| PathWhiz ID | Pathway | Meta Data |
|---|---|---|
PW407974 |
Glycine BiosynthesisBacteroides massiliensis
Glycine biosynthesis is dependent on L-serine. L-serine is enters the cell through transporters (serine / threonine:H+ symporter TdcC, serine/threonine: Na symporter , serine:H+ symporter SdaC) and then proceeds through reversible reaction with a tetrahydrofolic acid through a serine hydroxymethyltransferase enzyme in order to produce glycine, 5,10-methylene tetrahydrofolate and water. 5,10-methylene tetrahydrofolate is a major source of one-carbon units used in other metabolic pathways.
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Creator: Julia Wakoli Created On: December 23, 2024 at 01:58 Last Updated: December 23, 2024 at 01:58 |
PW000808 |
Glycine BiosynthesisEscherichia coli
Glycine biosynthesis is dependent on L-serine. L-serine is enters the cell through transporters (serine / threonine:H+ symporter TdcC, serine/threonine: Na symporter , serine:H+ symporter SdaC) and then proceeds through reversible reaction with a tetrahydrofolic acid through a serine hydroxymethyltransferase enzyme in order to produce glycine, 5,10-methylene tetrahydrofolate and water. 5,10-methylene tetrahydrofolate is a major source of one-carbon units used in other metabolic pathways.
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Creator: miguel ramirez Created On: March 15, 2015 at 20:44 Last Updated: March 15, 2015 at 20:44 |
PW408845 |
Glycine BiosynthesisEscherichia coli IAI39
Glycine biosynthesis is dependent on L-serine. L-serine is enters the cell through transporters (serine / threonine:H+ symporter TdcC, serine/threonine: Na symporter , serine:H+ symporter SdaC) and then proceeds through reversible reaction with a tetrahydrofolic acid through a serine hydroxymethyltransferase enzyme in order to produce glycine, 5,10-methylene tetrahydrofolate and water. 5,10-methylene tetrahydrofolate is a major source of one-carbon units used in other metabolic pathways.
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Creator: Julia Wakoli Created On: December 23, 2024 at 08:04 Last Updated: December 23, 2024 at 08:04 |
PW408840 |
Glycine BiosynthesisEscherichia coli ED1a
Glycine biosynthesis is dependent on L-serine. L-serine is enters the cell through transporters (serine / threonine:H+ symporter TdcC, serine/threonine: Na symporter , serine:H+ symporter SdaC) and then proceeds through reversible reaction with a tetrahydrofolic acid through a serine hydroxymethyltransferase enzyme in order to produce glycine, 5,10-methylene tetrahydrofolate and water. 5,10-methylene tetrahydrofolate is a major source of one-carbon units used in other metabolic pathways.
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Creator: Julia Wakoli Created On: December 23, 2024 at 08:01 Last Updated: December 23, 2024 at 08:01 |
PW408869 |
Glycine BiosynthesisEscherichia coli O26:H11 str. 11368
Glycine biosynthesis is dependent on L-serine. L-serine is enters the cell through transporters (serine / threonine:H+ symporter TdcC, serine/threonine: Na symporter , serine:H+ symporter SdaC) and then proceeds through reversible reaction with a tetrahydrofolic acid through a serine hydroxymethyltransferase enzyme in order to produce glycine, 5,10-methylene tetrahydrofolate and water. 5,10-methylene tetrahydrofolate is a major source of one-carbon units used in other metabolic pathways.
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Creator: Julia Wakoli Created On: December 23, 2024 at 08:17 Last Updated: December 23, 2024 at 08:17 |
PW408888 |
Glycine BiosynthesisEscherichia coli O55:H7 str. CB9615
Glycine biosynthesis is dependent on L-serine. L-serine is enters the cell through transporters (serine / threonine:H+ symporter TdcC, serine/threonine: Na symporter , serine:H+ symporter SdaC) and then proceeds through reversible reaction with a tetrahydrofolic acid through a serine hydroxymethyltransferase enzyme in order to produce glycine, 5,10-methylene tetrahydrofolate and water. 5,10-methylene tetrahydrofolate is a major source of one-carbon units used in other metabolic pathways.
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Creator: Julia Wakoli Created On: December 23, 2024 at 08:27 Last Updated: December 23, 2024 at 08:27 |
PW400679 |
Glycine BiosynthesisBacteroides graminisolvens DSM 19988 = JCM 15093
Glycine biosynthesis is dependent on L-serine. L-serine is enters the cell through transporters (serine / threonine:H+ symporter TdcC, serine/threonine: Na symporter , serine:H+ symporter SdaC) and then proceeds through reversible reaction with a tetrahydrofolic acid through a serine hydroxymethyltransferase enzyme in order to produce glycine, 5,10-methylene tetrahydrofolate and water. 5,10-methylene tetrahydrofolate is a major source of one-carbon units used in other metabolic pathways.
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Creator: Julia Wakoli Created On: December 18, 2024 at 20:03 Last Updated: December 18, 2024 at 20:03 |
PW401850 |
Glycine BiosynthesisHalococcus morrhuae DSM 1307
Glycine biosynthesis is dependent on L-serine. L-serine is enters the cell through transporters (serine / threonine:H+ symporter TdcC, serine/threonine: Na symporter , serine:H+ symporter SdaC) and then proceeds through reversible reaction with a tetrahydrofolic acid through a serine hydroxymethyltransferase enzyme in order to produce glycine, 5,10-methylene tetrahydrofolate and water. 5,10-methylene tetrahydrofolate is a major source of one-carbon units used in other metabolic pathways.
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Creator: Julia Wakoli Created On: December 19, 2024 at 07:44 Last Updated: December 19, 2024 at 07:44 |
PW399562 |
Glycine BiosynthesisEscherichia coli (strain B / REL606)
Glycine biosynthesis is dependent on L-serine. L-serine is enters the cell through transporters (serine / threonine:H+ symporter TdcC, serine/threonine: Na symporter , serine:H+ symporter SdaC) and then proceeds through reversible reaction with a tetrahydrofolic acid through a serine hydroxymethyltransferase enzyme in order to produce glycine, 5,10-methylene tetrahydrofolate and water. 5,10-methylene tetrahydrofolate is a major source of one-carbon units used in other metabolic pathways.
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Creator: Julia Wakoli Created On: December 18, 2024 at 10:39 Last Updated: December 18, 2024 at 10:39 |
PW401069 |
Glycine BiosynthesisParabacteroides johnsonii DSM 18315
Glycine biosynthesis is dependent on L-serine. L-serine is enters the cell through transporters (serine / threonine:H+ symporter TdcC, serine/threonine: Na symporter , serine:H+ symporter SdaC) and then proceeds through reversible reaction with a tetrahydrofolic acid through a serine hydroxymethyltransferase enzyme in order to produce glycine, 5,10-methylene tetrahydrofolate and water. 5,10-methylene tetrahydrofolate is a major source of one-carbon units used in other metabolic pathways.
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Creator: Julia Wakoli Created On: December 18, 2024 at 23:34 Last Updated: December 18, 2024 at 23:34 |