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Showing 346061 - 346070 of 605359 pathways
PathBank ID Pathway Name and Description Pathway Class Chemical Compounds Proteins

SMP0174312

Pw175981 View Pathway

Betrixaban Predicted Metabolism Pathway new

Homo sapiens
Metabolites of Betrixaban are predicted with biotransformer.
Metabolite
Metabolic
  • Betrixaban
  • Betrixaban PIS1M1
  • Heme

SMP0174310

Pw175979 View Pathway

Benorilate Predicted Metabolism Pathway new

Homo sapiens
Metabolites of Benorilate are predicted with biotransformer.
Metabolite
Metabolic
  • Benorilate
  • Benorilate PIS1M1
  • Heme

SMP0174286

Pw175955 View Pathway

De Novo Triacylglycerol Biosynthesis TG(18:4(6Z,9Z,12Z,15Z)/16:0/22:6(4Z,7Z,10Z,13Z,16Z,19Z))

Rattus norvegicus
A triglyceride (TG, triacylglycerol, TAG, or triacylglyceride) is an ester derived from glycerol and three fatty acids. Triglycerides are the main constituents of body fat in humans and other animals, as well as vegetable fat. They are also present in the blood to enable the bidirectional transference of adipose fat and blood glucose from the liver, and are a major component of human skin oils. (Wikipedia) De novo biosynthesis of triglycerides is also known as the phosphatidic acid pathway, and it is mainly associated with the liver and adipose tissue. All membrane-localized enzymes are coloured dark green in the image. First, dihydroxyacetone phosphate (or glycerone phosphate) from glycolysis is used by the cytosolic enzyme glycerol-3-phosphate dehydrogenase [NAD(+)] to synthesize sn-glycerol 3-phosphate. Second, the mitochondrial outer membrane enzyme glycerol-3-phosphate acyltransferase esterifies an acyl-group to the sn-1 position of sn-glycerol 3-phosphate to form 1-acyl-sn-glycerol 3-phosphate (lysophosphatidic acid or LPA). The next three steps are localized to the endoplasmic reticulum membrane. The enzyme 1-acyl-sn-glycerol-3-phosphate acyltransferase converts LPA into phosphatidic acid (1,2-diacyl-sn-glycerol 3-phosphate) by esterifying an acyl-group to the sn-2 position of the glycerol backbone. Next, magnesium-dependent phosphatidate phosphatase catalyzes the conversion of phosphatidic acid into diacylglycerol. Last, the enzyme diacylglycerol O-acyltransferase synthesizes triacylglycerol from diacylglycerol and a fatty acyl-CoA.
Metabolite
Metabolic

SMP0174354

Pw176023 View Pathway

Dihydroergocornine Predicted Metabolism Pathway new

Homo sapiens
Metabolites of Dihydroergocornine are predicted with biotransformer.
Metabolite
Metabolic
  • Dihydroergocornine
  • Dihydroergocornine PIS1M1
  • Heme

SMP0174359

Pw176028 View Pathway

Dorzolamide Predicted Metabolism Pathway new

Homo sapiens
Metabolites of Dorzolamide are predicted with biotransformer.
Metabolite
Metabolic

SMP0174340

Pw176009 View Pathway

Clofibrate Predicted Metabolism Pathway new

Homo sapiens
Metabolites of Clofibrate are predicted with biotransformer.
Metabolite
Metabolic

SMP0174335

Pw176004 View Pathway

Clenbuterol Predicted Metabolism Pathway new

Homo sapiens
Metabolites of Clenbuterol are predicted with biotransformer.
Metabolite
Metabolic

SMP0174347

Pw176016 View Pathway

Dasatinib Predicted Metabolism Pathway new

Homo sapiens
Metabolites of Dasatinib are predicted with biotransformer.
Metabolite
Metabolic

SMP0174329

Pw175998 View Pathway

Ceftobiprole medocaril Predicted Metabolism Pathway new

Homo sapiens
Metabolites of Ceftobiprole medocaril are predicted with biotransformer.
Metabolite
Metabolic
  • Ceftobiprole medocaril
  • Ceftobiprole medocaril PIS1M1
  • Heme

SMP0174361

Pw176030 View Pathway

Elvitegravir Predicted Metabolism Pathway new

Homo sapiens
Metabolites of Elvitegravir are predicted with biotransformer.
Metabolite
Metabolic
  • Elvitegravir
  • Elvitegravir PIS1M1
  • Heme
Showing 346061 - 346070 of 364398 pathways