
PathWhiz ID | Pathway | Meta Data |
---|---|---|
PW337868 |
Xylose Degradation IPaenibacillus lactis 154
Escherichia coli can utilize D-xylose as the sole source of carbon and energy for the cell. A low-affinity proton motive force or a high-affinity ATP-driven (ABC) transport system brings unphosphorylated D-xylose into the cell. Following entry, D-xylose is converted to D-xylulose by an isomerase and then converted to the pentose phosphate pathway intermediate, D-xylulose 5-phosphate via a kinase. D-xylulose 5-phosphate can then enter pathways of metabolism to meet the cells needs.
|
Creator: Julia Wakoli Created On: October 25, 2024 at 15:44 Last Updated: October 25, 2024 at 15:44 |
PW354831 |
Xylose Degradation IAcetomicrobium hydrogeniformans
Escherichia coli can utilize D-xylose as the sole source of carbon and energy for the cell. A low-affinity proton motive force or a high-affinity ATP-driven (ABC) transport system brings unphosphorylated D-xylose into the cell. Following entry, D-xylose is converted to D-xylulose by an isomerase and then converted to the pentose phosphate pathway intermediate, D-xylulose 5-phosphate via a kinase. D-xylulose 5-phosphate can then enter pathways of metabolism to meet the cells needs.
|
Creator: Julia Wakoli Created On: November 09, 2024 at 21:56 Last Updated: November 09, 2024 at 21:56 |
PW354590 |
Xylose Degradation IEscherichia coli IAI39
Escherichia coli can utilize D-xylose as the sole source of carbon and energy for the cell. A low-affinity proton motive force or a high-affinity ATP-driven (ABC) transport system brings unphosphorylated D-xylose into the cell. Following entry, D-xylose is converted to D-xylulose by an isomerase and then converted to the pentose phosphate pathway intermediate, D-xylulose 5-phosphate via a kinase. D-xylulose 5-phosphate can then enter pathways of metabolism to meet the cells needs.
|
Creator: Julia Wakoli Created On: November 09, 2024 at 20:57 Last Updated: November 09, 2024 at 20:57 |
PW354588 |
Xylose Degradation IEscherichia coli S88
Escherichia coli can utilize D-xylose as the sole source of carbon and energy for the cell. A low-affinity proton motive force or a high-affinity ATP-driven (ABC) transport system brings unphosphorylated D-xylose into the cell. Following entry, D-xylose is converted to D-xylulose by an isomerase and then converted to the pentose phosphate pathway intermediate, D-xylulose 5-phosphate via a kinase. D-xylulose 5-phosphate can then enter pathways of metabolism to meet the cells needs.
|
Creator: Julia Wakoli Created On: November 09, 2024 at 20:56 Last Updated: November 09, 2024 at 20:56 |
PW354583 |
Xylose Degradation IEscherichia coli O157:H7 str. EC4115
Escherichia coli can utilize D-xylose as the sole source of carbon and energy for the cell. A low-affinity proton motive force or a high-affinity ATP-driven (ABC) transport system brings unphosphorylated D-xylose into the cell. Following entry, D-xylose is converted to D-xylulose by an isomerase and then converted to the pentose phosphate pathway intermediate, D-xylulose 5-phosphate via a kinase. D-xylulose 5-phosphate can then enter pathways of metabolism to meet the cells needs.
|
Creator: Julia Wakoli Created On: November 09, 2024 at 20:55 Last Updated: November 09, 2024 at 20:55 |
PW146148 |
drug action
Xylose Drug Metabolism Action PathwayHomo sapiens
|
Creator: Ray Kruger Created On: October 07, 2023 at 17:31 Last Updated: October 07, 2023 at 17:31 |
PW123873 |
signaling
yap tazMus musculus
|
Creator: Guest: Anonymous Created On: April 27, 2020 at 03:01 Last Updated: April 27, 2020 at 03:01 |
PW145407 |
drug action
Yohimbine Drug Metabolism Action PathwayHomo sapiens
|
Creator: Ray Kruger Created On: October 07, 2023 at 15:46 Last Updated: October 07, 2023 at 15:46 |
PW176298 |
Yohimbine Predicted Metabolism PathwayHomo sapiens
Metabolites of Yohimbine are predicted with biotransformer.
|
Creator: Omolola Created On: December 04, 2023 at 14:53 Last Updated: December 04, 2023 at 14:53 |
PW146580 |
drug action
Yttrium Y-90 Drug Metabolism Action PathwayHomo sapiens
|
Creator: Ray Kruger Created On: October 07, 2023 at 18:33 Last Updated: October 07, 2023 at 18:33 |