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Pathways

PathWhiz ID Pathway Meta Data

PW685899

Pw685899 View Pathway
metabolic

Tetrahydromonapterin Biosynthesis

Bacteroides sp. 1_1_14
This pathway demonstrates the biosynthesis of tetrahydromonapterin in E.coli. However, it is still unclear about biological role of tetrahydromonapterin. GTP cyclohydrolase 1 generates formic acid and 7,8-dihydroneopterin 3'-triphosphate with cofactor GTP and water. 7,8-dihydroneopterin 3'-triphosphate is converted to dihydromonapterin-triphosphate by d-erythro-7,8-dihydroneopterin triphosphate epimerase (folX). Later, dihydromonapterin-triphosphate is hydroxylated to dihydromethysticin, and eventually form tetrahydromonapterin via dihydromonapterin reductase (folM) with cofactor NADPH.

PW492542

Pw492542 View Pathway
metabolic

Tetrahydromonapterin Biosynthesis

Providencia alcalifaciens DSM 30120
This pathway demonstrates the biosynthesis of tetrahydromonapterin in E.coli. However, it is still unclear about biological role of tetrahydromonapterin. GTP cyclohydrolase 1 generates formic acid and 7,8-dihydroneopterin 3'-triphosphate with cofactor GTP and water. 7,8-dihydroneopterin 3'-triphosphate is converted to dihydromonapterin-triphosphate by d-erythro-7,8-dihydroneopterin triphosphate epimerase (folX). Later, dihydromonapterin-triphosphate is hydroxylated to dihydromethysticin, and eventually form tetrahydromonapterin via dihydromonapterin reductase (folM) with cofactor NADPH.

PW508642

Pw508642 View Pathway
metabolic

Tetrahydromonapterin Biosynthesis

Escherichia coli APEC O1
This pathway demonstrates the biosynthesis of tetrahydromonapterin in E.coli. However, it is still unclear about biological role of tetrahydromonapterin. GTP cyclohydrolase 1 generates formic acid and 7,8-dihydroneopterin 3'-triphosphate with cofactor GTP and water. 7,8-dihydroneopterin 3'-triphosphate is converted to dihydromonapterin-triphosphate by d-erythro-7,8-dihydroneopterin triphosphate epimerase (folX). Later, dihydromonapterin-triphosphate is hydroxylated to dihydromethysticin, and eventually form tetrahydromonapterin via dihydromonapterin reductase (folM) with cofactor NADPH.

PW132271

Pw132271 View Pathway
metabolic

Tetrakis(2-methoxyisobutylisocyanide)copper(I) tetrafluoroborate Drug Metabolism

Homo sapiens
Tetrakis(2-methoxyisobutylisocyanide)copper(I) tetrafluoroborate is a drug that is not metabolized by the human body as determined by current research and biotransformer analysis. Tetrakis(2-methoxyisobutylisocyanide)copper(I) tetrafluoroborate passes through the liver and is then excreted from the body mainly through the kidney.

PW146756

Pw146756 View Pathway
drug action

Tetrakis(2-methoxyisobutylisocyanide)copper(I) tetrafluoroborate Drug Metabolism Action Pathway

Homo sapiens

PW132306

Pw132306 View Pathway
metabolic

Tetramethylthiuram monosulfide Drug Metabolism

Homo sapiens
Tetramethylthiuram monosulfide is a drug that is not metabolized by the human body as determined by current research and biotransformer analysis. Tetramethylthiuram monosulfide passes through the liver and is then excreted from the body mainly through the kidney.

PW146775

Pw146775 View Pathway
drug action

Tetramethylthiuram monosulfide Drug Metabolism Action Pathway

Homo sapiens

PW124467

Pw124467 View Pathway
metabolic

Tetrapyrrole biosynthesis 1

Arabidopsis thaliana

PW132328

Pw132328 View Pathway
metabolic

Tetrofosmin Drug Metabolism

Homo sapiens
Tetrofosmin is a drug that is not metabolized by the human body as determined by current research and biotransformer analysis. Tetrofosmin passes through the liver and is then excreted from the body mainly through the kidney.

PW146284

Pw146284 View Pathway
drug action

Tetrofosmin Drug Metabolism Action Pathway

Homo sapiens