteb",
"name":"Efflux of 2-hydroxy-atorvastatin-lactone into bile",
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},
{
"id":"2HATVLACtep",
"name":"Efflux of 2-hydroxy-atorvastatin-lactone into portal blood",
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},
{
"id":"2HIBUP_Rthv",
"name":"Release of R-2-hydroxy-ibuprofen into hepatic vein",
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},
{
"id":"2HIBUP_SGLUhep",
"name":"Glucuronidation of S-2-hydroxy ibuprofen",
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{
"id":"2HIBUP_Sthv",
"name":"Release of S-2-hydroxy-ibuprofen into hepatic vein",
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},
{
"id":"35DSMVhep",
"name":"Formation of 3,5-dihydrodoil simvastatin",
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},
{
"id":"35DSMVteb",
"name":"Efflux of 3,5-dihydrodiol-simvastatin-lactone form into bile",
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{
"id":"3HIBUP_SGLUhep",
"name":"Glucuronidation of S-3-hydroxy ibuprofen",
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{
"id":"3HLVSTAChep",
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},
{
"id":"3HPVSTETCOAhcm",
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{
"id":"3HPVSTETCOAhcx",
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{
"id":"6MSMVhep",
"name":"Oxidation of simvastatin to 6-exomethylene lactone form",
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{
"id":"6OHFVSGLUhc",
"name":"Glucuronidation of 6-hydroxy-fluvastatin",
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{
"id":"6OHFVSteb",
"name":"Efflux of 6-hydroxy-fluvastatin into bile for excretion into faeces",
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},
{
"id":"7AHGLZABCt",
"name":"Excretion of 7-alpha-OH-gliclazide into bile",
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},
{
"id":"7AHGLZhr",
"name":"Oxidation of gliclazide to 7-alpha-OH-gliclazide in hepatocytes",
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{
"id":"7BHGLZhr",
"name":"Oxidation of gliclazide to 7-beta-OH-gliclazide in hepatocytes",
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{
"id":"7BHGLZtev",
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},
{
"id":"7HPVShc",
"name":"Oxidation of 3-alpha-iso-pravastatin to 7-hydroxy-3-alpha-iso-pravastatin in hepatocytes",
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},
{
"id":"ACMPGLUTtep",
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{
"id":"ACMPGLUtep",
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},
{
"id":"ACMPShc",
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{
"id":"ACMPdt",
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{
"id":"ACMPthc",
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"ACMPthc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_mdz_e",
"name":"Exchange reaction for midazolam in intestinal lumen",
"metabolites":{
"mdz_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_mdz[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_mdz_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_mdzglc_e",
"name":"Exchange reaction for midazolam-glucuronide in hepatic vein",
"metabolites":{
"mdzglc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_mdzglc[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_mdzglc_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_mhglz_e",
"name":"Exchange reaction for Methyl-hydroxy-gliclazide in hepatic vein",
"metabolites":{
"mhglz_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_mhglz[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_mhglz_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_ndersv_e",
"name":"Exchange reaction for N-desmethyl-rosuvastatin in bile",
"metabolites":{
"ndersv_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ndersv[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ndersv_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_nfd_e",
"name":"Exchange reaction for nifedipine in intestinal lumen",
"metabolites":{
"nfd_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_nfd[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_nfd_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_nfdlac_e",
"name":"Exchange reaction of lactone form of nifedipine in portal vein",
"metabolites":{
"nfdlac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_nfdlac[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_nfdlac_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_nfdnpy_e",
"name":"Exchange reaction of nitropyridine metabolite of nifedipine in portal vein",
"metabolites":{
"nfdnpy_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_nfdnpy[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_nfdnpy_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_nfdoh_e",
"name":"Exchange reaction of hydroxy metabolite of nifedipine in portal vein",
"metabolites":{
"nfdoh_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_nfdoh[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_nfdoh_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_oxy1rb_e",
"name":"Exchange reaction for oxypurinol-1-riboside in hepatic vein",
"metabolites":{
"oxy1rb_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_oxyp1rb[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_oxy1rb_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_oxy7rb_e",
"name":"Exchange reaction for oxypurinol-7-riboside in hepatic vein",
"metabolites":{
"oxy7rb_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_oxyp7rb[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_oxy7rb_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_profvs_e",
"name":"Exchnage reaction for des-isoproylpropionic-acid-fluvastatin in hepatic vein",
"metabolites":{
"profvs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_profvs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_profvs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_ptvst_e",
"name":"Exchange reaction for pitavastatin in intestinal lumen",
"metabolites":{
"ptvst_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ptvst[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ptvst_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_ptvstlac_e",
"name":"Exchange reaction for pravastatin-lactone in hepatic vein",
"metabolites":{
"ptvstlac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ptvstlac[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ptvstlac_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_rsv_e",
"name":"Exchange reaction for rosuvastatin in intestinal lumen",
"metabolites":{
"rsv_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_rsv[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_rsv_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_rsvlac_e",
"name":"Exchange reaction for rosuvastatin-5S-lactone in bile",
"metabolites":{
"rsvlac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_rsvlac[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_rsvlac_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_s3meacmp_e",
"name":"Exchange reaction for sulphate-conjugate-3-methoxy-acetaminophen in hepatic vein",
"metabolites":{
"s3meacmp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_s3meacmp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_s3meacmp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_stacmp_e",
"name":"Exchange reaction for sulphate-thiomethyl-acetaminophen conjugate in hepatic vein",
"metabolites":{
"stacmp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_stacmp[ev]"
]
},
"annotation":{
"bigg.reaction":[
"EX_stacmp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tauribup__S_e",
"name":"Exchange reaction for taurine conjugate of S-ibuprofen in hepatic vein",
"metabolites":{
"tauribup__S_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tauribup_S[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tauribup__S_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tlacfvs_e",
"name":"Exchange reaction for trans-lactone-fluvastatin in hepatic vein",
"metabolites":{
"tlacfvs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tlacfvs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tlacfvs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tmdm5_e",
"name":"Exchange reaction for Torasemide-M5 in hepatic vein",
"metabolites":{
"tmdm5_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tmdm5[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tmdm5_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tsacmgluc_e",
"name":"Exchange reaction for thiomethyl-sulphoxide-acetaminophen-glucuronide in hepatic vein",
"metabolites":{
"tsacmgluc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tsacmgluc[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tsacmgluc_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_tsacmsul_e",
"name":"Exchange reaction for thiomethyl-sulphoxide-acetaminophen-sulphate in hepatic vein",
"metabolites":{
"tsacmsul_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_tsacmsul[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_tsacmsul_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"FVSteb",
"name":"Efflux of fluvastatin into bile for excretion into faeces",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"fvs_c":-1.0,
"fvs_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"FVSteb"
]
},
"annotation":{
"bigg.reaction":[
"FVSteb"
],
"sbo":"SBO:0000185"
}
},
{
"id":"FVStu",
"name":"Uptake of fluvastatin by enterocytes",
"metabolites":{
"fvs_c":1.0,
"fvs_e":-1.0,
"hco3_c":-1.0,
"hco3_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11309_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"FVStu"
]
},
"annotation":{
"bigg.reaction":[
"FVStu"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLC3MEACPhr",
"name":"Glucuronidation of 3-methoxy-acetaminophen in hepatocytes",
"metabolites":{
"3meacmp_r":-1.0,
"ahcys_r":-1.0,
"amet_r":1.0,
"glc3meacp_r":1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"54600_AT1 or 54578_AT1 or 54658_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"GLC3MEACPhr"
]
},
"annotation":{
"bigg.reaction":[
"GLC3MEACPhr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GLC3MEACPtev",
"name":"Efflux of glucuronide-conjugate of 3-methoxy-acetaminophen into hepatic vein",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"glc3meacp_c":-1.0,
"glc3meacp_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"GLC3MEACPtev"
]
},
"annotation":{
"bigg.reaction":[
"GLC3MEACPtev"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLZtd",
"name":"Uptake of gliclazide into enterocytes",
"metabolites":{
"glz_c":1.0,
"glz_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"GLZtd"
]
},
"annotation":{
"bigg.reaction":[
"GLZtd"
],
"sbo":"SBO:0000185"
}
},
{
"id":"IBUPGLUCtchep",
"name":"Uptake of ibuprofen acyl glucuronide into hepatocytes",
"metabolites":{
"ibupgluc_c":1.0,
"ibupgluc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"IBUPGLUCtchep"
]
},
"annotation":{
"bigg.reaction":[
"IBUPGLUCtchep"
],
"sbo":"SBO:0000185"
}
},
{
"id":"IBUPGLUCtpvb",
"name":"Release of iboprofen acyl glucuronides into the portal blood",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"ibupgluc_c":-1.0,
"ibupgluc_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"IBUPGLUCtpvb"
]
},
"annotation":{
"bigg.reaction":[
"IBUPGLUCtpvb"
],
"sbo":"SBO:0000185"
}
},
{
"id":"IBUP_RASCL1hep",
"name":"Thioesterification of ibuprofen R in hepatocytes",
"metabolites":{
"amp_c":1.0,
"atp_c":-1.0,
"coa_c":-1.0,
"ibup__R_c":-1.0,
"ibupcoa__R_c":1.0,
"ppi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2180_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"IBUP_RASCL1hep"
]
},
"annotation":{
"bigg.reaction":[
"IBUP_RASCL1hep"
],
"sbo":"SBO:0000176"
}
},
{
"id":"IBUP_RCYP3hep",
"name":"Oxidation of R-ibuprofen to 3-hydroxy-ibuprofen in heaptocytes",
"metabolites":{
"3hibup__R_r":1.0,
"h2o_r":1.0,
"h_r":-1.0,
"ibup__R_r":-1.0,
"nadp_r":1.0,
"nadph_r":-1.0,
"o2_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1559_AT1 or 1558_AT1 or 1576_AT1 or 1557_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"IBUP_RCYP3hep"
]
},
"annotation":{
"bigg.reaction":[
"IBUP_RCYP3hep"
],
"sbo":"SBO:0000176"
}
},
{
"id":"IBUP_Rshep",
"name":"Chiral conversion of R to S form of iburpofen in hepatocytes",
"metabolites":{
"ibupcoa__R_c":-1.0,
"ibupcoa__S_c":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"23600_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"IBUP_Rshep"
]
},
"annotation":{
"bigg.reaction":[
"IBUP_Rshep"
],
"sbo":"SBO:0000176"
}
},
{
"id":"IBUP_Rtdhep",
"name":"Uptake of ibuprofen-R into hepatocytes",
"metabolites":{
"ibup__R_c":1.0,
"ibup__R_e":-1.0,
"urate_c":-1.0,
"urate_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"IBUP_Rtdhep"
]
},
"annotation":{
"bigg.reaction":[
"IBUP_Rtdhep"
],
"sbo":"SBO:0000185"
}
},
{
"id":"IBUP_SACOT2",
"name":"Hydrolysis of ibuprofen-CoA in hepatocytes",
"metabolites":{
"coa_c":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"ibup__S_c":1.0,
"ibupcoa__S_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10965_AT1 or 122970_AT1 or 10005_AT1 or 26027_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"IBUP_SACOT2"
]
},
"annotation":{
"bigg.reaction":[
"IBUP_SACOT2"
],
"sbo":"SBO:0000176"
}
},
{
"id":"IBUP_SCYP3hep",
"name":"Oxidation of S-ibuprofen to 3-hydroxy-ibuprofen in heaptocytes",
"metabolites":{
"3hibup__S_r":1.0,
"h2o_r":1.0,
"h_r":-1.0,
"ibup__S_r":-1.0,
"nadp_r":1.0,
"nadph_r":-1.0,
"o2_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1559_AT1 or 1558_AT1 or 1576_AT1 or 1557_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"IBUP_SCYP3hep"
]
},
"annotation":{
"bigg.reaction":[
"IBUP_SCYP3hep"
],
"sbo":"SBO:0000176"
}
},
{
"id":"IBUP_Stdhep",
"name":"Uptake of ibuprofen-S into hepatocytes",
"metabolites":{
"ibup__S_c":1.0,
"ibup__S_e":-1.0,
"urate_c":-1.0,
"urate_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"IBUP_Stdhep"
]
},
"annotation":{
"bigg.reaction":[
"IBUP_Stdhep"
],
"sbo":"SBO:0000185"
}
},
{
"id":"IBUP_Stdu",
"name":"Passive diffusion of ibuprofen S",
"metabolites":{
"ibup__S_c":1.0,
"ibup__S_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"IBUP_Stdu"
]
},
"annotation":{
"bigg.reaction":[
"IBUP_Stdu"
],
"sbo":"SBO:0000185"
}
},
{
"id":"RSVGLUChc",
"name":"Glucuronidation of rosuvastatin in hepatocytes",
"metabolites":{
"rsv_r":-1.0,
"rsvgluc_r":1.0,
"udp_r":2.0,
"udpglcur_r":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"RSVGLUChc"
]
},
"annotation":{
"bigg.reaction":[
"RSVGLUChc"
],
"sbo":"SBO:0000176"
}
},
{
"id":"RSVLACteb",
"name":"Efflux of rosuvastatin-5S-lactone into bile",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"rsvlac_c":-1.0,
"rsvlac_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9429_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"RSVLACteb"
]
},
"annotation":{
"bigg.reaction":[
"RSVLACteb"
],
"sbo":"SBO:0000185"
}
},
{
"id":"RSVtev",
"name":"Exit of rosuvastatin into hepatic vein",
"metabolites":{
"rsv_c":-1.0,
"rsv_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"RSVtev"
]
},
"annotation":{
"bigg.reaction":[
"RSVtev"
],
"sbo":"SBO:0000185"
}
},
{
"id":"SMVACIDATPteb",
"name":"Efflux of simvastatin dihydroxy acid form into bile",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"smvacid_c":-1.0,
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"sbo":"SBO:0000185"
}
},
{
"id":"56DHPVSitr",
"name":"56DHPVSitr",
"metabolites":{
"56dhpvs_c":1.0,
"56dhpvs_r":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"56DHPVSitr"
]
},
"annotation":{
"bigg.reaction":[
"56DHPVSitr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"5OHFVSitr",
"name":"5OHFVSitr",
"metabolites":{
"5ohfvs_c":1.0,
"5ohfvs_r":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"5OHFVSitr"
]
},
"annotation":{
"bigg.reaction":[
"5OHFVSitr"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_rbl__D_e",
"name":"EX rbl D[e]",
"metabolites":{
"rbl__D_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_rbl_D[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_rbl__D_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_M01966_e",
"name":"EX M01966[e]",
"metabolites":{
"M01966_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_M01966[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_M01966_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_M02155_e",
"name":"EX M02155[e]",
"metabolites":{
"M02155_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_M02155[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_M02155_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_M01989_e",
"name":"EX M01989[e]",
"metabolites":{
"M01989_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_M01989[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_M01989_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_M01881_e",
"name":"EX M01881[e]",
"metabolites":{
"M01881_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_M01881[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_M01881_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_M03131_e",
"name":"EX M03131[e]",
"metabolites":{
"M03131_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_M03131[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_M03131_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_n5m2masn_e",
"name":"EX n5m2masn[e]",
"metabolites":{
"n5m2masn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_n5m2masn[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_n5m2masn_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hretn_e",
"name":"EX hretn[e]",
"metabolites":{
"hretn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hretn[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hretn_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"SK_ile__L_c",
"name":"Sink ile L[c]",
"metabolites":{
"ile__L_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_ile_L[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_ile__L_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_leu__L_c",
"name":"Sink leu L[c]",
"metabolites":{
"leu__L_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_leu_L[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_leu__L_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_met__L_c",
"name":"Sink met L[c]",
"metabolites":{
"met__L_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_met_L[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_met__L_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_phe__L_c",
"name":"Sink phe L[c]",
"metabolites":{
"phe__L_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_phe_L[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_phe__L_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_trp__L_c",
"name":"Sink trp L[c]",
"metabolites":{
"trp__L_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_trp_L[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_trp__L_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_asp__L_c",
"name":"Sink asp L[c]",
"metabolites":{
"asp__L_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_asp_L[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_asp__L_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_cys__L_c",
"name":"Sink cys L[c]",
"metabolites":{
"cys__L_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_cys_L[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_cys__L_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_gln__L_c",
"name":"Sink gln L[c]",
"metabolites":{
"gln__L_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_gln_L[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_gln__L_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_glu__L_c",
"name":"Sink glu L[c]",
"metabolites":{
"glu__L_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_glu_L[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_glu__L_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_ser__L_c",
"name":"Sink ser L[c]",
"metabolites":{
"ser__L_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_ser_L[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_ser__L_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_gly_c",
