
PathWhiz ID | Pathway | Meta Data |
---|---|---|
PW353261 |
Trehalose Degradation I (Low Osmolarity)Fusobacterium varium ATCC 27725
In E.coli, trehalose can be only synthesized with high osmolarity, and if the osmolarity is low, then the source of trehalose can be only obtained from external via transportation with trehalose PTS permease. However, sugar can be degraded with both low or high osmolarity in E.coli. Glucokinase can phosphorylate free gluocose into glucose-6-phosphate and both glucose-6-phosphate moieties enter glycolysis.
|
Creator: Julia Wakoli Created On: November 08, 2024 at 19:29 Last Updated: November 08, 2024 at 19:29 |
PW353413 |
Trehalose Degradation I (Low Osmolarity)Tatumella ptyseos ATCC 33301
In E.coli, trehalose can be only synthesized with high osmolarity, and if the osmolarity is low, then the source of trehalose can be only obtained from external via transportation with trehalose PTS permease. However, sugar can be degraded with both low or high osmolarity in E.coli. Glucokinase can phosphorylate free gluocose into glucose-6-phosphate and both glucose-6-phosphate moieties enter glycolysis.
|
Creator: Julia Wakoli Created On: November 08, 2024 at 21:50 Last Updated: November 08, 2024 at 21:50 |
PW353331 |
Trehalose Degradation I (Low Osmolarity)Neisseria macacae ATCC 33926
In E.coli, trehalose can be only synthesized with high osmolarity, and if the osmolarity is low, then the source of trehalose can be only obtained from external via transportation with trehalose PTS permease. However, sugar can be degraded with both low or high osmolarity in E.coli. Glucokinase can phosphorylate free gluocose into glucose-6-phosphate and both glucose-6-phosphate moieties enter glycolysis.
|
Creator: Julia Wakoli Created On: November 08, 2024 at 20:18 Last Updated: November 08, 2024 at 20:18 |
PW353309 |
Trehalose Degradation I (Low Osmolarity)Lautropia mirabilis ATCC 51599
In E.coli, trehalose can be only synthesized with high osmolarity, and if the osmolarity is low, then the source of trehalose can be only obtained from external via transportation with trehalose PTS permease. However, sugar can be degraded with both low or high osmolarity in E.coli. Glucokinase can phosphorylate free gluocose into glucose-6-phosphate and both glucose-6-phosphate moieties enter glycolysis.
|
Creator: Julia Wakoli Created On: November 08, 2024 at 19:51 Last Updated: November 08, 2024 at 19:51 |
PW353385 |
Trehalose Degradation I (Low Osmolarity)Citrobacter amalonaticus Y19
In E.coli, trehalose can be only synthesized with high osmolarity, and if the osmolarity is low, then the source of trehalose can be only obtained from external via transportation with trehalose PTS permease. However, sugar can be degraded with both low or high osmolarity in E.coli. Glucokinase can phosphorylate free gluocose into glucose-6-phosphate and both glucose-6-phosphate moieties enter glycolysis.
|
Creator: Julia Wakoli Created On: November 08, 2024 at 21:21 Last Updated: November 08, 2024 at 21:21 |
PW353335 |
Trehalose Degradation I (Low Osmolarity)Neisseria subflava NJ9703
In E.coli, trehalose can be only synthesized with high osmolarity, and if the osmolarity is low, then the source of trehalose can be only obtained from external via transportation with trehalose PTS permease. However, sugar can be degraded with both low or high osmolarity in E.coli. Glucokinase can phosphorylate free gluocose into glucose-6-phosphate and both glucose-6-phosphate moieties enter glycolysis.
|
Creator: Julia Wakoli Created On: November 08, 2024 at 20:23 Last Updated: November 08, 2024 at 20:23 |
PW361287 |
Trehalose Degradation I (Low Osmolarity)Escherichia coli S88
In E.coli, trehalose can be only synthesized with high osmolarity, and if the osmolarity is low, then the source of trehalose can be only obtained from external via transportation with trehalose PTS permease. However, sugar can be degraded with both low or high osmolarity in E.coli. Glucokinase can phosphorylate free gluocose into glucose-6-phosphate and both glucose-6-phosphate moieties enter glycolysis.
|
Creator: Julia Wakoli Created On: November 15, 2024 at 13:52 Last Updated: November 15, 2024 at 13:52 |
PW361299 |
Trehalose Degradation I (Low Osmolarity)Escherichia coli O55:H7 str. CB9615
In E.coli, trehalose can be only synthesized with high osmolarity, and if the osmolarity is low, then the source of trehalose can be only obtained from external via transportation with trehalose PTS permease. However, sugar can be degraded with both low or high osmolarity in E.coli. Glucokinase can phosphorylate free gluocose into glucose-6-phosphate and both glucose-6-phosphate moieties enter glycolysis.
|
Creator: Julia Wakoli Created On: November 15, 2024 at 13:55 Last Updated: November 15, 2024 at 13:55 |
PW361294 |
Trehalose Degradation I (Low Osmolarity)Escherichia coli O103:H2 str. 12009
In E.coli, trehalose can be only synthesized with high osmolarity, and if the osmolarity is low, then the source of trehalose can be only obtained from external via transportation with trehalose PTS permease. However, sugar can be degraded with both low or high osmolarity in E.coli. Glucokinase can phosphorylate free gluocose into glucose-6-phosphate and both glucose-6-phosphate moieties enter glycolysis.
|
Creator: Julia Wakoli Created On: November 15, 2024 at 13:54 Last Updated: November 15, 2024 at 13:54 |
PW361270 |
Trehalose Degradation I (Low Osmolarity)Escherichia coli O157:H7 str. Sakai
In E.coli, trehalose can be only synthesized with high osmolarity, and if the osmolarity is low, then the source of trehalose can be only obtained from external via transportation with trehalose PTS permease. However, sugar can be degraded with both low or high osmolarity in E.coli. Glucokinase can phosphorylate free gluocose into glucose-6-phosphate and both glucose-6-phosphate moieties enter glycolysis.
|
Creator: Julia Wakoli Created On: November 15, 2024 at 13:46 Last Updated: November 15, 2024 at 13:46 |