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Results 1 - 10 of 10
EC Number
Substrates
Commentary Substrates
Organism
Products
Commentary (Products)
Reversibility
2-O-(alpha-D-glucopyranosyl)-3-phospho-D-glycerate + H2O
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?
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?
2-O-alpha-D-mannopyranosyl-3-phosphoglycerate + H2O
-
?
-
?
2-O-[2-O-(alpha-D-mannopyranosyl)-alpha-D-glucopyranosyl]-3-phospho-D-glycerate + H2O
-
2-O-[2-O-(alpha-D-mannopranosyl)-alpha-D-glucopyranosyl]-D-glycerate + phosphate
-
?
2-O-[2-O-(alpha-D-mannopyranosyl)-alpha-D-glucopyranosyl]-3-phospho-D-glycerate + H2O
-
2-O-[2-O-(alpha-D-mannopranosyl)-alpha-D-glucopyranosyl]-D-glycerate + phosphate
-
?
2-O-[2-O-(alpha-D-mannopyranosyl)-alpha-D-glucopyranosyl]-3-phospho-D-glycerate + H2O
the enzyme is involved in the phosphorylating pathway for synthesis of the solute mannosylglucosylglycerate. In Petrotoga mobilis two alternative pathways for the synthesis of the rare solute mannosylglucosylglycerate are proposed. The first one is a a phosphorylating pathway (with a phosphorylated intermediate) from 3-phosphoglycerate and UDP-glucose to the final solute. The second nonphosphorylating pathway (no phosphorylated intermediates) could represent an alternative route for the synthesis of mannosylglucosylglycerate in Petrotoga mobilis that could lead to the direct conversion of glucosylglycerate and GDP-mannose to mannosylglucosylglycerate. Pathway multiplicity likely reflects a crucial role for mannosylglucosylglycerate in the physiology of Petrotoga mobilis mobilis during stress adaptation
2-O-[2-O-(alpha-D-mannopranosyl)-alpha-D-glucopyranosyl]-D-glycerate + phosphate
-
?
2-O-[2-O-(alpha-D-mannopyranosyl)-alpha-D-glucopyranosyl]-3-phospho-D-glycerate + H2O
-
2-O-[2-O-(alpha-D-mannopranosyl)-alpha-D-glucopyranosyl]-D-glycerate + phosphate
-
?
2-O-[2-O-(alpha-D-mannopyrarosyl)-alpha-D-glucopyranosyl]-3-phospho-D-glycerate + H2O
-
2-O-[2-O-(alpha-D-mannopyrarosyl)-alpha-D-glucopyranosyl]-D-glycerate + phosphate
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?
more
UDP-glucose, ADP-glucose, GDP-mannose, ADP, GDP and UDP are dephosphorylated be the partially purified enzyme
?
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more
enzyme is non-specific for the mannosyl-donor, using GDP-mannose, UDP-mannose and ADP-mannose as substrates with decreasing affinity. From the tested substrates only 2-(O-alpha-D-glucopyranosyl)-3-phospho-D-glycerate is used as mannosyl-acceptor. The enzyme is a configuration retaining sugar transferase
?
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-
more
enzyme is non-specific for the mannosyl-donor, using GDP-mannose, UDP-mannose and ADP-mannose as substrates with decreasing affinity. From the tested substrates only 2-(O-alpha-D-glucopyranosyl)-3-phospho-D-glycerate is used as mannosyl-acceptor. The enzyme is a configuration retaining sugar transferase
?
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Results 1 - 10 of 10