"name":"Sink gly[c]",
"metabolites":{
"gly_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_gly[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_gly_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_4abut_l",
"name":"Sink 4abut[l]",
"metabolites":{
"4abut_l":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_4abut[l]"
]
},
"annotation":{
"bigg.reaction":[
"SK_4abut_l"
],
"sbo":"SBO:0000632"
}
},
{
"id":"DM_CE1261_c",
"name":"DM CE1261[c]",
"metabolites":{
"CE1261_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_CE1261[c]"
]
},
"annotation":{
"bigg.reaction":[
"DM_CE1261_c"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_4glu56dihdind_c",
"name":"DM 4glu56dihdind[c]",
"metabolites":{
"4glu56dihdind_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_4glu56dihdind[c]"
]
},
"annotation":{
"bigg.reaction":[
"DM_4glu56dihdind_c"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_5cysdopa_c",
"name":"DM 5cysdopa[c]",
"metabolites":{
"5cysdopa_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_5cysdopa[c]"
]
},
"annotation":{
"bigg.reaction":[
"DM_5cysdopa_c"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_dopa_c",
"name":"DM dopa[c]",
"metabolites":{
"dopa_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_dopa[c]"
]
},
"annotation":{
"bigg.reaction":[
"DM_dopa_c"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_ach_c",
"name":"DM ach[c]",
"metabolites":{
"ach_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_ach[c]"
]
},
"annotation":{
"bigg.reaction":[
"DM_ach_c"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_hista_c",
"name":"DM hista[c]",
"metabolites":{
"hista_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_hista[c]"
]
},
"annotation":{
"bigg.reaction":[
"DM_hista_c"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_kynate_c",
"name":"DM kynate[c]",
"metabolites":{
"kynate_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_kynate[c]"
]
},
"annotation":{
"bigg.reaction":[
"DM_kynate_c"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_cbl2_m",
"name":"DM cbl2[m]",
"metabolites":{
"cbl2_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_cbl2[m]"
]
},
"annotation":{
"bigg.reaction":[
"DM_cbl2_m"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_1a2425thvitd2_m",
"name":"DM 1a2425thvitd2[m]",
"metabolites":{
"1a2425thvitd2_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_1a2425thvitd2[m]"
]
},
"annotation":{
"bigg.reaction":[
"DM_1a2425thvitd2_m"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_btn_m",
"name":"DM btn[m]",
"metabolites":{
"btn_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_btn[m]"
]
},
"annotation":{
"bigg.reaction":[
"DM_btn_m"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DM_btn_n",
"name":"DM btn[n]",
"metabolites":{
"btn_n":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_btn[n]"
]
},
"annotation":{
"bigg.reaction":[
"DM_btn_n"
],
"sbo":"SBO:0000628"
}
},
{
"id":"DCMPtm",
"name":"DCMPtm",
"metabolites":{
"dcmp_c":1.0,
"dcmp_m":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, mitochondrial",
"notes":{
"original_bigg_ids":[
"DCMPtm"
]
},
"annotation":{
"bigg.reaction":[
"DCMPtm"
],
"sbo":"SBO:0000185"
}
},
{
"id":"DM_protein_c",
"name":"DM PROTEIN",
"metabolites":{
"protein_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular demand",
"notes":{
"original_bigg_ids":[
"DM_PROTEIN"
]
},
"annotation":{
"bigg.reaction":[
"DM_protein_c"
],
"sbo":"SBO:0000628"
}
},
{
"id":"ATPS4mi",
"name":"ATP synthase (four protons for one ATP)",
"metabolites":{
"adp_m":-1.0,
"atp_m":1.0,
"h2o_m":1.0,
"h_i":-4.0,
"h_m":3.0,
"pi_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"((513_AT1 and 498_AT2 and 506_AT1 and 509_AT2 and 514_AT1) or (498_AT2 and 513_AT2 and 514_AT2 and 506_AT1 and 509_AT2) or (513_AT1 and 509_AT1 and 498_AT1 and 514_AT2 and 506_AT1) or (498_AT2 and 513_AT2 and 506_AT1 and 509_AT2 and 514_AT1) or (513_AT2 and 498_AT1 and 514_AT2 and 506_AT1 and 509_AT2) or (513_AT1 and 498_AT1 and 506_AT1 and 509_AT2 and 514_AT1) or (513_AT1 and 498_AT2 and 514_AT2 and 506_AT1 and 509_AT2) or (513_AT1 and 498_AT2 and 509_AT1 and 506_AT1 and 514_AT1) or (498_AT2 and 509_AT1 and 513_AT2 and 506_AT1 and 514_AT1) or (513_AT2 and 498_AT1 and 506_AT1 and 509_AT2 and 514_AT1) or (513_AT2 and 514_AT2 and 506_AT1 and 509_AT2 and 498_AT3) or (513_AT2 and 506_AT1 and 509_AT2 and 498_AT3 and 514_AT1) or (513_AT1 and 509_AT1 and 506_AT1 and 498_AT3 and 514_AT1) or (509_AT1 and 513_AT2 and 514_AT2 and 506_AT1 and 498_AT3) or (513_AT1 and 498_AT2 and 509_AT1 and 514_AT2 and 506_AT1) or (513_AT1 and 498_AT1 and 514_AT2 and 506_AT1 and 509_AT2) or (513_AT1 and 509_AT1 and 498_AT1 and 506_AT1 and 514_AT1) or (513_AT1 and 506_AT1 and 509_AT2 and 498_AT3 and 514_AT1) or (509_AT1 and 513_AT2 and 506_AT1 and 498_AT3 and 514_AT1) or (513_AT1 and 514_AT2 and 506_AT1 and 509_AT2 and 498_AT3) or (509_AT1 and 513_AT2 and 498_AT1 and 506_AT1 and 514_AT1) or (513_AT1 and 509_AT1 and 514_AT2 and 506_AT1 and 498_AT3) or (498_AT2 and 509_AT1 and 513_AT2 and 514_AT2 and 506_AT1) or (509_AT1 and 513_AT2 and 498_AT1 and 514_AT2 and 506_AT1)) and ((10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 522_AT5 and 516_AT2 and 521_AT1 and 515_AT1) or (518_AT3 and 4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 522_AT3) or (4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2 and 9551_AT2 and 522_AT3) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT5 and 9551_AT2 and 518_AT2 and 521_AT1 and 515_AT1) or (4905_AT1 and 515_AT2 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 522_AT5) or (518_AT3 and 4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT4) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT2 and 515_AT2 and 518_AT2 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT2 and 522_AT4 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 522_AT2 and 9551_AT3 and 518_AT2 and 521_AT1) or (4905_AT1 and 9551_AT1 and 10476_AT2 and 522_AT1 and 516_AT2 and 521_AT1 and 515_AT1 and 10632_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 522_AT1 and 9551_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 522_AT5 and 518_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 522_AT3 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 518_AT2 and 522_AT4 and 521_AT1 and 515_AT1) or (4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3 and 522_AT5 and 518_AT2) or (4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1 and 522_AT3) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT1 and 522_AT3 and 521_AT1 and 515_AT1) or (4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 522_AT5 and 518_AT2 and 9551_AT2) or (4905_AT1 and 9551_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 518_AT2 and 522_AT3) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 522_AT4 and 521_AT1) or (4905_AT1 and 10476_AT2 and 522_AT1 and 521_AT1 and 515_AT1 and 10632_AT1 and 518_AT2 and 9551_AT2) or (4905_AT1 and 522_AT2 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2 and 9551_AT2) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT4 and 521_AT1 and 515_AT1) or (518_AT3 and 4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 522_AT4) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 522_AT1 and 9551_AT2 and 518_AT2 and 521_AT1) or (4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2 and 522_AT5) or (4905_AT1 and 10476_AT2 and 516_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3 and 522_AT3) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT1 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT3 and 10476_AT2 and 522_AT1 and 521_AT1 and 515_AT1) or (4905_AT1 and 515_AT3 and 522_AT2 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3) or (4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1 and 522_AT4) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 522_AT5 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 515_AT3 and 10476_AT2 and 9551_AT2 and 522_AT4 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 517_AT2 and 515_AT2 and 522_AT1 and 9551_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT3 and 522_AT3 and 521_AT1 and 515_AT1) or (4905_AT1 and 10476_AT2 and 521_AT1 and 518_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3 and 522_AT3) or (517_AT1 and 4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT3) or (4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 518_AT2 and 522_AT3) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT2 and 515_AT2 and 521_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1 and 518_AT2 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 515_AT2 and 9551_AT2 and 518_AT2 and 521_AT1) or (4905_AT1 and 515_AT3 and 522_AT2 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1 and 9551_AT2) or (4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1 and 9551_AT2 and 522_AT3) or (4905_AT1 and 522_AT2 and 10476_AT2 and 516_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 515_AT3 and 522_AT5 and 9551_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 522_AT2 and 9551_AT3 and 516_AT2 and 521_AT1) or (518_AT3 and 4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 522_AT5) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT4 and 516_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT1 and 522_AT2 and 515_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 522_AT5 and 521_AT1 and 518_AT1 and 515_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 522_AT2 and 9551_AT2 and 521_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 9551_AT3 and 515_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 522_AT2 and 515_AT2 and 10476_AT2 and 9551_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 515_AT3 and 522_AT1 and 9551_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 517_AT2 and 515_AT2 and 522_AT5 and 521_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 522_AT4 and 518_AT2) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 522_AT1 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT2 and 522_AT5 and 9551_AT2 and 521_AT1 and 518_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT2 and 515_AT2 and 516_AT2 and 521_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1 and 517_AT2 and 9551_AT3) or (518_AT3 and 4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT5 and 9551_AT2) or (4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 517_AT2 and 9551_AT2 and 522_AT3) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT5 and 521_AT1) or (517_AT1 and 4905_AT1 and 9551_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 522_AT5) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 517_AT2 and 515_AT2 and 522_AT4 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 522_AT1 and 516_AT2 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 522_AT5 and 521_AT1) or (4905_AT1 and 522_AT2 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 518_AT2) or (518_AT3 and 4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT2 and 522_AT3) or (517_AT1 and 4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT4 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT1 and 516_AT2 and 521_AT1) or (4905_AT1 and 10476_AT2 and 516_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 522_AT5 and 9551_AT2) or (518_AT3 and 4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT3) or (517_AT1 and 4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 522_AT4) or (4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 522_AT4 and 518_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 522_AT4 and 521_AT1 and 518_AT1) or (518_AT3 and 4905_AT1 and 522_AT2 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 522_AT4 and 516_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 9551_AT3 and 517_AT2 and 515_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT2 and 522_AT4 and 521_AT1 and 515_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2 and 9551_AT3 and 522_AT4) or (4905_AT1 and 9551_AT1 and 522_AT2 and 515_AT2 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1) or (4905_AT1 and 522_AT2 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3 and 518_AT2) or (518_AT3 and 4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT5) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 9551_AT3 and 521_AT1 and 515_AT1) or (4905_AT1 and 9551_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 522_AT5 and 518_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT5 and 518_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 522_AT4 and 516_AT2 and 521_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 522_AT5 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 9551_AT2 and 521_AT1 and 518_AT1 and 515_AT1) or (517_AT1 and 4905_AT1 and 10476_AT2 and 522_AT1 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT2) or (517_AT1 and 4905_AT1 and 9551_AT1 and 515_AT3 and 522_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1) or (518_AT3 and 4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 522_AT5 and 9551_AT2) or (4905_AT1 and 522_AT2 and 515_AT2 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1 and 9551_AT2) or (4905_AT1 and 522_AT2 and 10476_AT2 and 521_AT1 and 518_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 518_AT2 and 522_AT4 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 522_AT2 and 10476_AT2 and 9551_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT2 and 516_AT2 and 522_AT3 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 9551_AT3 and 521_AT1 and 518_AT1 and 515_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 522_AT4 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 515_AT3 and 10476_AT2 and 9551_AT2 and 522_AT3 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 516_AT2 and 522_AT3 and 521_AT1) or (4905_AT1 and 9551_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 522_AT4 and 518_AT2) or (4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 518_AT2 and 9551_AT2 and 522_AT3) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT5 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 522_AT1 and 9551_AT2 and 521_AT1 and 518_AT1) or (518_AT3 and 4905_AT1 and 9551_AT1 and 522_AT2 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1) or (4905_AT1 and 515_AT3 and 522_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 518_AT2 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT5 and 518_AT2 and 521_AT1 and 515_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT2 and 9551_AT2 and 522_AT3 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT2 and 522_AT1 and 9551_AT2 and 521_AT1 and 515_AT1) or (4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 518_AT2 and 522_AT3) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT2 and 9551_AT2 and 518_AT2 and 522_AT3 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 522_AT1 and 518_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 522_AT2 and 9551_AT3 and 10476_AT2 and 521_AT1 and 515_AT1) or (517_AT1 and 4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT2 and 522_AT3) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 522_AT5 and 521_AT1) or (4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2 and 9551_AT3 and 522_AT5) or (4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1 and 522_AT5 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 522_AT4 and 516_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 522_AT4 and 521_AT1 and 518_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 517_AT2 and 515_AT2 and 522_AT3 and 521_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1 and 9551_AT2 and 522_AT3) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT2 and 522_AT1 and 9551_AT2 and 521_AT1 and 518_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 522_AT4 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT2 and 521_AT1 and 518_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 517_AT2 and 522_AT1 and 521_AT1) or (4905_AT1 and 10476_AT2 and 516_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3 and 522_AT4) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT2 and 522_AT3 and 521_AT1) or (518_AT3 and 4905_AT1 and 515_AT3 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1 and 9551_AT2) or (4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1 and 522_AT5) or (4905_AT1 and 10476_AT2 and 516_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT2 and 522_AT3) or (4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1 and 522_AT4) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 522_AT3 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 515_AT3 and 522_AT2 and 9551_AT2 and 521_AT1) or (518_AT3 and 4905_AT1 and 9551_AT1 and 522_AT2 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 522_AT3 and 521_AT1 and 518_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 522_AT5 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT2 and 522_AT4 and 516_AT2 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 522_AT1 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 522_AT1 and 521_AT1 and 518_AT1) or (4905_AT1 and 515_AT3 and 522_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2 and 9551_AT3) or (518_AT3 and 4905_AT1 and 515_AT2 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1 and 9551_AT2) or (517_AT1 and 4905_AT1 and 9551_AT1 and 522_AT2 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 9551_AT2 and 521_AT1 and 515_AT1) or (4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1 and 522_AT4) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 522_AT5 and 516_AT2 and 521_AT1) or (517_AT1 and 4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT5 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 522_AT1 and 516_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 522_AT3 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 517_AT2 and 522_AT1 and 521_AT1 and 515_AT1) or (518_AT3 and 4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT4 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 517_AT2 and 522_AT3 and 521_AT1 and 515_AT1) or (4905_AT1 and 515_AT2 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 522_AT4) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 522_AT3 and 521_AT1 and 518_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 517_AT2 and 515_AT2 and 522_AT3 and 521_AT1) or (4905_AT1 and 10476_AT2 and 522_AT1 and 521_AT1 and 515_AT1 and 10632_AT1 and 517_AT2 and 9551_AT3) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 522_AT1 and 9551_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 522_AT2 and 9551_AT3 and 521_AT1 and 518_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 518_AT2 and 522_AT3 and 521_AT1 and 515_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 515_AT2 and 9551_AT2 and 521_AT1) or (4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT5 and 518_AT2 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 9551_AT3 and 515_AT2 and 521_AT1 and 518_AT1) or (4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 518_AT2 and 9551_AT2 and 522_AT3) or (4905_AT1 and 10476_AT2 and 516_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 522_AT4 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 522_AT2 and 9551_AT2 and 521_AT1 and 518_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 517_AT2 and 522_AT1 and 9551_AT2 and 521_AT1) or (518_AT3 and 4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3 and 522_AT5) or (10632_AT1 and 4905_AT1 and 516_AT1 and 515_AT2 and 10476_AT2 and 522_AT5 and 9551_AT2 and 521_AT1) or (517_AT1 and 4905_AT1 and 522_AT2 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 9551_AT3 and 518_AT2 and 521_AT1 and 515_AT1) or (4905_AT1 and 515_AT2 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1 and 522_AT4 and 9551_AT2) or (518_AT3 and 4905_AT1 and 9551_AT1 and 515_AT3 and 522_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 522_AT5 and 9551_AT2 and 518_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT3 and 522_AT1 and 521_AT1 and 515_AT1) or (4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2 