PathWhiz ID | Pathway | Meta Data |
---|---|---|
PW341609View Pathway |
Methylglyoxal Degradation IBacteroides fluxus YIT 12057
The degradation of methylglyoxal starts with methylglyoxal being degraded by interacting with glutathione and a glyoxalase resulting in the release of a (R)-S-lactoylglutatione. This compound in turn reacts with a water molecule through a glyoxalase II resulting in the releas of glutathione, a hydrogen ion and an R-lactate. The R-lactate in turn reacts with an ubiquinone through a D-lactate dehydrogenase resulting in the release of an ubiquinol and a pyruvate which can then be incorporated the pyruvate metabolism
|
Creator: Julia Wakoli Created On: October 31, 2024 at 08:51 Last Updated: October 31, 2024 at 08:51 |
PW341647View Pathway |
Methylglyoxal Degradation ITrabulsiella guamensis ATCC 49490
The degradation of methylglyoxal starts with methylglyoxal being degraded by interacting with glutathione and a glyoxalase resulting in the release of a (R)-S-lactoylglutatione. This compound in turn reacts with a water molecule through a glyoxalase II resulting in the releas of glutathione, a hydrogen ion and an R-lactate. The R-lactate in turn reacts with an ubiquinone through a D-lactate dehydrogenase resulting in the release of an ubiquinol and a pyruvate which can then be incorporated the pyruvate metabolism
|
Creator: Julia Wakoli Created On: October 31, 2024 at 09:18 Last Updated: October 31, 2024 at 09:18 |
PW341659View Pathway |
Methylglyoxal Degradation IProvidencia rettgeri DSM 1131
The degradation of methylglyoxal starts with methylglyoxal being degraded by interacting with glutathione and a glyoxalase resulting in the release of a (R)-S-lactoylglutatione. This compound in turn reacts with a water molecule through a glyoxalase II resulting in the releas of glutathione, a hydrogen ion and an R-lactate. The R-lactate in turn reacts with an ubiquinone through a D-lactate dehydrogenase resulting in the release of an ubiquinol and a pyruvate which can then be incorporated the pyruvate metabolism
|
Creator: Julia Wakoli Created On: October 31, 2024 at 09:26 Last Updated: October 31, 2024 at 09:26 |
PW341661View Pathway |
Methylglyoxal Degradation IProvidencia stuartii ATCC 25827
The degradation of methylglyoxal starts with methylglyoxal being degraded by interacting with glutathione and a glyoxalase resulting in the release of a (R)-S-lactoylglutatione. This compound in turn reacts with a water molecule through a glyoxalase II resulting in the releas of glutathione, a hydrogen ion and an R-lactate. The R-lactate in turn reacts with an ubiquinone through a D-lactate dehydrogenase resulting in the release of an ubiquinol and a pyruvate which can then be incorporated the pyruvate metabolism
|
Creator: Julia Wakoli Created On: October 31, 2024 at 09:27 Last Updated: October 31, 2024 at 09:27 |
PW341615View Pathway |
Methylglyoxal Degradation ITannerella forsythia
The degradation of methylglyoxal starts with methylglyoxal being degraded by interacting with glutathione and a glyoxalase resulting in the release of a (R)-S-lactoylglutatione. This compound in turn reacts with a water molecule through a glyoxalase II resulting in the releas of glutathione, a hydrogen ion and an R-lactate. The R-lactate in turn reacts with an ubiquinone through a D-lactate dehydrogenase resulting in the release of an ubiquinol and a pyruvate which can then be incorporated the pyruvate metabolism
|
Creator: Julia Wakoli Created On: October 31, 2024 at 08:55 Last Updated: October 31, 2024 at 08:55 |
PW341665View Pathway |
Methylglyoxal Degradation IAcinetobacter johnsonii SH046
The degradation of methylglyoxal starts with methylglyoxal being degraded by interacting with glutathione and a glyoxalase resulting in the release of a (R)-S-lactoylglutatione. This compound in turn reacts with a water molecule through a glyoxalase II resulting in the releas of glutathione, a hydrogen ion and an R-lactate. The R-lactate in turn reacts with an ubiquinone through a D-lactate dehydrogenase resulting in the release of an ubiquinol and a pyruvate which can then be incorporated the pyruvate metabolism
|
Creator: Julia Wakoli Created On: October 31, 2024 at 09:30 Last Updated: October 31, 2024 at 09:30 |
PW341672View Pathway |
Methylglyoxal Degradation IPseudoflavonifractor capillosus ATCC 29799
The degradation of methylglyoxal starts with methylglyoxal being degraded by interacting with glutathione and a glyoxalase resulting in the release of a (R)-S-lactoylglutatione. This compound in turn reacts with a water molecule through a glyoxalase II resulting in the releas of glutathione, a hydrogen ion and an R-lactate. The R-lactate in turn reacts with an ubiquinone through a D-lactate dehydrogenase resulting in the release of an ubiquinol and a pyruvate which can then be incorporated the pyruvate metabolism
|
Creator: Julia Wakoli Created On: October 31, 2024 at 09:35 Last Updated: October 31, 2024 at 09:35 |
PW355820View Pathway |
Methylglyoxal Degradation IEscherichia coli O127:H6 str. E2348/69
The degradation of methylglyoxal starts with methylglyoxal being degraded by interacting with glutathione and a glyoxalase resulting in the release of a (R)-S-lactoylglutatione. This compound in turn reacts with a water molecule through a glyoxalase II resulting in the releas of glutathione, a hydrogen ion and an R-lactate. The R-lactate in turn reacts with an ubiquinone through a D-lactate dehydrogenase resulting in the release of an ubiquinol and a pyruvate which can then be incorporated the pyruvate metabolism
|
Creator: Julia Wakoli Created On: November 11, 2024 at 20:27 Last Updated: November 11, 2024 at 20:27 |
PW355813View Pathway |
Methylglyoxal Degradation IEscherichia coli 536
The degradation of methylglyoxal starts with methylglyoxal being degraded by interacting with glutathione and a glyoxalase resulting in the release of a (R)-S-lactoylglutatione. This compound in turn reacts with a water molecule through a glyoxalase II resulting in the releas of glutathione, a hydrogen ion and an R-lactate. The R-lactate in turn reacts with an ubiquinone through a D-lactate dehydrogenase resulting in the release of an ubiquinol and a pyruvate which can then be incorporated the pyruvate metabolism
|
Creator: Julia Wakoli Created On: November 11, 2024 at 20:25 Last Updated: November 11, 2024 at 20:25 |
PW341622View Pathway |
Methylglyoxal Degradation IBurkholderia cepacia GG4
The degradation of methylglyoxal starts with methylglyoxal being degraded by interacting with glutathione and a glyoxalase resulting in the release of a (R)-S-lactoylglutatione. This compound in turn reacts with a water molecule through a glyoxalase II resulting in the releas of glutathione, a hydrogen ion and an R-lactate. The R-lactate in turn reacts with an ubiquinone through a D-lactate dehydrogenase resulting in the release of an ubiquinol and a pyruvate which can then be incorporated the pyruvate metabolism
|
Creator: Julia Wakoli Created On: October 31, 2024 at 09:00 Last Updated: October 31, 2024 at 09:00 |