| PathWhiz ID | Pathway | Meta Data |
|---|---|---|
PW350286 |
D-Allulose DegradationPaenibacillus lactis 154
D-allose can be used as source of carbon for E.coli. D-allose is imported into E.coli by D-allose ABC transporter without phosphorylation. Allose-6-phosphate isomerase and allulose-6-phosphate 3-epimerase catalyze the remaining reactions resulting in D-allulose 6 phosphate and Beta-D-fructofuranose 6-phosphate respectively. Once Beta D fructofuranose 6-phosphate is synthesized, it can be used in the glycolysis and pyruvatedehydrogenase pathway.
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Creator: Julia Wakoli Created On: November 07, 2024 at 00:26 Last Updated: November 07, 2024 at 00:26 |
PW350281 |
D-Allulose DegradationAcetomicrobium hydrogeniformans
D-allose can be used as source of carbon for E.coli. D-allose is imported into E.coli by D-allose ABC transporter without phosphorylation. Allose-6-phosphate isomerase and allulose-6-phosphate 3-epimerase catalyze the remaining reactions resulting in D-allulose 6 phosphate and Beta-D-fructofuranose 6-phosphate respectively. Once Beta D fructofuranose 6-phosphate is synthesized, it can be used in the glycolysis and pyruvatedehydrogenase pathway.
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Creator: Julia Wakoli Created On: November 07, 2024 at 00:22 Last Updated: November 07, 2024 at 00:22 |
PW350325 |
D-Allulose DegradationMitsuokella multacida DSM 20544
D-allose can be used as source of carbon for E.coli. D-allose is imported into E.coli by D-allose ABC transporter without phosphorylation. Allose-6-phosphate isomerase and allulose-6-phosphate 3-epimerase catalyze the remaining reactions resulting in D-allulose 6 phosphate and Beta-D-fructofuranose 6-phosphate respectively. Once Beta D fructofuranose 6-phosphate is synthesized, it can be used in the glycolysis and pyruvatedehydrogenase pathway.
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Creator: Julia Wakoli Created On: November 07, 2024 at 00:59 Last Updated: November 07, 2024 at 00:59 |
PW350320 |
D-Allulose DegradationMegamonas funiformis YIT 11815
D-allose can be used as source of carbon for E.coli. D-allose is imported into E.coli by D-allose ABC transporter without phosphorylation. Allose-6-phosphate isomerase and allulose-6-phosphate 3-epimerase catalyze the remaining reactions resulting in D-allulose 6 phosphate and Beta-D-fructofuranose 6-phosphate respectively. Once Beta D fructofuranose 6-phosphate is synthesized, it can be used in the glycolysis and pyruvatedehydrogenase pathway.
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Creator: Julia Wakoli Created On: November 07, 2024 at 00:55 Last Updated: November 07, 2024 at 00:55 |
PW349690 |
D-Allulose DegradationMegasphaera elsdenii DSM 20460
D-allose can be used as source of carbon for E.coli. D-allose is imported into E.coli by D-allose ABC transporter without phosphorylation. Allose-6-phosphate isomerase and allulose-6-phosphate 3-epimerase catalyze the remaining reactions resulting in D-allulose 6 phosphate and Beta-D-fructofuranose 6-phosphate respectively. Once Beta D fructofuranose 6-phosphate is synthesized, it can be used in the glycolysis and pyruvatedehydrogenase pathway.
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Creator: Julia Wakoli Created On: November 06, 2024 at 15:34 Last Updated: November 06, 2024 at 15:34 |
PW349385 |
D-Allulose DegradationBacteroides xylanisolvens XB1A
D-allose can be used as source of carbon for E.coli. D-allose is imported into E.coli by D-allose ABC transporter without phosphorylation. Allose-6-phosphate isomerase and allulose-6-phosphate 3-epimerase catalyze the remaining reactions resulting in D-allulose 6 phosphate and Beta-D-fructofuranose 6-phosphate respectively. Once Beta D fructofuranose 6-phosphate is synthesized, it can be used in the glycolysis and pyruvatedehydrogenase pathway.
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Creator: Julia Wakoli Created On: November 06, 2024 at 10:48 Last Updated: November 06, 2024 at 10:48 |
PW349380 |
D-Allulose DegradationBacteroides stercoris ATCC 43183
D-allose can be used as source of carbon for E.coli. D-allose is imported into E.coli by D-allose ABC transporter without phosphorylation. Allose-6-phosphate isomerase and allulose-6-phosphate 3-epimerase catalyze the remaining reactions resulting in D-allulose 6 phosphate and Beta-D-fructofuranose 6-phosphate respectively. Once Beta D fructofuranose 6-phosphate is synthesized, it can be used in the glycolysis and pyruvatedehydrogenase pathway.
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Creator: Julia Wakoli Created On: November 06, 2024 at 10:42 Last Updated: November 06, 2024 at 10:42 |
PW423456 |
D-Allulose DegradationEscherichia coli SE15
D-allose can be used as source of carbon for E.coli. D-allose is imported into E.coli by D-allose ABC transporter without phosphorylation. Allose-6-phosphate isomerase and allulose-6-phosphate 3-epimerase catalyze the remaining reactions resulting in D-allulose 6 phosphate and Beta-D-fructofuranose 6-phosphate respectively. Once Beta D fructofuranose 6-phosphate is synthesized, it can be used in the glycolysis and pyruvatedehydrogenase pathway.
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Creator: Julia Wakoli Created On: December 29, 2024 at 17:17 Last Updated: December 29, 2024 at 17:17 |
PW423901 |
D-Allulose DegradationPrevotella copri
D-allose can be used as source of carbon for E.coli. D-allose is imported into E.coli by D-allose ABC transporter without phosphorylation. Allose-6-phosphate isomerase and allulose-6-phosphate 3-epimerase catalyze the remaining reactions resulting in D-allulose 6 phosphate and Beta-D-fructofuranose 6-phosphate respectively. Once Beta D fructofuranose 6-phosphate is synthesized, it can be used in the glycolysis and pyruvatedehydrogenase pathway.
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Creator: Julia Wakoli Created On: December 29, 2024 at 20:11 Last Updated: December 29, 2024 at 20:11 |
PW423970 |
D-Allulose DegradationBacteroides coprocola
D-allose can be used as source of carbon for E.coli. D-allose is imported into E.coli by D-allose ABC transporter without phosphorylation. Allose-6-phosphate isomerase and allulose-6-phosphate 3-epimerase catalyze the remaining reactions resulting in D-allulose 6 phosphate and Beta-D-fructofuranose 6-phosphate respectively. Once Beta D fructofuranose 6-phosphate is synthesized, it can be used in the glycolysis and pyruvatedehydrogenase pathway.
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Creator: Julia Wakoli Created On: December 29, 2024 at 20:36 Last Updated: December 29, 2024 at 20:36 |