and 522_AT3) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 517_AT2 and 522_AT3 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT2 and 516_AT2 and 521_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT2 and 522_AT3 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT1 and 10476_AT2 and 522_AT5 and 521_AT1 and 515_AT1) or (4905_AT1 and 522_AT2 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 517_AT2 and 9551_AT3) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 517_AT2 and 515_AT2 and 522_AT1 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT2 and 522_AT5 and 9551_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 515_AT3 and 522_AT2 and 10476_AT2 and 9551_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 516_AT2 and 522_AT3 and 521_AT1 and 515_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT5 and 521_AT1 and 515_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2 and 9551_AT3 and 522_AT3) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 9551_AT3 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT2 and 518_AT2 and 522_AT3 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT2 and 9551_AT2 and 518_AT2 and 522_AT4 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT5 and 9551_AT2 and 521_AT1 and 518_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT5 and 521_AT1 and 518_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 522_AT5 and 518_AT2) or (4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1 and 517_AT2) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT1 and 522_AT1 and 521_AT1 and 515_AT1) or (4905_AT1 and 515_AT2 and 10476_AT2 and 522_AT1 and 516_AT2 and 521_AT1 and 10632_AT1 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 515_AT3 and 9551_AT2 and 522_AT4 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT2 and 517_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 515_AT3 and 9551_AT2 and 522_AT3 and 521_AT1) or (4905_AT1 and 515_AT2 and 10476_AT2 and 522_AT1 and 521_AT1 and 518_AT1 and 10632_AT1 and 9551_AT2) or (4905_AT1 and 10476_AT2 and 521_AT1 and 518_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3 and 522_AT4) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT1 and 522_AT5 and 521_AT1 and 515_AT1) or (4905_AT1 and 515_AT3 and 522_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 518_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 517_AT2 and 515_AT2 and 9551_AT2 and 522_AT3 and 521_AT1) or (4905_AT1 and 10476_AT2 and 521_AT1 and 518_AT1 and 515_AT1 and 10632_AT1 and 522_AT4 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 518_AT2 and 522_AT3 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 522_AT1 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 518_AT2 and 522_AT4 and 521_AT1) or (517_AT1 and 4905_AT1 and 9551_AT1 and 10476_AT2 and 522_AT1 and 521_AT1 and 515_AT1 and 10632_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 518_AT2 and 522_AT4 and 521_AT1) or (4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1 and 9551_AT3 and 522_AT5) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 522_AT3 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT1 and 516_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 522_AT5 and 516_AT2 and 521_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1 and 522_AT5 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 522_AT1 and 516_AT2 and 521_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 522_AT4 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 518_AT2 and 522_AT3 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 517_AT2 and 522_AT3 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 517_AT2 and 522_AT3 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT2 and 522_AT5 and 9551_AT2 and 518_AT2 and 521_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 515_AT2 and 522_AT1 and 9551_AT2 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT3 and 521_AT1) or (518_AT3 and 4905_AT1 and 522_AT2 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3) or (4905_AT1 and 10476_AT2 and 521_AT1 and 518_AT1 and 515_AT1 and 10632_AT1 and 9551_AT2 and 522_AT3) or (517_AT1 and 4905_AT1 and 515_AT3 and 522_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT3 and 10476_AT2 and 522_AT3 and 521_AT1 and 515_AT1) or (518_AT3 and 4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT5) or (4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2 and 522_AT5) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT3 and 515_AT2 and 10476_AT2 and 522_AT5 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 522_AT1 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 522_AT5 and 521_AT1) or (518_AT3 and 4905_AT1 and 9551_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 522_AT5) or (517_AT1 and 4905_AT1 and 515_AT3 and 522_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3) or (518_AT3 and 4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT2 and 522_AT3) or (4905_AT1 and 10476_AT2 and 516_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3 and 522_AT5) or (10632_AT1 and 4905_AT1 and 516_AT1 and 515_AT2 and 10476_AT2 and 9551_AT2 and 522_AT4 and 521_AT1) or (4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2 and 522_AT4 and 9551_AT2) or (4905_AT1 and 10476_AT2 and 521_AT1 and 518_AT1 and 515_AT1 and 10632_AT1 and 522_AT5 and 9551_AT2) or (517_AT1 and 4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 522_AT3) or (4905_AT1 and 9551_AT1 and 522_AT2 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2) or (4905_AT1 and 515_AT3 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 522_AT3) or (4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 522_AT5 and 518_AT2) or (4905_AT1 and 522_AT2 and 10476_AT2 and 516_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 522_AT2 and 9551_AT3 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 518_AT2 and 522_AT3 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 522_AT2 and 515_AT2 and 9551_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 517_AT2 and 522_AT5 and 521_AT1) or (517_AT1 and 4905_AT1 and 515_AT3 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1 and 9551_AT3) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT1 and 10476_AT2 and 522_AT4 and 521_AT1 and 515_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 522_AT5 and 9551_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT2 and 522_AT1 and 9551_AT2 and 516_AT2 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT2 and 9551_AT2 and 522_AT4 and 521_AT1) or (517_AT1 and 4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3 and 522_AT5) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 9551_AT3 and 516_AT2 and 521_AT1 and 515_AT1) or (4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3 and 522_AT4 and 518_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 522_AT1 and 521_AT1 and 518_AT1 and 515_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT3 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 522_AT4 and 521_AT1 and 515_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 522_AT1 and 516_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 522_AT1 and 518_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 522_AT3 and 521_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 522_AT1 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 517_AT2 and 522_AT4 and 521_AT1) or (4905_AT1 and 9551_AT1 and 515_AT3 and 522_AT2 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 515_AT2 and 10476_AT2 and 522_AT1 and 9551_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT2 and 9551_AT2 and 522_AT4 and 521_AT1 and 518_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 522_AT1 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 517_AT2 and 522_AT1 and 9551_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 522_AT5 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 522_AT4 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 517_AT2 and 522_AT1 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 522_AT1 and 521_AT1 and 518_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 522_AT3 and 521_AT1 and 515_AT1) or (517_AT1 and 4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT5 and 9551_AT2) or (4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 522_AT1 and 516_AT2 and 521_AT1 and 10632_AT1) or (4905_AT1 and 9551_AT1 and 10476_AT2 and 522_AT1 and 521_AT1 and 515_AT1 and 10632_AT1 and 518_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT4 and 521_AT1 and 518_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 517_AT2 and 522_AT5 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT5 and 516_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 518_AT2 and 522_AT3 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT1 and 9551_AT2 and 521_AT1 and 515_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT4 and 521_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT1 and 521_AT1 and 515_AT1) or (518_AT3 and 4905_AT1 and 515_AT3 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1 and 9551_AT3) or (518_AT3 and 4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 522_AT4) or (4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2 and 522_AT4) or (4905_AT1 and 515_AT3 and 10476_AT2 and 522_AT1 and 521_AT1 and 518_AT1 and 10632_AT1 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 522_AT1 and 521_AT1 and 518_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 522_AT5 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 522_AT4 and 521_AT1 and 518_AT1) or (4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 522_AT1 and 516_AT2 and 521_AT1 and 10632_AT1) or (517_AT1 and 4905_AT1 and 515_AT3 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 517_AT2 and 522_AT5 and 9551_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 515_AT2 and 9551_AT2 and 522_AT3 and 521_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 515_AT2 and 9551_AT2 and 522_AT4 and 521_AT1) or (4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2 and 522_AT4) or (518_AT3 and 4905_AT1 and 522_AT2 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3) or (10632_AT1 and 4905_AT1 and 516_AT1 and 515_AT3 and 10476_AT2 and 522_AT1 and 9551_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT1 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 515_AT3 and 9551_AT3 and 10476_AT2 and 522_AT1 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 522_AT5 and 9551_AT2 and 516_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 522_AT4 and 521_AT1 and 518_AT1) or (517_AT1 and 4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1) or (4905_AT1 and 522_AT2 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 517_AT2 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT3 and 10476_AT2 and 522_AT4 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 517_AT2 and 9551_AT2 and 522_AT3 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT5 and 521_AT1) or (4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3 and 518_AT2 and 522_AT3) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT2 and 522_AT4 and 521_AT1 and 515_AT1) or (517_AT1 and 4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 522_AT3) or (4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1 and 518_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 518_AT2 and 522_AT3 and 521_AT1) or (517_AT1 and 4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 522_AT5) or (4905_AT1 and 522_AT2 and 10476_AT2 and 521_AT1 and 518_AT1 and 515_AT1 and 10632_AT1 and 9551_AT2) or (517_AT1 and 4905_AT1 and 9551_AT1 and 522_AT2 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1) or (4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2 and 522_AT5 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT2 and 522_AT5 and 9551_AT2 and 521_AT1 and 515_AT1) or (517_AT1 and 4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3 and 522_AT4) or (4905_AT1 and 515_AT2 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1 and 518_AT2 and 9551_AT2) or (4905_AT1 and 9551_AT1 and 515_AT3 and 522_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2) or (4905_AT1 and 9551_AT1 and 10476_AT2 and 522_AT1 and 521_AT1 and 515_AT1 and 10632_AT1 and 517_AT2) or (4905_AT1 and 10476_AT2 and 522_AT1 and 516_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT2) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 522_AT3 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 522_AT1 and 9551_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT1 and 10476_AT2 and 522_AT3 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 517_AT2 and 515_AT2 and 9551_AT2 and 521_AT1) or (4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 522_AT1 and 521_AT1 and 518_AT1 and 10632_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT4 and 521_AT1) or (4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1 and 522_AT3) or (517_AT1 and 4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 522_AT5) or (518_AT3 and 4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT4) or (4905_AT1 and 10476_AT2 and 522_AT1 and 521_AT1 and 518_AT1 and 515_AT1 and 10632_AT1 and 9551_AT2) or (4905_AT1 and 515_AT3 and 522_AT2 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1 and 9551_AT3) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT4 and 516_AT2 and 521_AT1) or (4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1 and 522_AT3) or (4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT5 and 518_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 517_AT2 and 9551_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT3 and 515_AT2 and 10476_AT2 and 522_AT4 and 521_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 522_AT5 and 9551_AT2 and 521_AT1 and 515_AT1) or (4905_AT1 and 515_AT2 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1 and 517_AT2 and 9551_AT3) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT2 and 517_AT2 and 515_AT2 and 521_AT1) or (518_AT3 and 4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3 and 522_AT4) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT2 and 515_AT2 and 521_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 518_AT2 and 522_AT3) or (517_AT1 and 4905_AT1 and 515_AT2 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1 and 9551_AT3) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT1 and 518_AT2 and 521_AT1 and 515_AT1) or (4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT4 and 518_AT2 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT3 and 521_AT1 and 518_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT2 and 521_AT1 and 518_AT1) or (518_AT3 and 4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT5 and 9551_AT2) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 522_AT5 and 521_AT1) or (4905_AT1 and 515_AT2 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1 and 9551_AT2 and 522_AT3) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT2 and 518_AT2 and 522_AT4 and 521_AT1 and 515_AT1) or (4905_AT1 and 10476_AT2 and 522_AT1 and 521_AT1 and 518_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 518_AT2 and 522_AT4 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT1 and 9551_AT2 and 521_AT1 and 518_AT1 and 515_AT1) or (4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1 and 9551_AT3 and 522_AT3) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 522_AT2 and 9551_AT3 and 521_AT1) or (4905_AT1 and 522_AT2 and 515_AT2 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1 and 9551_AT2) or (518_AT3 and 4905_AT1 and 10476_AT2 and 522_AT1 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 522_AT1 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT2 and 518_AT2 and 522_AT3 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT1 and 518_AT2 and 521_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1 and 517_AT2 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 517_AT2 and 522_AT4 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT2 and 522_AT3 and 521_AT1 and 515_AT1) or (4905_AT1 and 9551_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 517_AT2 and 522_AT3) or (4905_AT1 and 515_AT2 and 10476_AT2 and 522_AT1 and 516_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3) or (517_AT1 and 4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT5) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 522_AT2 and 9551_AT3 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT2 and 9551_AT2 and 516_AT2 and 522_AT3 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 517_AT2 and 515_AT2 and 522_AT5 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 522_AT1 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 522_AT5 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 522_AT5 and 516_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT2 and 522_AT4 and 521_AT1 and 518_AT1 and 515_AT1) or (517_AT1 and 4905_AT1 and 515_AT2 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 515_AT2 and 9551_AT2 and 522_AT4 and 521_AT1) or (4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1 and 522_AT3) or (4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1 and 522_AT5 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 516_AT1 and 515_AT3 and 10476_AT2 and 522_AT5 and 9551_AT2 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 522_AT1 and 9551_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT2 and 522_AT4 and 516_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 515_AT3 and 9551_AT3 and 10476_AT2 and 522_AT5 and 521_AT1) or (518_AT3 and 4905_AT1 and 9551_AT1 and 10476_AT2 and 522_AT1 and 521_AT1 and 515_AT1 and 10632_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 522_AT2 and 9551_AT2 and 518_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 522_AT1 and 516_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT2 and 9551_AT2 and 522_AT3 and 521_AT1 and 518_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 517_AT2 and 522_AT5 and 521_AT1 and 515_AT1) or (4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2 and 9551_AT3 and 522_AT3) or (4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1 and 518_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 517_AT2 and 522_AT1 and 521_AT1) or (517_AT1 and 4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1) or (4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1 and 522_AT4) or (4905_AT1 and 9551_AT1 and 522_AT2 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 517_AT2) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT2 and 9551_AT2 and 522_AT4 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 522_AT5 and 9551_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT5 and 9551_AT2 and 516_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT2 and 516_AT2 and 522_AT3 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 522_AT2 and 9551_AT2 and 521_AT1 and 515_AT1) or (517_AT1 and 4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 522_AT4 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 516_AT2 and 522_AT3 and 521_AT1) or (4905_AT1 and 10476_AT2 and 521_AT1 and 518_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3 and 522_AT5) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 522_AT5 and 518_AT2 and 521_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 522_AT1 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 522_AT5 and 518_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 9551_AT2 and 518_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT1 and 521_AT1) or (518_AT3 and 4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 522_AT5 and 9551_AT2 and 521_AT1 and 518_AT1) or (518_AT3 and 4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 522_AT3) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 522_AT4 and 521_AT1) or (517_AT1 and 4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3 and 522_AT3) or (4905_AT1 and 515_AT2 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1 and 522_AT5 and 9551_AT2) or (4905_AT1 and 9551_AT1 and 10476_AT2 and 521_AT1 and 518_AT1 and 515_AT1 and 10632_AT1 and 522_AT5) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 517_AT2 and 9551_AT2 and 522_AT3 and 521_AT1 and 515_AT1) or (4905_AT1 and 522_AT2 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 518_AT2 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 522_AT2 and 517_AT2 and 9551_AT2 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT4 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT3 and 515_AT2 and 10476_AT2 and 522_AT3 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 522_AT1 and 521_AT1 and 515_AT1) or (518_AT3 and 4905_AT1 and 9551_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 522_AT3) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 515_AT2 and 9551_AT2 and 522_AT3 and 521_AT1) or (4905_AT1 and 9551_AT1 and 10476_AT2 and 521_AT1 and 518_AT1 and 515_AT1 and 10632_AT1 and 522_AT4) or (4905_AT1 and 9551_AT1 and 10476_AT2 and 516_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 522_AT5) or (4905_AT1 and 9551_AT1 and 10476_AT2 and 516_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 522_AT4) or (4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 518_AT2 and 522_AT3) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT2 and 515_AT2 and 521_AT1 and 518_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 522_AT3 and 521_AT1 and 518_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 522_AT3 and 521_AT1 and 518_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 522_AT5) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 515_AT2 and 522_AT5 and 9551_AT2 and 521_AT1) or (517_AT1 and 4905_AT1 and 9551_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 522_AT4) or (4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1 and 9551_AT3 and 522_AT4) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 9551_AT3 and 515_AT2 and 516_AT2 and 521_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 522_AT1 and 521_AT1 and 518_AT1 and 10632_AT1 and 9551_AT3) or (4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 517_AT2 and 9551_AT3 and 522_AT4) or (4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT4 and 518_AT2) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 9551_AT3 and 517_AT2 and 521_AT1 and 515_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1 and 9551_AT2 and 522_AT3) or (4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1 and 517_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 518_AT2 and 522_AT4 and 521_AT1) or (518_AT3 and 4905_AT1 and 10476_AT2 and 522_AT1 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT2) or (4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 522_AT1 and 521_AT1 and 518_AT1 and 10632_AT1) or (4905_AT1 and 9551_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 517_AT2 and 522_AT4) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT3 and 10476_AT2 and 522_AT5 and 521_AT1 and 515_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 522_AT1 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT2 and 518_AT2 and 522_AT4 and 521_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 522_AT5 and 9551_AT2 and 521_AT1) or (518_AT3 and 4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT2 and 522_AT3) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 522_AT4 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 522_AT5 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 515_AT3 and 9551_AT3 and 10476_AT2 and 522_AT4 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 517_AT2 and 522_AT5 and 9551_AT2 and 521_AT1) or (4905_AT1 and 515_AT3 and 522_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2 and 9551_AT2) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT1 and 521_AT1 and 515_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 522_AT4 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 515_AT2 and 9551_AT2 and 521_AT1 and 518_AT1) or (517_AT1 and 4905_AT1 and 522_AT2 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3) or (4905_AT1 and 9551_AT1 and 10476_AT2 and 516_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 522_AT3) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT1 and 522_AT2 and 515_AT2 and 10476_AT2 and 521_AT1) or (4905_AT1 and 522_AT2 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2 and 9551_AT3) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT1 and 522_AT4 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 515_AT2 and 9551_AT2 and 516_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 522_AT4 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT2 and 522_AT4 and 521_AT1 and 515_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 522_AT3 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT1 and 9551_AT2 and 518_AT2 and 521_AT1 and 515_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1 and 9551_AT3 and 522_AT3) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 517_AT2 and 522_AT4 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT3 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 515_AT2 and 10476_AT2 and 9551_AT2 and 522_AT3 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT2 and 522_AT3 and 521_AT1 and 518_AT1 and 515_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 522_AT5 and 521_AT1 and 515_AT1) or (517_AT1 and 4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT5) or (4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 517_AT2 and 522_AT5 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT2 and 516_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT2 and 9551_AT2 and 522_AT3 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT4 and 521_AT1 and 518_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 517_AT2 and 515_AT2 and 9551_AT2 and 522_AT4 and 521_AT1) or (518_AT3 and 4905_AT1 and 515_AT3 and 522_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT2 and 522_AT3 and 521_AT1 and 515_AT1) or (518_AT3 and 4905_AT1 and 515_AT2 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1 and 9551_AT3) or (517_AT1 and 4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 522_AT5 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 522_AT5 and 521_AT1 and 518_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 517_AT2 and 522_AT5 and 521_AT1 and 515_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 522_AT3 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 522_AT4 and 516_AT2 and 521_AT1) or (4905_AT1 and 515_AT2 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1 and 9551_AT3 and 518_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT2 and 522_AT4 and 521_AT1 and 518_AT1) or (517_AT1 and 4905_AT1 and 522_AT2 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3) or (4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1 and 522_AT4 and 9551_AT2) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 522_AT4 and 521_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 9551_AT2 and 516_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT3 and 522_AT5 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 522_AT4 and 521_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT4 and 518_AT2 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 522_AT1 and 521_AT1) or (4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 517_AT2 and 522_AT4 and 9551_AT2) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 515_AT2 and 9551_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 515_AT3 and 9551_AT3 and 10476_AT2 and 522_AT3 and 521_AT1) or (4905_AT1 and 515_AT2 and 10476_AT2 and 522_AT1 and 521_AT1 and 518_AT1 and 10632_AT1 and 9551_AT3) or (4905_AT1 and 522_AT2 and 515_AT2 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT2 and 517_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 9551_AT3 and 515_AT2 and 518_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT2 and 518_AT2 and 521_AT1) or (4905_AT1 and 10476_AT2 and 522_AT1 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3 and 518_AT2) or (4905_AT1 and 9551_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 517_AT2 and 522_AT5) or (4905_AT1 and 9551_AT1 and 522_AT2 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 518_AT2) or (4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2 and 522_AT5 and 9551_AT2) or (517_AT1 and 4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT3) or (518_AT3 and 4905_AT1 and 515_AT3 and 522_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT2) or (4905_AT1 and 515_AT2 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 522_AT3) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 522_AT1 and 9551_AT2 and 516_AT2 and 521_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2 and 9551_AT3 and 522_AT5) or (4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1 and 522_AT5) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT2 and 518_AT2 and 521_AT1 and 515_AT1) or (4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 517_AT2 and 9551_AT3 and 522_AT3) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT2 and 522_AT5 and 9551_AT2 and 516_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 522_AT3 and 521_AT1) or (4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT5 and 518_AT2) or (4905_AT1 and 515_AT3 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 522_AT4) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT1 and 522_AT2 and 10476_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 517_AT2 and 9551_AT2 and 522_AT4 and 521_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1 and 9551_AT3 and 518_AT2) or (517_AT1 and 4905_AT1 and 522_AT2 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT3 and 515_AT2 and 10476_AT2 and 522_AT1 and 521_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1 and 9551_AT3 and 522_AT5) or (4905_AT1 and 515_AT3 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1 and 522_AT4 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT1 and 521_AT1 and 518_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 517_AT2 and 9551_AT2 and 522_AT4 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT1 and 522_AT2 and 521_AT1 and 515_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2 and 9551_AT2 and 522_AT3) or (4905_AT1 and 9551_AT1 and 522_AT2 and 10476_AT2 and 521_AT1 and 518_AT1 and 515_AT1 and 10632_AT1) or (518_AT3 and 4905_AT1 and 522_AT2 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT2) or (4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT5 and 518_AT2 and 9551_AT2) or (518_AT3 and 4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 522_AT4 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 522_AT1 and 521_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT2 and 522_AT4 and 521_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT3 and 521_AT1 and 515_AT1) or (517_AT1 and 4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT4 and 9551_AT2) or (4905_AT1 and 9551_AT1 and 522_AT2 and 10476_AT2 and 516_AT2 and 521_AT1 and 515_AT1 and 10632_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 522_AT5 and 518_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 522_AT3 and 521_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 515_AT2 and 522_AT5 and 9551_AT2 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT2 and 522_AT3 and 521_AT1) or (518_AT3 and 4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT3) or (4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1 and 522_AT4 and 9551_AT2) or (4905_AT1 and 522_AT2 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 518_AT2 and 9551_AT2) or (517_AT1 and 4905_AT1 and 10476_AT2 and 522_AT1 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 522_AT1 and 518_AT2 and 521_AT1) or (4905_AT1 and 9551_AT1 and 515_AT3 and 522_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 518_AT2) or (4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 522_AT4 and 518_AT2 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 516_AT2 and 522_AT3 and 521_AT1) or (517_AT1 and 4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT4) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT2 and 522_AT3 and 521_AT1 and 518_AT1) or (4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2 and 522_AT3) or (4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 518_AT2 and 9551_AT2 and 522_AT3) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 517_AT2 and 515_AT2 and 522_AT1 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT1 and 9551_AT2 and 516_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 522_AT2 and 9551_AT3 and 515_AT2 and 521_AT1) or (4905_AT1 and 9551_AT1 and 10476_AT2 and 522_AT1 and 521_AT1 and 518_AT1 and 515_AT1 and 10632_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT4 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT1 and 521_AT1 and 518_AT1) or (4905_AT1 and 10476_AT2 and 522_AT1 and 521_AT1 and 515_AT1 and 10632_AT1 and 517_AT2 and 9551_AT2) or (517_AT1 and 4905_AT1 and 9551_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 522_AT3) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 522_AT5 and 521_AT1) or (518_AT3 and 4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT4 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 522_AT5 and 521_AT1 and 518_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 516_AT2 and 522_AT3 and 521_AT1 and 515_AT1) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 522_AT4 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT3 and 521_AT1 and 518_AT1 and 515_AT1) or (517_AT1 and 4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 522_AT4) or (518_AT3 and 4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT3 and 522_AT5) or (518_AT3 and 4905_AT1 and 9551_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 522_AT4) or (10632_AT1 and 4905_AT1 and 516_AT1 and 522_AT2 and 9551_AT3 and 515_AT2 and 10476_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT1 and 10476_AT2 and 522_AT1 and 521_AT1 and 515_AT1) or (4905_AT1 and 9551_AT1 and 522_AT2 and 515_AT2 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 515_AT2 and 522_AT1 and 9551_AT2 and 521_AT1) or (4905_AT1 and 522_AT2 and 515_AT2 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1 and 9551_AT3) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 517_AT2 and 515_AT2 and 522_AT5 and 9551_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 522_AT5 and 521_AT1 and 518_AT1) or (518_AT3 and 4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1) or (4905_AT1 and 9551_AT1 and 515_AT3 and 522_AT2 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT2 and 522_AT1 and 518_AT2 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 9551_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 522_AT2 and 9551_AT2 and 516_AT2 and 521_AT1) or (4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT4 and 518_AT2) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 515_AT3 and 522_AT2 and 9551_AT3 and 521_AT1) or (4905_AT1 and 515_AT2 and 10476_AT2 and 522_AT1 and 521_AT1 and 10632_AT1 and 517_AT2 and 9551_AT2) or (4905_AT1 and 10476_AT2 and 522_AT1 and 516_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3) or (4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 517_AT2 and 9551_AT3 and 522_AT5) or (517_AT1 and 4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 9551_AT2 and 522_AT3) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT3 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 515_AT3 and 522_AT2 and 9551_AT3 and 10476_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT5 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT2 and 522_AT1 and 9551_AT2 and 518_AT2 and 521_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2 and 522_AT4 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 517_AT2 and 522_AT4 and 521_AT1 and 515_AT1) or (4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1 and 522_AT5) or (4905_AT1 and 9551_AT1 and 10476_AT2 and 521_AT1 and 518_AT1 and 515_AT1 and 10632_AT1 and 522_AT3) or (4905_AT1 and 9551_AT1 and 522_AT2 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 518_AT2) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 522_AT2 and 9551_AT3 and 517_AT2 and 521_AT1) or (518_AT3 and 4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT3 and 522_AT3) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT3 and 515_AT2 and 522_AT3 and 521_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 518_AT1 and 10632_AT1 and 9551_AT3 and 522_AT4) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 517_AT2 and 515_AT2 and 522_AT4 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT2 and 522_AT1 and 9551_AT2 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT5 and 9551_AT2 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT2 and 9551_AT2 and 522_AT4 and 516_AT2 and 521_AT1) or (4905_AT1 and 515_AT3 and 10476_AT2 and 522_AT1 and 516_AT2 and 521_AT1 and 10632_AT1 and 9551_AT2) or (517_AT1 and 4905_AT1 and 10476_AT2 and 521_AT1 and 515_AT1 and 10632_AT1 and 9551_AT2 and 522_AT3) or (517_AT1 and 4905_AT1 and 9551_AT1 and 515_AT3 and 10476_AT2 and 521_AT1 and 10632_AT1 and 522_AT4) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 516_AT2 and 522_AT3 and 521_AT1) or (10632_AT1 and 4905_AT1 and 516_AT1 and 9551_AT1 and 515_AT3 and 522_AT2 and 10476_AT2 and 521_AT1) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 522_AT2 and 9551_AT3 and 515_AT2 and 521_AT1) or (4905_AT1 and 515_AT2 and 10476_AT2 and 521_AT1 and 10632_AT1 and 517_AT2 and 9551_AT3 and 522_AT4) or (518_AT3 and 10632_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 522_AT2 and 9551_AT2 and 521_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 522_AT5 and 521_AT1 and 518_AT1 and 515_AT1) or (4905_AT1 and 515_AT3 and 522_AT2 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1 and 9551_AT2) or (10632_AT1 and 4905_AT1 and 516_AT1 and 10476_AT1 and 9551_AT3 and 522_AT4 and 521_AT1 and 515_AT1) or (10632_AT1 and 4905_AT1 and 10476_AT1 and 9551_AT1 and 515_AT3 and 522_AT5 and 516_AT2 and 521_AT1) or (4905_AT1 and 9551_AT1 and 515_AT2 and 10476_AT2 and 516_AT2 and 521_AT1 and 10632_AT1 and 522_AT5) or (10632_AT1 and 517_AT1 and 4905_AT1 and 10476_AT1 and 515_AT3 and 9551_AT3 and 522_AT3 and 521_AT1)) and (539_AT1 and 267020_AT1 and 27109_AT1)",
"subsystem":"Oxidative phosphorylation",
"notes":{
"original_bigg_ids":[
"ATPS4mi"
]
},
"annotation":{
"bigg.reaction":[
"ATPS4mi"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CYOR_u10mi",
"name":"CYOR u10mi",
"metabolites":{
"ficytC_m":-2.0,
"focytC_m":2.0,
"h_i":4.0,
"h_m":-2.0,
"q10_m":1.0,
"q10h2_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(7384_AT1 and 7388_AT1 and 4519_AT1 and 29796_AT2 and 10975_AT1 and 7385_AT1 and 7386_AT1 and 1537_AT1 and 27089_AT1 and 7381_AT1) or (7384_AT1 and 7388_AT1 and 4519_AT1 and 29796_AT1 and 10975_AT1 and 7385_AT1 and 1537_AT1 and 7386_AT1 and 27089_AT1 and 7381_AT1)",
"subsystem":"Oxidative phosphorylation",
"notes":{
"original_bigg_ids":[
"CYOR_u10mi"
]
},
"annotation":{
"bigg.reaction":[
"CYOR_u10mi"
],
"sbo":"SBO:0000185"
}
},
{
"id":"Htmi",
"name":"Htmi",
"metabolites":{
"h_i":-1.0,
"h_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9016_AT1 or 7352_AT2 or 7352_AT1 or 7351_AT1 or 9016_AT2 or 7350_AT1 or 9481_AT1",
"subsystem":"Transport, mitochondrial",
"notes":{
"original_bigg_ids":[
"Htmi"
]
},
"annotation":{
"bigg.reaction":[
"Htmi"
],
"sbo":"SBO:0000185"
}
},
{
"id":"NADH2_u10mi",
"name":"NADH2 u10mi",
"metabolites":{
"h_i":4.0,
"h_m":-5.0,
"nad_m":1.0,
"nadh_m":-1.0,
"q10_m":-1.0,
"q10h2_m":1.0
},
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"subsystem":"Oxidative phosphorylation",
"notes":{
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]
},
"annotation":{
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"NADH2_u10mi"
],
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}
},
{
"id":"CYOOm3i",
"name":"CYOOm3i",
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"focytC_m":-4.0,
"h2o_m":1.96,
"h_i":4.0,
"h_m":-7.92,
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"o2s_m":0.02
},
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]
},
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},
{
"id":"ALLOP1tu",
"name":"Uptake of allopurinol by the enterocytes",
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},
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},
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],
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},
{
"id":"ALLOPOXDhep",
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{
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},
{
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},
{
"id":"AM1A4NCShc",
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},
{
"id":"AM1ACCShr",
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},
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},
{
"id":"AM1ACStep",
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},
{
"id":"AM1CCStev",
"name":"Efflux of AM1c-cyclosporine into hepatic vein",
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},
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},
{
"id":"AM1CGLCteb",
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},
{
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},
{
"id":"AM4N9CShr",
"name":"Oxidation of AM4N to AM4N9 in hepatocytes",
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},
{
"id":"AM9CSAhr",
"name":"Oxidation of cyclosporine to AM9 in hepatocytes",
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},
{
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},
{
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{
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{
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{
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{
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},
{
"id":"ATVLACThc",
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},
{
"id":"ATVLACh2r",
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},
{
"id":"EX_3hpvstet_e",
"name":"Exchange reaction of 3-S-hydroxy-pravastatin-tetranor in hepatic vein",
"metabolites":{
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},
{
"id":"EX_3hsmvacid_e",
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"metabolites":{
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},
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},
{
"id":"EX_3ispvs_e",
"name":"Exchange reaction for 3-alpha-iso-pravastatin in portal blood",
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},
{
"id":"EX_4bhglz_e",
"name":"Exchange reaction for 4-beta-OH-gliclazide in hepatic vein",
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},
{
"id":"EX_4hatvlac_e",
"name":"Exchange reaction for 4-hydroxy-atorvastatin-lactone in portal blood",
"metabolites":{
"4hatvlac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_4hatvlac[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_4hatvlac_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_4ohmdz_e",
"name":"Exchange reaction for 4-OH-midazolam in hepatic vein",
"metabolites":{
"4ohmdz_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_4ohmdz[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_4ohmdz_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_56eppvs_e",
"name":"Exchange reaction of 5,6-epoxy-3-alpha-iso-pravastatin in hepatic vein",
"metabolites":{
"56eppvs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_56eppvs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_56eppvs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_5ohfvsglu_e",
"name":"Exchnage reaction for 5-hydroxy-fluvastatin-glucuronide in hepatic vein",
"metabolites":{
"5ohfvsglu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_5ohfvsglu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_5ohfvsglu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_6ahglz_e",
"name":"Exchange reaction for 6-alpha-OH-gliclazide in hepatic vein",
"metabolites":{
"6ahglz_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_6ahglz[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_6ahglz_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_6bhglz_e",
"name":"Exchange reaction for 6-beta-OH-gliclazide in hepatic vein",
"metabolites":{
"6bhglz_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_6bhglz[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_6bhglz_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_6bhglzglc_e",
"name":"Exchange reaction for 6-beta-OH-gliclazide-glucuronide in hepatic vein",
"metabolites":{
"6bhglzglc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_6bhglzglc[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_6bhglzglc_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_6csmvacid_e",
"name":"Exchange reaction for 6-beta-carboxy-simvastatin-acid form in bile",
"metabolites":{
"6csmvacid_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_6csmvacid[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_6csmvacid_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_6hlvst_e",
"name":"Exchange reaction for 6-beta-hydroxy-lovastatin in portal blood",
"metabolites":{
"6hlvst_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_6hlvst[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_6hlvst_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_6hsmvacid_e",
"name":"Exchange reaction for 6-beta-hydroxy simvastatin acid in bile",
"metabolites":{
"6hsmvacid_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_6hsmvacid[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_6hsmvacid_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_6melvacid_e",
"name":"Exchange reaction for 6-exomethylene-lovastatin-acid form in bile",
"metabolites":{
"6melvacid_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_6melvacid[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_6melvacid_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_6melvst_e",
"name":"Exchange reaction for 6-exomethylene-lovastatin in portal blood",
"metabolites":{
"6melvst_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_6melvst[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_6melvst_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_6ohfvsglu_e",
"name":"Exchange reaction for 6-hydroxy-fluvastatin-glucuronide in hepatic vein",
"metabolites":{
"6ohfvsglu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_6ohfvsglu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_6ohfvsglu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_7bhglzglc_e",
"name":"Exchange reaction for 7-beta-OH-gliclazide-glucuronide in hepatic vein",
"metabolites":{
"7bhglzglc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_7bhglzglc[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_7bhglzglc_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_acmp_e",
"name":"Exchange reaction for acetaminophen in small intestinal lumen",
"metabolites":{
"acmp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_acmp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_acmp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_acmpglu_e",
"name":"Exchange reaction for acetaminophen-glucuronide-conjugate in portal blood",
"metabolites":{
"acmpglu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_acmpglu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_acmpglu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_allop_e",
"name":"Exchange reaction for allopurinol in intestinal lumen",
"metabolites":{
"allop_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_allop[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_allop_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_am1a4ncs_e",
"name":"Exchange reaction for AM1A4N-cyclosporine in bile",
"metabolites":{
"am1a4ncs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_am1a4ncs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_am1a4ncs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_am1accs_e",
"name":"Exchange reaction for AM1Ac-cyclosporine in hepatic vein",
"metabolites":{
"am1accs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_am1accs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_am1accs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_am1acs_e",
"name":"Exchange reaction for AM1A (cyclosporine) in portal blood",
"metabolites":{
"am1acs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_am1acs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_am1acs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_am1c9cs_e",
"name":"Exchange reaction for AM1c9-cyclosporine in hepatic vein",
"metabolites":{
"am1c9cs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_am1c9cs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_am1c9cs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_am1ccs_e",
"name":"Exchange reaction for AM1c-cyclosporine in hepatic vein",
"metabolites":{
"am1ccs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_am1ccs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_am1ccs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_am4n9cs_e",
"name":"Exchange reaction for AM4N9-cyclosporine in hepatic vein",
"metabolites":{
"am4n9cs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_am4n9cs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_am4n9cs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_atvlac_e",
"name":"Exchange reaction for atorvastatin-lactone in portal blood",
"metabolites":{
"atvlac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_atvlac[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_atvlac_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_caribup_s_e",
"name":"Exchange reaction for S-carboxy ibuprofen in hepatic vein",
"metabolites":{
"caribup_s_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_caribup_s[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_caribup_s_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_caribupglu__S_e",
"name":"Exchange reaction for S-carboxy ibuprofen glucuronide in hepatic vein",
"metabolites":{
"caribupglu__S_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_caribupglu_S[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_caribupglu__S_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_crglz_e",
"name":"Exchange reaction for carboxy-gliclazide in hepatic vein",
"metabolites":{
"crglz_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_crglz[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_crglz_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_crvsm1_e",
"name":"Exchange reaction for cerivastatin-M1 in hepatic vein",
"metabolites":{
"crvsm1_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_crvsm1[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_crvsm1_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_crvsm23_e",
"name":"Exchange reaction for cerivastatin-M23 in hepatic vein",
"metabolites":{
"crvsm23_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_crvsm23[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_crvsm23_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_csasulp_e",
"name":"Exchange reaction for cyclosporine-sulphate in hepatic vein",
"metabolites":{
"csasulp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_csasulp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_csasulp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_cysacmp_e",
"name":"Exchange reaction for cysteine-conjugate-acetaminophen in hepatic vein",
"metabolites":{
"cysacmp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_cysacmp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_cysacmp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_deoxfvs_e",
"name":"Exchange reaction for deoxy-fluvastatin-dinor in hepatic vein",
"metabolites":{
"deoxfvs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_deoxfvs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_deoxfvs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_desfvs_e",
"name":"Exchange reaction for N-desisopropyl-fluvastatin in bile",
"metabolites":{
"desfvs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_desfvs[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_desfvs_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_fvstet_e",
"name":"Exchange reaction for des-isopropyl-dihydro-fluvastatin-tetranor in hepatic vein",
"metabolites":{
"fvstet_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_fvstet[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_fvstet_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_ibup__S_e",
"name":"Exchange reaction for ibuprofen S in intestinal lumen",
"metabolites":{
"ibup__S_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ibup_S[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ibup__S_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_lstn1gluc_e",
"name":"Exchange reaction for Losartan-N1-glucuronide in hepatic vein",
"metabolites":{
"lstn1gluc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lstn1gluc[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lstn1gluc_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_lstnm2_e",
"name":"Exchange reaction for Losartan-M2 in hepatic vein",
"metabolites":{
"lstnm2_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_lstnm2[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_lstnm2_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"LST4EXPhr",
"name":"Oxidation of losartan to active metabolite EXP3174 (M6) in hepatocytes",
"metabolites":{
"h2o_r":1.0,
"h_r":1.0,
"lst4exp_r":1.0,
"lstn_r":-1.0,
"o2_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1559_AT1 or 1576_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"LST4EXPhr"
]
},
"annotation":{
"bigg.reaction":[
"LST4EXPhr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LSTN1GLUChr",
"name":"Formation of losartan-N1-glucuronide in hepatocytes",
"metabolites":{
"lstn1gluc_r":1.0,
"lstn_r":-1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"54575_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"LSTN1GLUChr"
]
},
"annotation":{
"bigg.reaction":[
"LSTN1GLUChr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LSTNM7TDhc",
"name":"Uptake of Losartan-N2-glucuronide / Losartan-M7 into hepatocytes via diffusion",
"metabolites":{
"lstnm7_c":1.0,
"lstnm7_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"LSTNM7TDhc"
]
},
"annotation":{
"bigg.reaction":[
"LSTNM7TDhc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LSTNM7hr",
"name":"Glucuronidation of losartan to losartan-M7/Losartan-N2-glucuronide in hepatocytes",
"metabolites":{
"lstn_r":-1.0,
"lstnm7_r":1.0,
"udp_r":1.0,
"udpglcur_r":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"54658_AT1 or 54659_AT1 or 54657_AT1 or 54577_AT1 or 54576_AT1 or 54600_AT1 or 54575_AT1 or 7364_AT1 or 7367_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"LSTNM7hr"
]
},
"annotation":{
"bigg.reaction":[
"LSTNM7hr"
],
"sbo":"SBO:0000176"
}
},
{
"id":"LSTNtd",
"name":"Uptake of losartan via diffusion into enterocytes",
"metabolites":{
"lstn_c":1.0,
"lstn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"LSTNtd"
]
},
"annotation":{
"bigg.reaction":[
"LSTNtd"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LVSTACIDtu",
"name":"Efflux of lovastatin acid by P-gp from the enterocytes into lumen",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"lvstacid_c":-1.0,
"lvstacid_e":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"5243_AT1",
"subsystem":"Drug metabolism",
"notes":{
"original_bigg_ids":[
"LVSTACIDtu"
]
},
"annotation":{
"bigg.reaction":[
"LVSTACIDtu"
],
"sbo":"SBO:0000185"
}
},
{
"id":"LVSTACOXD6Hhep",
"name":"Hydroxylation of lovastatin-hydroxyacid form to 6-beta-hydroxy-lovastatin-acid form",
"metabolites":{
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{
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{
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{
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{
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{
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{
"id":"MHGLZtev",
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{
"id":"NDERSVteb",
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{
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{
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{
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{
"id":"OXYPR7tehv",
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{
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{
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{
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{
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{
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{
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{
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"gene_reaction_rule":"10690_AT1",
"subsystem":"Blood group synthesis",
"notes":{
"original_bigg_ids":[
"FUT93g"
]
},
"annotation":{
"bigg.reaction":[
"FUT93g"
],
"metanetx.reaction":[
"MNXR99751"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FUT95g",
"name":"Alpha-(1,3)-fucosyltransferase",
"metabolites":{
"fucfucfucgalacglcgal14acglcgalgluside_hs_g":1.0,
"fucfucgalacglcgal14acglcgalgluside_hs_g":-1.0,
"gdp_g":1.0,
"gdpfuc_g":-1.0,
"h_g":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10690_AT1",
"subsystem":"Blood group synthesis",
"notes":{
"original_bigg_ids":[
"FUT95g"
]
},
"annotation":{
"bigg.reaction":[
"FUT95g"
],
"metanetx.reaction":[
"MNXR99755"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FUT98g",
"name":"Alpha-(1,3)-fucosyltransferase",
"metabolites":{
"fuc13galacglcgal14acglcgalgluside_hs_g":1.0,
"galacglcgal14acglcgalgluside_hs_g":-1.0,
"gdp_g":1.0,
"gdpfuc_g":-1.0,
"h_g":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10690_AT1",
"subsystem":"Blood group synthesis",
"notes":{
"original_bigg_ids":[
"FUT98g"
]
},
"annotation":{
"bigg.reaction":[
"FUT98g"
],
"metanetx.reaction":[
"MNXR99761"
],
"sbo":"SBO:0000176"
}
},
{
"id":"G14T18g",
"name":"Beta-N-acetylglucosaminylglycopeptide beta-1,4-galactosyltransferase, Golgi",
"metabolites":{
"core4_g":-1.0,
"h_g":2.0,
"ksii_core4_pre1_g":1.0,
"udp_g":2.0,
"udpgal_g":-2.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8703_AT1 or 8704_AT2 or 8704_AT1 or 2683_AT1 or 9334_AT1",
"subsystem":"Keratan sulfate synthesis",
"notes":{
"original_bigg_ids":[
"G14T18g"
]
},
"annotation":{
"bigg.reaction":[
"G14T18g"
],
"metanetx.reaction":[
"MNXR99810"
],
"sbo":"SBO:0000176"
}
},
{
"id":"G14T19g",
"name":"Beta-N-acetylglucosaminylglycopeptide beta-1,4-galactosyltransferase, Golgi",
"metabolites":{
"h_g":1.0,
"ksii_core4_pre3_g":-1.0,
"ksii_core4_pre4_g":1.0,
"udp_g":1.0,
"udpgal_g":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9334_AT1 or 8704_AT1 or 8703_AT1 or 8704_AT2 or 2683_AT1",
"subsystem":"Keratan sulfate synthesis",
"notes":{
"original_bigg_ids":[
"G14T19g"
]
},
"annotation":{
"bigg.reaction":[
"G14T19g"
],
"metanetx.reaction":[
"MNXR99811"
],
"sbo":"SBO:0000176"
}
},
{
"id":"G14T3g",
"name":"Beta-N-acetylglucosaminylglycopeptide beta-1,4-galactosyltransferase, Golgi",
"metabolites":{
"h_g":1.0,
"ksii_core2_pre3_g":-1.0,
"ksii_core2_pre4_g":1.0,
"udp_g":1.0,
"udpgal_g":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8703_AT1 or 2683_AT1 or 8704_AT2 or 8704_AT1 or 9334_AT1",
"subsystem":"Keratan sulfate synthesis",
"notes":{
"original_bigg_ids":[
"G14T3g"
]
},
"annotation":{
"bigg.reaction":[
"G14T3g"
],
"metanetx.reaction":[
"MNXR99815"
],
"sbo":"SBO:0000176"
}
},
{
"id":"G14T4g",
"name":"Beta-N-acetylglucosaminylglycopeptide beta-1,4-galactosyltransferase, Golgi",
"metabolites":{
"h_g":1.0,
"ksii_core2_pre6_g":-1.0,
"ksii_core2_pre7_g":1.0,
"udp_g":1.0,
"udpgal_g":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8703_AT1 or 2683_AT1 or 8704_AT2 or 8704_AT1 or 9334_AT1",
"subsystem":"Keratan sulfate synthesis",
"notes":{
"original_bigg_ids":[
"G14T4g"
]
},
"annotation":{
"bigg.reaction":[
"G14T4g"
],
"metanetx.reaction":[
"MNXR99816"
],
"sbo":"SBO:0000176"
}
},
{
"id":"G3PD2m",
"name":"Glycerol-3-phosphate dehydrogenase (FAD), mitochondrial",
"metabolites":{
"dhap_c":1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"glyc3p_c":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2820_AT1",
"subsystem":"Glycolysis/gluconeogenesis",
"notes":{
"original_bigg_ids":[
"G3PD2m"
]
},
"annotation":{
"bigg.reaction":[
"G3PD2m"
],
"ec-code":[
"1.1.99.5"
],
"metanetx.reaction":[
"MNXR99878"
],
"sbo":"SBO:0000185",
"seed.reaction":[
"rxn12986"
]
}
},
{
"id":"G5SADrm",
"name":"L glutamate 5 semialdehyde dehydratase  reversible  mitochondrial",
"metabolites":{
"1pyr5c_m":1.0,
"glu5sa_m":-1.0,
"h2o_m":1.0,
"h_m":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Arginine and proline metabolism",
"notes":{
"original_bigg_ids":[
"G5SADrm"
]
},
"annotation":{
"bigg.reaction":[
"G5SADrm"
],
"biocyc":[
"META:SPONTPRO-RXN"
],
"kegg.reaction":[
"R03314"
],
"metanetx.reaction":[
"MNXR99897"
],
"reactome.reaction":[
"R-HSA-70655",
"R-HSA-70667"
],
"rhea":[
"28237",
"28234",
"28235",
"28236"
],
"sbo":"SBO:0000176",
"seed.reaction":[
"rxn11220",
"rxn02374"
]
}
},
{
"id":"G6Pter",
"name":"Glucose 6 phosphate endoplasmic reticular transport via diffusion",
"metabolites":{
"g6p_c":-1.0,
"g6p_r":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2542_AT1",
"subsystem":"Transport, endoplasmic reticular",
"notes":{
"original_bigg_ids":[
"G6Pter"
]
},
"annotation":{
"bigg.reaction":[
"G6Pter"
],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185",
"seed.reaction":[
"rxn08570",
"rxn09644",
"rxn13641"
]
}
},
{
"id":"GAL3ST11",
"name":"Galactosylceramide sulfotransferase",
"metabolites":{
"galside_hs_g":-1.0,
"h_g":1.0,
"pap_g":1.0,
"paps_g":-1.0,
"sgalside_hs_g":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9514_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"GAL3ST11"
]
},
"annotation":{
"bigg.reaction":[
"GAL3ST11"
],
"metanetx.reaction":[
"MNXR99924"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GAL3ST12",
"name":"Galactosylceramide sulfotransferase",
"metabolites":{
"digalsgalside_hs_g":1.0,
"digalside_hs_g":-1.0,
"h_g":1.0,
"pap_g":1.0,
"paps_g":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9514_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"GAL3ST12"
]
},
"annotation":{
"bigg.reaction":[
"GAL3ST12"
],
"ec-code":[
"2.8.2.11"
],
"metanetx.reaction":[
"MNXR99926"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GALASE11ly",
"name":"Beta-galactosidase, lysosomal",
"metabolites":{
"gal_l":1.0,
"h2o_l":-1.0,
"ksi_deg29_l":-1.0,
"ksi_deg30_l":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(5476_AT1 and 2720_AT1 and 2588_AT1 and 4758_AT1) or (5476_AT1 and 2720_AT1)",
"subsystem":"Keratan sulfate degradation",
"notes":{
"original_bigg_ids":[
"GALASE11ly"
]
},
"annotation":{
"bigg.reaction":[
"GALASE11ly"
],
"metanetx.reaction":[
"MNXR99935"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GALASE14ly",
"name":"Beta-galactosidase, lysosomal",
"metabolites":{
"gal_l":1.0,
"h2o_l":-1.0,
"ksi_deg38_l":-1.0,
"ksi_deg39_l":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(5476_AT1 and 2720_AT1 and 2588_AT1 and 4758_AT1) or (5476_AT1 and 2720_AT1)",
"subsystem":"Keratan sulfate degradation",
"notes":{
"original_bigg_ids":[
"GALASE14ly"
]
},
"annotation":{
"bigg.reaction":[
"GALASE14ly"
],
"metanetx.reaction":[
"MNXR99938"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GALASE18ly",
"name":"Beta-galactosidase, lysosomal",
"metabolites":{
"gal_l":1.0,
"h2o_l":-1.0,
"ksii_core2_deg8_l":-1.0,
"ksii_core2_deg9_l":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(5476_AT1 and 2720_AT1 and 2588_AT1 and 4758_AT1) or (5476_AT1 and 2720_AT1)",
"subsystem":"Keratan sulfate degradation",
"notes":{
"original_bigg_ids":[
"GALASE18ly"
]
},
"annotation":{
"bigg.reaction":[
"GALASE18ly"
],
"metanetx.reaction":[
"MNXR99942"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GALASE3ly",
"name":"Beta-galactosidase, lysosomal",
"metabolites":{
"gal_l":2.0,
"h2o_l":-2.0,
"ksi_deg5_l":-1.0,
"ksi_deg6_l":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(5476_AT1 and 2720_AT1 and 2588_AT1 and 4758_AT1) or (5476_AT1 and 2720_AT1)",
"subsystem":"Keratan sulfate degradation",
"notes":{
"original_bigg_ids":[
"GALASE3ly"
]
},
"annotation":{
"bigg.reaction":[
"GALASE3ly"
],
"metanetx.reaction":[
"MNXR99946"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GALASE5ly",
"name":"Beta-galactosidase, lysosomal",
"metabolites":{
"gal_l":1.0,
"h2o_l":-1.0,
"ksi_deg11_l":-1.0,
"ksi_deg12_l":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(5476_AT1 and 2720_AT1 and 2588_AT1 and 4758_AT1) or (5476_AT1 and 2720_AT1)",
"subsystem":"Keratan sulfate degradation",
"notes":{
"original_bigg_ids":[
"GALASE5ly"
]
},
"annotation":{
"bigg.reaction":[
"GALASE5ly"
],
"metanetx.reaction":[
"MNXR99948"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GALASE6ly",
"name":"Beta-galactosidase, lysosomal",
"metabolites":{
"gal_l":1.0,
"h2o_l":-1.0,
"ksi_deg14_l":-1.0,
"ksi_deg15_l":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"(5476_AT1 and 2720_AT1 and 2588_AT1 and 4758_AT1) or (5476_AT1 and 2720_AT1)",
"subsystem":"Keratan sulfate degradation",
"notes":{
"original_bigg_ids":[
"GALASE6ly"
]
},
"annotation":{
"bigg.reaction":[
"GALASE6ly"
],
"metanetx.reaction":[
"MNXR99949"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GALC",
"name":"Galactocerebrosidase",
"metabolites":{
"crm_hs_l":1.0,
"gal_l":1.0,
"galside_hs_l":-1.0,
"h2o_l":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2581_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"GALC"
]
},
"annotation":{
"bigg.reaction":[
"GALC"
],
"metanetx.reaction":[
"MNXR99954"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GALFUC12GAL14ACGLCGALGLUSIDEte",
"name":"Blood group intracellular transport",
"metabolites":{
"galfuc12gal14acglcgalgluside_hs_c":1.0,
"galfuc12gal14acglcgalgluside_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GALFUC12GAL14ACGLCGALGLUSIDEte"
]
},
"annotation":{
"bigg.reaction":[
"GALFUC12GAL14ACGLCGALGLUSIDEte"
],
"metanetx.reaction":[
"MNXR99966"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GALFUCGALACGLCGAL14ACGLCGALGLUSIDEte",
"name":"Blood group intracellular transport",
"metabolites":{
"galfucgalacglcgal14acglcgalgluside_hs_c":1.0,
"galfucgalacglcgal14acglcgalgluside_hs_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
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"GALFUCGALACGLCGAL14ACGLCGALGLUSIDEte"
]
},
"annotation":{
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],
"metanetx.reaction":[
"MNXR99968"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GALFUCGALACGLCGAL14ACGLCGALGLUSIDEtg",
"name":"Blood group intracellular transport",
"metabolites":{
"galfucgalacglcgal14acglcgalgluside_hs_c":1.0,
"galfucgalacglcgal14acglcgalgluside_hs_g":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, golgi apparatus",
"notes":{
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]
},
"annotation":{
"bigg.reaction":[
"GALFUCGALACGLCGAL14ACGLCGALGLUSIDEtg"
],
"metanetx.reaction":[
"MNXR99968"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GALGALGALTHCRMte",
"name":"Transport of Gal-Gal-Gal-Gal-Gal-Glc-Cer ",
"metabolites":{
"galgalgalthcrm_hs_c":-1.0,
"galgalgalthcrm_hs_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GALGALGALTHCRMte"
]
},
"annotation":{
"bigg.reaction":[
"GALGALGALTHCRMte"
],
"metanetx.reaction":[
"MNXR99972"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GALGLUSIDEtg",
"name":"Galgluside hs intracellular transport",
"metabolites":{
"galgluside_hs_c":-1.0,
"galgluside_hs_g":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, golgi apparatus",
"notes":{
"original_bigg_ids":[
"GALGLUSIDEtg"
]
},
"annotation":{
"bigg.reaction":[
"GALGLUSIDEtg"
],
"metanetx.reaction":[
"MNXR99974"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GALGLUSIDEtl",
"name":"Galgluside hs intracellular transport",
"metabolites":{
"galgluside_hs_c":-1.0,
"galgluside_hs_l":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Transport, lysosomal",
"notes":{
"original_bigg_ids":[
"GALGLUSIDEtl"
]
},
"annotation":{
"bigg.reaction":[
"GALGLUSIDEtl"
],
"metanetx.reaction":[
"MNXR99974"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GALGT1",
"name":"Beta-1,4 N-acetylgalactosaminyltransferase",
"metabolites":{
"ga2_hs_g":1.0,
"galgluside_hs_g":-1.0,
"h_g":1.0,
"udp_g":1.0,
"udpacgal_g":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2583_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"GALGT1"
]
},
"annotation":{
"bigg.reaction":[
"GALGT1"
],
"metanetx.reaction":[
"MNXR99976"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GALGT4",
"name":"Beta-1,4 N-acetylgalactosaminyltransferase",
"metabolites":{
"gt2_hs_g":1.0,
"gt3_hs_g":-1.0,
"h_g":1.0,
"udp_g":1.0,
"udpacgal_g":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"2583_AT1",
"subsystem":"Sphingolipid metabolism",
"notes":{
"original_bigg_ids":[
"GALGT4"
]
},
"annotation":{
"bigg.reaction":[
"GALGT4"
],
"metanetx.reaction":[
"MNXR99982"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GALNTg",
"name":"GalNAc transferase, Golgi apparatus",
"metabolites":{
"Ser_Thr_g":-1.0,
"Tn_antigen_g":1.0,
"h_g":1.0,
"udp_g":1.0,
"udpacgal_g":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"26290_AT1 or 79695_AT1 or 2589_AT1 or 50614_AT1 or 8693_AT1 or 55568_AT2 or 114805_AT1 or 11226_AT1 or 117248_AT1 or 11227_AT1 or 55568_AT1 or 2590_AT1 or 51809_AT1 or 26290_AT1 or 79623_AT1 or 63917_AT1 or 2591_AT1",
"subsystem":"O-glycan metabolism",
"notes":{
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"GALNTg"
]
},
"annotation":{
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"GALNTg"
],
"metanetx.reaction":[
"MNXR100001"
],
"sbo":"SBO:0000176"
}
},
{
"id":"GALOR",
"name":"D-Galactose:NADP+ 1-oxidoreductase",
"metabolites":{
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"galt_c":1.0,
"h_c":-1.0,
"nadp_c":1.0,
"nadph_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"231_AT1 or 10327_AT2 or 10327_AT1",
"subsystem":"Galactose metabolism",
"notes":{
"original_bigg_ids":[
"GALOR"
]
},
"annotation":{
"bigg.reaction":[
"GALOR"
],
"biocyc":[
"META:RXN-12078"
],
"ec-code":[
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],
"kegg.reaction":[
"R01095"
],
"metanetx.reaction":[
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],
"rhea":[
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"37970",
"37967",
"37969"
],
"sabiork":[
"1357"
],
"sbo":"SBO:0000176",
"seed.reaction":[
"rxn11552"
]
}
},
{
"id":"GALTg",
"name":"UDP-D-galactose:D-xylose galactosyltransferase, Golgi apparatus",
"metabolites":{
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"lxser_g":1.0,
"udp_g":1.0,
"udpgal_g":-1.0,
"xser_g":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11285_AT1",
"subsystem":"Chondroitin synthesis",
"notes":{
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]
},
"annotation":{
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"GALTg"
],
"metanetx.reaction":[
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],
"sbo":"SBO:0000176"
}
},
{
"id":"GAMt1r",
"name":"Glucosamine transport (uniport)",
"metabolites":{
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"gam_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6513_AT1 or 6517_AT1 or 6514_AT1",
"subsystem":"Transport, extracellular",
"notes":{
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]
},
"annotation":{
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"GAMt1r"
],
"metanetx.reaction":[
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],
"sbo":"SBO:0000185",
"seed.reaction":[
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]
}
},
{
"id":"GAMYe",
"name":"Glucoamylase, extracellular (glygn5 -> malt)",
"metabolites":{
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{
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},
{
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{
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{
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},
{
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{
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{
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},
{
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},
{
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{
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{
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{
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{
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{
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},
{
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{
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},
{
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},
{
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},
{
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},
{
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}
},
{
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"name":"Fatty acid transport via diffusion",
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},
{
"id":"LINKDEG4ly",
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"gal_l":2.0,
"glcur_l":1.0,
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"h_l":2.0,
"so4_l":2.0,
"xyl__D_l":1.0
},
"lower_bound":0.0,
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}
},
{
"id":"L_LACDcm",
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"focytC_m":2.0,
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"lower_bound":0.0,
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},
{
"id":"L_LACtm",
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"reactome.reaction":[
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"R-XTR-373875",
"R-DME-373867",
"R-DME-373875",
"R-MMU-373867",
"R-TGU-373867",
"R-GGA-373887",
"R-SSC-373875",
"R-DRE-373875",
"R-BTA-373867",
"R-GGA-373867",
"R-CFA-373867",
"R-SSC-373867",
"R-DRE-373867",
"R-RNO-373867",
"R-TGU-373875",
"R-XTR-373867",
"R-HSA-373867",
"R-CFA-373875",
"R-MMU-373875",
"R-HSA-373875",
"R-GGA-373875",
"R-RNO-373875",
"R-BTA-373875"
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"rhea":[
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"29415",
"29416",
"29417"
],
"sbo":"SBO:0000185",
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"rxn08794",
"rxn13334"
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}
},
{
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"lower_bound":-1000.0,
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},
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}
},
{
"id":"LNELDCCPT2",
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"metanetx.reaction":[
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}
},
{
"id":"LNELDCCRNt",
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"lneldccrn_m":1.0
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},
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"metanetx.reaction":[
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"sbo":"SBO:0000185"
}
},
{
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},
{
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},
{
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}
},
{
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},
{
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},
{
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"for_c":1.0,
"h2o_c":4.0,
"h_c":-2.0,
"lanost_c":-1.0,
"nadp_c":3.0,
"nadph_c":-3.0,
"o2_c":-3.0
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"lower_bound":0.0,
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}
},
{
"id":"LNSTLSr",
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"14623",
"14624",
"14622"
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}
},
{
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},
{
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"rhea":[
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"11994",
"11995",
"11993"
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},
{
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},
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},
{
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},
{
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},
{
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},
{
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"nadph_r":-1.0,
"o2_r":-1.0
},
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},
{
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},
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},
{
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"nh4_x":1.0,
"o2_x":-1.0
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},
{
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},
{
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},
{
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"3mldz_c":-1.0,
"h2o_c":-1.0,
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},
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},
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{
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{
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{
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},
{
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{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
{
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},
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"original_bigg_ids":[
"FAOXC122x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC122x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC123C102m",
"name":"Fatty Acid Beta Oxidation (C12:3->C10:2), Mitochondrial",
"metabolites":{
"2dodtricoa_m":-1.0,
"accoa_m":1.0,
"coa_m":-1.0,
"dec47dicoa_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"nad_m":-1.0,
"nadh_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1892_AT1 and 3033_AT1 and 10449_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC123C102m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC123C102m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC123x",
"name":"Isomerization (C12:3), Peroxisomal",
"metabolites":{
"2dodtricoa_x":1.0,
"3dodtricoa_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1962_AT1 or 10455_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC123x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC123x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC120100m",
"name":"Beta oxidation of long chain fatty acid",
"metabolites":{
"accoa_m":1.0,
"coa_m":-1.0,
"dcacoa_m":1.0,
"ddcacoa_m":-1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"nad_m":-1.0,
"nadh_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"34_AT1 and 1892_AT1 and 3033_AT1 and 10449_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC12C10m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC120100m"
],
"metanetx.reaction":[
"MNXR99273"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC12C12OHm",
"name":"Fatty Acid Beta Oxidation (C12->Ohc12), Mitochondrial",
"metabolites":{
"3hddcoa_m":1.0,
"ddcacoa_m":-1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"34_AT1 and 1892_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC12C12OHm"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC12C12OHm"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC12DCTc",
"name":"Transport of Dodecanedioyl Carnitine into Cytosol",
"metabolites":{
"c12dc_c":1.0,
"c12dc_x":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"788_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC12DCTc"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC12DCTc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"FAOXC141C121m",
"name":"Fatty Acid Beta Oxidation (C14:1->C12:1), Mitochondrial",
"metabolites":{
"accoa_m":1.0,
"coa_m":-1.0,
"dd5ecoa_m":1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"nad_m":-1.0,
"nadh_m":1.0,
"tetd7ecoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1 and 3032_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC141C121m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC141C121m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC141C121x",
"name":"Fatty Acid Beta Xoidation (C14:1->C12:1), Peroxisomal",
"metabolites":{
"accoa_x":1.0,
"coa_x":-1.0,
"dd3coa_x":1.0,
"h2o2_x":1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0,
"o2_x":-1.0,
"tetde5coa_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1 and 1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC141C121x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC141C121x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC142C142OHm",
"name":"Fatty Acid Beta Oxidation (C14:2->C14:2Oh), Mitochondrial",
"metabolites":{
"3ttetddcoa_m":1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"ttetddcoa_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC142C142OHm"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC142C142OHm"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC140120x",
"name":"Beta oxidation of long chain fatty acid",
"metabolites":{
"accoa_x":1.0,
"coa_x":-1.0,
"ddcacoa_x":1.0,
"h2o2_x":1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0,
"o2_x":-1.0,
"tdcoa_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1 and 1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC14C12x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC140120x"
],
"metanetx.reaction":[
"MNXR99283"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC14DCC12DCx",
"name":"Fatty Acid Beta Oxidation (C14Dc->C12Dc), Peroxisomal",
"metabolites":{
"accoa_x":1.0,
"c12dccoa_x":1.0,
"c14dccoa_x":-1.0,
"coa_x":-1.0,
"h2o2_x":1.0,
"h2o_x":-1.0,
"h_x":1.0,
"nad_x":-1.0,
"nadh_x":1.0,
"o2_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1 and 1962_AT1 and 3295_AT1 and 30_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC14DCC12DCx"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC14DCC12DCx"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC15C13m",
"name":"Fatty Acid Beta Oxidation (C15->C13), Mitochondrial",
"metabolites":{
"accoa_m":1.0,
"coa_m":-1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"nad_m":-1.0,
"nadh_m":1.0,
"ptdcacoa_m":-1.0,
"tridcoa_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1 and 3032_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC15C13m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC15C13m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC15NADPx",
"name":"Fatty acid alpha oxidation(2-Hydroxyphytanoyl-CoA)(nadp)x",
"metabolites":{
"forcoa_x":1.0,
"h2o_x":-1.0,
"h_x":2.0,
"nadp_x":-1.0,
"nadph_x":1.0,
"phyt2ohcoa_x":-1.0,
"prist_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"26061_AT1 and 224_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC15NADPx"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC15NADPx"
],
"metanetx.reaction":[
"MNXR99292"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC162C142m",
"name":"Fatty Acid Beta Oxidation (C16:2->C14:2), Mitochondrial",
"metabolites":{
"accoa_m":1.0,
"coa_m":-1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"hexddcoa_m":-1.0,
"nad_m":-1.0,
"nadh_m":1.0,
"tetdecdicoa_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1 and 3032_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC162C142m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC162C142m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC163C143m",
"name":"Fatty Acid Beta Oxidation (C16:3->C14:3), Mitochondrial",
"metabolites":{
"5tedtricoa_m":1.0,
"accoa_m":1.0,
"coa_m":-1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"hexdtrcoa_m":-1.0,
"nad_m":-1.0,
"nadh_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1 and 3032_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC163C143m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC163C143m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC163GC142m",
"name":"Fatty Acid Beta Oxidation (C16:3->C14:2), Mitochondrial",
"metabolites":{
"2hexdtricoa_m":-1.0,
"accoa_m":1.0,
"coa_m":-1.0,
"h2o_m":-1.0,
"h_m":1.0,
"nad_m":-1.0,
"nadh_m":1.0,
"tetdecdicoa_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"3030_AT1 and 3032_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC163GC142m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC163GC142m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC164C165x",
"name":"Fatty Acid Beta Oxidation (C16:4->C16:5), Peroxisomal",
"metabolites":{
"4hexdtetcoa_x":-1.0,
"h2o2_x":1.0,
"hexdpencoa_x":1.0,
"o2_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"51_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC164C165x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC164C165x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC164GC163m",
"name":"Fatty Acid Beta Oxidation (C16:4->C16:3), Mitochondrial",
"metabolites":{
"3hexdtricoa_m":1.0,
"h_m":-1.0,
"hexdectecoa_m":-1.0,
"nadp_m":1.0,
"nadph_m":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"1666_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC164GC163m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC164GC163m"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC165C164x",
"name":"Fatty Acid Beta Oxidation (C16:5->C16:4), Peroxisomal",
"metabolites":{
"3hexdtetcoa_x":1.0,
"h_x":-1.0,
"hexdpencoa_x":-1.0,
"nadp_x":1.0,
"nadph_x":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"26063_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC165C164x"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC165C164x"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC16Brx",
"name":"Phyt fatty acid activation",
"metabolites":{
"amp_x":1.0,
"atp_x":-1.0,
"coa_x":-1.0,
"phyt_x":-1.0,
"phytcoa_x":1.0,
"ppi_x":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"11001_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC16BRx"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC16Brx"
],
"ec-code":[
"6.2.1.24"
],
"metanetx.reaction":[
"MNXR99186"
],
"sbo":"SBO:0000176"
}
},
{
"id":"FAOXC160140m",
"name":"Beta oxidation of long chain fatty acid",
"metabolites":{
"accoa_m":1.0,
"coa_m":-1.0,
"fad_m":-1.0,
"fadh2_m":1.0,
"h2o_m":-1.0,
"h_m":1.0,
"nad_m":-1.0,
"nadh_m":1.0,
"pmtcoa_m":-1.0,
"tdcoa_m":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"37_AT1 and 3030_AT1 and 3032_AT1",
"subsystem":"Fatty acid oxidation",
"notes":{
"original_bigg_ids":[
"FAOXC16C14m"
]
},
"annotation":{
"bigg.reaction":[
"FAOXC160140m"
],
"metanetx.reaction":[
"MNXR99295"
],
"sbo":"SBO:0000176"
}
},
{
"id":"EX_5hoxindoa_e",
"name":"Exchange of 5-Hydroxyindoleacetate",
"metabolites":{
"5hoxindoa_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_5hoxindoa[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_5hoxindoa_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_cala_e",
"name":"Exchange of N-Carbamoyl-Beta-Alaninate",
"metabolites":{
"cala_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_cala[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_cala_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_cholp_e",
"name":"Exchange of Choline Phosphate",
"metabolites":{
"cholp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_cholp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_cholp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_dmgly_e",
"name":"Exchange of N,N-Dimethylglycine",
"metabolites":{
"dmgly_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_dmgly[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_dmgly_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_ethamp_e",
"name":"Exchange of Ethanolamine Phosphate",
"metabolites":{
"ethamp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_ethamp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_ethamp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_g3pc_e",
"name":"Sn-Glycero-3-phosphocholine exchange",
"metabolites":{
"g3pc_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_g3pc[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_g3pc_e"
],
"metanetx.reaction":[
"MNXR99874"
],
"rhea":[
"32912",
"32911",
"32913",
"32914"
],
"sbo":"SBO:0000627",
"seed.reaction":[
"rxn08554",
"rxn13291"
]
}
},
{
"id":"EX_gudac_e",
"name":"Exchange of Guanidinoacetic Acid",
"metabolites":{
"gudac_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_gudac[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_gudac_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hcys__L_e",
"name":"L-homocysteine exchange",
"metabolites":{
"hcys__L_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hcys_L[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hcys__L_e"
],
"metanetx.reaction":[
"MNXR100580"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_kynate_e",
"name":"Exchange of Kynurenic Acid",
"metabolites":{
"kynate_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_kynate[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_kynate_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_L2aadp_e",
"name":"Exchange of L-2-Aminoadipate",
"metabolites":{
"L2aadp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_L2aadp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_L2aadp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_pep_e",
"name":"Phosphoenolpyruvate exchange",
"metabolites":{
"pep_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_pep[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_pep_e"
],
"metanetx.reaction":[
"MNXR102494"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_xtsn_e",
"name":"Xanthosine exchange",
"metabolites":{
"xtsn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_xtsn[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_xtsn_e"
],
"metanetx.reaction":[
"MNXR105247"
],
"sbo":"SBO:0000627",
"seed.reaction":[
"rxn09382"
]
}
},
{
"id":"EX_udpglcur_e",
"name":"UDP-D-glucuronate exchange",
"metabolites":{
"udpglcur_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_udpglcur[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_udpglcur_e"
],
"metanetx.reaction":[
"MNXR105066"
],
"sbo":"SBO:0000627",
"seed.reaction":[
"rxn09352"
]
}
},
{
"id":"EX_hLkynr_e",
"name":"Exchange ",
"metabolites":{
"hLkynr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hLkynr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hLkynr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_nicrnt_e",
"name":"Exchange ",
"metabolites":{
"nicrnt_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_nicrnt[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_nicrnt_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_orot5p_e",
"name":"Exchange ",
"metabolites":{
"orot5p_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_orot5p[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_orot5p_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"ALAB0AT3tc",
"name":"Alanine Transport by B0At3",
"metabolites":{
"ala__L_c":1.0,
"ala__L_e":-1.0,
"cl_c":1.0,
"cl_e":-1.0,
"na1_c":1.0,
"na1_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"348932_AT1 and 57393_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ALAB0AT3tc"
]
},
"annotation":{
"bigg.reaction":[
"ALAB0AT3tc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ARGB0AT3tc",
"name":"Arginine Transport by B0At3",
"metabolites":{
"arg__L_c":1.0,
"arg__L_e":-1.0,
"cl_c":1.0,
"cl_e":-1.0,
"na1_c":1.0,
"na1_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"348932_AT1 and 57393_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ARGB0AT3tc"
]
},
"annotation":{
"bigg.reaction":[
"ARGB0AT3tc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ASNB0AT3tc",
"name":"Asparagine Transport by B0At3",
"metabolites":{
"asn__L_c":1.0,
"asn__L_e":-1.0,
"cl_c":1.0,
"cl_e":-1.0,
"na1_c":1.0,
"na1_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"348932_AT1 and 57393_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ASNB0AT3tc"
]
},
"annotation":{
"bigg.reaction":[
"ASNB0AT3tc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"BETBGTtc",
"name":"Betaine Transport by Bgt",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"glyb_c":1.0,
"glyb_e":-1.0,
"na1_c":1.0,
"na1_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6539_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"BETBGTtc"
]
},
"annotation":{
"bigg.reaction":[
"BETBGTtc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"CYSB0AT3tc",
"name":"Cysteine Transport by B0At3",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"cys__L_c":1.0,
"cys__L_e":-1.0,
"na1_c":1.0,
"na1_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"348932_AT1 and 57393_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"CYSB0AT3tc"
]
},
"annotation":{
"bigg.reaction":[
"CYSB0AT3tc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"ESTROSABCCte",
"name":"Estrone-Sulphate Transport by ABCa11",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"estrones_c":-1.0,
"estrones_e":1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"85320_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"ESTROSABCCte"
]
},
"annotation":{
"bigg.reaction":[
"ESTROSABCCte"
],
"sbo":"SBO:0000185"
}
},
{
"id":"FOLOAT1tc",
"name":"Folate Transport by Oat1",
"metabolites":{
"akg_c":-1.0,
"akg_e":1.0,
"fol_c":1.0,
"fol_e":-1.0,
"na1_c":1.0,
"na1_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"9356_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"FOLOAT1tc"
]
},
"annotation":{
"bigg.reaction":[
"FOLOAT1tc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"FOLOATPtc",
"name":"Folate Transport by OATP",
"metabolites":{
"fol_c":1.0,
"fol_e":-1.0,
"hco3_c":-1.0,
"hco3_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10599_AT1 or 6579_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"FOLOATPtc"
]
},
"annotation":{
"bigg.reaction":[
"FOLOATPtc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GLNB0AT3tc",
"name":"Glutamine Transport by B0At3",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"gln__L_c":1.0,
"gln__L_e":-1.0,
"na1_c":1.0,
"na1_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"348932_AT1 and 57393_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GLNB0AT3tc"
]
},
"annotation":{
"bigg.reaction":[
"GLNB0AT3tc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"GSNt2",
"name":"Guanosine transport in via proton symport",
"metabolites":{
"gsn_c":1.0,
"gsn_e":-1.0,
"h_c":1.0,
"h_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"64078_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"GSNt2r"
]
},
"annotation":{
"bigg.reaction":[
"GSNt2"
],
"metanetx.reaction":[
"MNXR100434"
],
"sbo":"SBO:0000185",
"seed.reaction":[
"rxn08671",
"rxn05204",
"rxn09747"
]
}
},
{
"id":"LEUKABCtc",
"name":"Leukotriene Transport by ABCa8",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"leuktrC4_c":1.0,
"leuktrC4_e":-1.0,
"pi_c":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"10351_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"LEUKABCtc"
]
},
"annotation":{
"bigg.reaction":[
"LEUKABCtc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PHEB0AT3tc",
"name":"Phenylalanine Transport by B0At3",
"metabolites":{
"cl_c":1.0,
"cl_e":-1.0,
"na1_c":1.0,
"na1_e":-1.0,
"phe__L_c":1.0,
"phe__L_e":-1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"348932_AT1 and 57393_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PHEB0AT3tc"
]
},
"annotation":{
"bigg.reaction":[
"PHEB0AT3tc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"PSHSABCtc",
"name":"Phosphatidylserine Transport by ABCa1",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"ps_hs_c":-1.0,
"ps_hs_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"19_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"PSHSABCtc"
]
},
"annotation":{
"bigg.reaction":[
"PSHSABCtc"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_alaasnleu_e",
"name":"Exchange of AlaAsnLeu",
"metabolites":{
"alaasnleu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_alaasnleu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_alaasnleu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_alalysthr_e",
"name":"Exchange of AlaLysThr",
"metabolites":{
"alalysthr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_alalysthr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_alalysthr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_argargmet_e",
"name":"Exchange of ArgArgMet",
"metabolites":{
"argargmet_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_argargmet[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_argargmet_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_argcysser_e",
"name":"Exchange of ArgCysSer",
"metabolites":{
"argcysser_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_argcysser[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_argcysser_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_arggluglu_e",
"name":"Exchange of ArgGluGlu",
"metabolites":{
"arggluglu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_arggluglu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_arggluglu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_arghisthr_e",
"name":"Exchange of ArgHisThr",
"metabolites":{
"arghisthr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_arghisthr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_arghisthr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_argleuphe_e",
"name":"Exchange of ArgLeuPhe",
"metabolites":{
"argleuphe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_argleuphe[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_argleuphe_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_arglysasp_e",
"name":"Exchange of ArgLysAsp",
"metabolites":{
"arglysasp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_arglysasp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_arglysasp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_argserser_e",
"name":"Exchange of ArgSerSer",
"metabolites":{
"argserser_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_argserser[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_argserser_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_asnmetpro_e",
"name":"Exchange of AsnMetPro",
"metabolites":{
"asnmetpro_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_asnmetpro[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_asnmetpro_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_asntyrgly_e",
"name":"Exchange of AsntyrGly",
"metabolites":{
"asntyrgly_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_asntyrgly[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_asntyrgly_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_asntyrphe_e",
"name":"Exchange of AsntyrPhe",
"metabolites":{
"asntyrphe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_asntyrphe[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_asntyrphe_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_aspalaarg_e",
"name":"Exchange of AspAlaArg",
"metabolites":{
"aspalaarg_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_aspalaarg[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_aspalaarg_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_aspasnglu_e",
"name":"Exchange of AspAsnGlu",
"metabolites":{
"aspasnglu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_aspasnglu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_aspasnglu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_aspglutrp_e",
"name":"Exchange of AspGluTrp",
"metabolites":{
"aspglutrp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_aspglutrp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_aspglutrp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_asphispro_e",
"name":"Exchange of AspHisPro",
"metabolites":{
"asphispro_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_asphispro[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_asphispro_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_asplysglu_e",
"name":"Exchange of AspLysGlu",
"metabolites":{
"asplysglu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_asplysglu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_asplysglu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_asplyshis_e",
"name":"Exchange of AspLysHis",
"metabolites":{
"asplyshis_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_asplyshis[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_asplyshis_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_aspmetasp_e",
"name":"Exchange of AspMetAsp",
"metabolites":{
"aspmetasp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_aspmetasp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_aspmetasp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_aspprolys_e",
"name":"Exchange of AspProLys",
"metabolites":{
"aspprolys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_aspprolys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_aspprolys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_cysasnmet_e",
"name":"Exchange of CysAsnMet",
"metabolites":{
"cysasnmet_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_cysasnmet[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_cysasnmet_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_cysaspphe_e",
"name":"Exchange of CysAspPhe",
"metabolites":{
"cysaspphe_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_cysaspphe[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_cysaspphe_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_cyscys_e",
"name":"Exchange of CysCys",
"metabolites":{
"cyscys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_cyscys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_cyscys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_cysglnmet_e",
"name":"Exchange of CysGlnMet",
"metabolites":{
"cysglnmet_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_cysglnmet[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_cysglnmet_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_cysgluhis_e",
"name":"Exchange of CysGluHis",
"metabolites":{
"cysgluhis_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_cysgluhis[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_cysgluhis_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_cysglutrp_e",
"name":"Exchange of CysGluTrp",
"metabolites":{
"cysglutrp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_cysglutrp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_cysglutrp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_cysleuthr_e",
"name":"Exchange of CysLeuThr",
"metabolites":{
"cysleuthr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_cysleuthr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_cysleuthr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_glnhishis_e",
"name":"Exchange of GlnHisHis",
"metabolites":{
"glnhishis_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_glnhishis[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_glnhishis_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_glnlyslys_e",
"name":"Exchange of GlnLysLys",
"metabolites":{
"glnlyslys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_glnlyslys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_glnlyslys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_glnlystrp_e",
"name":"Exchange of GlnLysTrp",
"metabolites":{
"glnlystrp_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_glnlystrp[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_glnlystrp_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_glntrpglu_e",
"name":"Exchange of GlnTrpGlu",
"metabolites":{
"glntrpglu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_glntrpglu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_glntrpglu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_glntyrleu_e",
"name":"Exchange of GlntyrLeu",
"metabolites":{
"glntyrleu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_glntyrleu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_glntyrleu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_gluglu_e",
"name":"Exchange of GluGlu",
"metabolites":{
"gluglu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_gluglu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_gluglu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_gluilelys_e",
"name":"Exchange of GluIleLys",
"metabolites":{
"gluilelys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_gluilelys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_gluilelys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_gluleu_e",
"name":"Exchange of GluLeu",
"metabolites":{
"gluleu_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_gluleu[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_gluleu_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_glumet_e",
"name":"Exchange of GluMet",
"metabolites":{
"glumet_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_glumet[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_glumet_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_glumethis_e",
"name":"Exchange of GluMetHis",
"metabolites":{
"glumethis_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_glumethis[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_glumethis_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_gluthr_e",
"name":"Exchange of GluThr",
"metabolites":{
"gluthr_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_gluthr[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_gluthr_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_glyhislys_e",
"name":"Exchange of GlyHisLys",
"metabolites":{
"glyhislys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_glyhislys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_glyhislys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_glytyrlys_e",
"name":"Exchange of GlytyrLys",
"metabolites":{
"glytyrlys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_glytyrlys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_glytyrlys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"EX_hisargcys_e",
"name":"Exchange of HisArgCys",
"metabolites":{
"hisargcys_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_hisargcys[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_hisargcys_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"SK_dgchol_c",
"name":"Sink for Glycochenodeoxycholate",
"metabolites":{
"dgchol_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_dgchol[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_dgchol_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_fe3_c",
"name":"Sink fe3[c]",
"metabolites":{
"fe3_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_fe3[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_fe3_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_gchola_c",
"name":"Sink for Glycocholate",
"metabolites":{
"gchola_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_gchola[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_gchola_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_hdca_c",
"name":"Sink hdca[c]",
"metabolites":{
"hdca_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_hdca[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_hdca_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_lnlncacoa_c",
"name":"Sink lnlncacoa[c]",
"metabolites":{
"lnlncacoa_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_lnlncacoa[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_lnlncacoa_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_nadp_c",
"name":"Sink nadp[c]",
"metabolites":{
"nadp_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_nadp[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_nadp_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_odecoa_c",
"name":"Sink odecoa[c]",
"metabolites":{
"odecoa_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_odecoa[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_odecoa_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_phyQ_c",
"name":"Sink phyQ[c]",
"metabolites":{
"phllqne_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_phyQ[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_phyQ_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_pydam_c",
"name":"Sink pydam[c]",
"metabolites":{
"pydam_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_pydam[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_pydam_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_retfa_c",
"name":"Sink retfa[c]",
"metabolites":{
"retfa_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_retfa[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_retfa_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_stcoa_c",
"name":"Sink stcoa[c]",
"metabolites":{
"stcoa_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_stcoa[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_stcoa_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"SK_tdchola_c",
"name":"Sink for Taurochenodeoxycholate",
"metabolites":{
"tdchola_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_tdchola[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_tdchola_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"DM_thmpp_c",
"name":"Thiamin pyrophosphate demand",
"metabolites":{
"thmpp_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_thmpp[c]"
]
},
"annotation":{
"bigg.reaction":[
"DM_thmpp_c"
],
"metanetx.reaction":[
"MNXR104824"
],
"reactome.reaction":[
"R-DDI-8875838",
"R-OSA-8875838",
"R-TGU-8875838",
"R-ATH-8875838",
"R-SCE-8875838",
"R-XTR-8875838",
"R-CFA-8875838",
"R-HSA-8875838",
"R-BTA-8875838",
"R-GGA-8875838",
"R-MMU-8875838",
"R-RNO-8875838",
"R-DRE-8875838",
"R-SSC-8875838",
"R-DME-8875838",
"R-SPO-8875838"
],
"sbo":"SBO:0000628",
"seed.reaction":[
"rxn13096"
]
}
},
{
"id":"DM_thmtp_c",
"name":"Demand thmppp c",
"metabolites":{
"thmtp_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_thmtp[c]"
]
},
"annotation":{
"bigg.reaction":[
"DM_thmtp_c"
],
"sbo":"SBO:0000628"
}
},
{
"id":"THCHOLSTOICt",
"name":"Transport of 3Alpha, 7Alpha, 12Alpha-Trihydroxy-5Beta-Cholestanoate, Sodium Symport",
"metabolites":{
"na1_c":-1.0,
"na1_e":1.0,
"thcholstoic_c":-1.0,
"thcholstoic_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6554_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"THCHOLSTOICt"
]
},
"annotation":{
"bigg.reaction":[
"THCHOLSTOICt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"XOL7AH3ATP",
"name":"Transport of 5Beta-Cholestane-3Alpha, 7Alpha, 26-Triol, Active Transport",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"xol7ah3_c":-1.0,
"xol7ah3_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8647_AT1 or 8714_AT1 or 85320_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"XOL7AH3ATP"
]
},
"annotation":{
"bigg.reaction":[
"XOL7AH3ATP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"XOL7AH3t",
"name":"Transport of 5Beta-Cholestane-3Alpha, 7Alpha, 26-Triol, Sodium Symport",
"metabolites":{
"na1_c":-1.0,
"na1_e":1.0,
"xol7ah3_c":-1.0,
"xol7ah3_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6554_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"XOL7AH3t"
]
},
"annotation":{
"bigg.reaction":[
"XOL7AH3t"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_xol7ah3_e",
"name":"Exchange of 5Beta-Cholestane-3Alpha, 7Alpha, 26-Triol",
"metabolites":{
"xol7ah3_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_xol7ah3[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_xol7ah3_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"SK_xol7ah3_c",
"name":"Sink for 5Beta-Cholestane-3Alpha, 7Alpha, 26-Triol",
"metabolites":{
"xol7ah3_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_xol7ah3[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_xol7ah3_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"XOL7AONEt",
"name":"Transport of 7Alpha-Hydroxycholest-4-En-3-One, Sodium Symport",
"metabolites":{
"na1_c":-1.0,
"na1_e":1.0,
"xol7aone_c":-1.0,
"xol7aone_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6554_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"XOL7AONEt"
]
},
"annotation":{
"bigg.reaction":[
"XOL7AONEt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"XOLDIOLONEATP",
"name":"Transport of 7Alpha, 12Alpha-Dihydroxycholest-4-En-3-One, Active Transport",
"metabolites":{
"adp_c":1.0,
"atp_c":-1.0,
"h2o_c":-1.0,
"h_c":1.0,
"pi_c":1.0,
"xoldiolone_c":-1.0,
"xoldiolone_e":1.0
},
"lower_bound":0.0,
"upper_bound":1000.0,
"gene_reaction_rule":"8647_AT1 or 8714_AT1 or 85320_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"XOLDIOLONEATP"
]
},
"annotation":{
"bigg.reaction":[
"XOLDIOLONEATP"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_xoldiolone_e",
"name":"Exchange of 7Alpha, 12Alpha-Dihydroxycholest-4-En-3-One",
"metabolites":{
"xoldiolone_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_xoldiolone[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_xoldiolone_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"7KILTCHOLt",
"name":"Transport of 7-Ketolithocholate, Sodium Symport",
"metabolites":{
"7klitchol_c":-1.0,
"7klitchol_e":1.0,
"na1_c":-1.0,
"na1_e":1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"6554_AT1",
"subsystem":"Transport, extracellular",
"notes":{
"original_bigg_ids":[
"7KILTCHOLt"
]
},
"annotation":{
"bigg.reaction":[
"7KILTCHOLt"
],
"sbo":"SBO:0000185"
}
},
{
"id":"EX_7klitchol_e",
"name":"Exchange of 7-Ketolithocholate",
"metabolites":{
"7klitchol_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_7klitchol[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_7klitchol_e"
],
"sbo":"SBO:0000627"
}
},
{
"id":"SK_7klitchol_c",
"name":"Sink for 7-Ketolithocholate",
"metabolites":{
"7klitchol_c":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Intracellular source/sink",
"notes":{
"original_bigg_ids":[
"sink_7klitchol[c]"
]
},
"annotation":{
"bigg.reaction":[
"SK_7klitchol_c"
],
"sbo":"SBO:0000632"
}
},
{
"id":"EX_2obut_e",
"name":"2-Oxobutanoate exchange",
"metabolites":{
"2obut_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_2obut[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_2obut_e"
],
"biocyc":[
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],
"metanetx.reaction":[
"MNXR94814"
],
"sabiork":[
"12475"
],
"sbo":"SBO:0000627",
"seed.reaction":[
"rxn13195"
]
}
},
{
"id":"EX_glcn_e",
"name":"D-Gluconate exchange",
"metabolites":{
"glcn_e":-1.0
},
"lower_bound":-1000.0,
"upper_bound":1000.0,
"gene_reaction_rule":"",
"subsystem":"Extracellular exchange",
"notes":{
"original_bigg_ids":[
"EX_glcn[e]"
]
},
"annotation":{
"bigg.reaction":[
"EX_glcn_e"
],
"metanetx.reaction":[
"MNXR100210"
],
"sabiork":[
"13786"
],
"sbo":"SBO:0000627",
"seed.reaction":[
"rxn12424",
"rxn08610"
]
}
},
{
"id":"ACACt2",
"name":"Acetoacetate transport via proton symport",
"metabolites":{
"acac_c":1.0,
"acac_e":-1.0,
"h_c":1.0,
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"20250"
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}
},
{
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},
{
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{
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},
{
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},
{
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},
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},
{
"id":"3MGLUTACte",
"name":"Transport of 3-Methyl-Glutaconate, Extracellular",
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},
{
"id":"EX_ppiogly_e",
"name":"Exchange of Propionyl-Glycine",
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},
{
"id":"HMR_0614",
"name":"Ethanolaminephosphotransferase",
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},
{
"id":"HMR_0625",
"name":"Diacylglycerol Cholinephosphotransferase",
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},
{
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"name":"Phosphatidylcholine:Sterol O-Acyltransferase",
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},
{
"id":"HMR_0642",
"name":"Phospholipase D",
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},
{
"id":"ETHAAL",
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},
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}
},
{
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"name":"Acylglycerol Kinase",
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},
{
"id":"HMR_0750",
"name":"Sphingosine N-Acyltransferase",
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},
{
"id":"HMR_0758",
"name":"Sphingosine N-Acyltransferase",
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},
{
"id":"HMR_0761",
"name":"Ceramide Glucosyltransferase",
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},
{
"id":"HMR_0763",
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},
{
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},
{
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},
{
"id":"HMR_0795",
"name":"Sphingomyelin Phosphodiesterase",
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},
{
"id":"HMR_0809",
"name":"HMR 0809",
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},
{
"id":"HMR_2736",
"name":"Carnitine O-Palmitoyltransferase",
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},
{
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},
{
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},
{
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{
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},
{
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{
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},
{
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{
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{
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{
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{
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{
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{
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{
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},
{
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"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
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},
{
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},
{
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},
{
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},
{
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}
},
{
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"name":"Oxaloacetate transport, glycosomal",
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},
{
"id":"HMR_9716",
"name":"HMR 9716",
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},
{
"id":"HMR_9719",
"name":"Enoyl Coenzyme A Hydratase",
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"coa_m":-8.0,
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},
{
"id":"HMR_9801",
"name":"GTP:5-Hydroxy-L-Lysine O-Phosphotransferase",
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},
{
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"3.5.1.2",
"6.3.4.2",
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"R-DME-70609",
"R-RNO-70609",
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},
{
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"name":"Sn-Glycero-3-Phosphocholine Cholinephosphohydrolase",
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},
{
"id":"HMR_2957",
"name":"Long-Chain-Fatty-Acid Coenzyme A Ligase",
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},
{
"id":"HMR_6580",
"name":"1-Phosphatidylinositol-4-Phosphate 5-Kinase",
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},
{
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"name":"Carbonyl Reductase (NADPH)",
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},
{
"id":"HMR_4816",
"name":"2-Amino-4-Hydroxy-6- (Erythro-1, 2, 3-Trihydroxypropyl) Dihydropteridine Triphosphate Phosphohydrolase (Alkaline Optimum)",
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{
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"name":"Uroporphyrinogen Decarboxylase",
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},
{
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"name":"HMR 6672",
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},
{
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{
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{
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],
"id":"Recon3D",
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"e":"extracellular space",
"g":"golgi apparatus",
"i":"inner mitochondrial compartment",
"l":"lysosome",
"m":"mitochondria",
"n":"nucleus",
"r":"endoplasmic reticulum",
"x":"peroxisome/glyoxysome"
},
"version":"1"
}