2.4.1.266: glucosyl-3-phosphoglycerate synthase
This is an abbreviated version!
For detailed information about glucosyl-3-phosphoglycerate synthase, go to the full flat file.
Word Map on EC 2.4.1.266
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2.4.1.266
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mycobacteria
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tuberculosis
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glucosylglycerate
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glycosyltransferase
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lipopolysaccharide
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methylglucose
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gg
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d-3-phosphoglycerate
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gdp-mannose
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planctomycetes
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udp
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phylum
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burtonii
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methylmannose
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marina
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deep-branching
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smegmatis
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mannosyl-3-phosphoglycerate
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methanococcoides
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mobilis
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petrotoga
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gdp-glucose
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glucosylation
- 2.4.1.266
- mycobacteria
- tuberculosis
-
glucosylglycerate
- glycosyltransferase
- lipopolysaccharide
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methylglucose
- gg
- d-3-phosphoglycerate
- gdp-mannose
- planctomycetes
- udp
-
phylum
- burtonii
-
methylmannose
- marina
-
deep-branching
- smegmatis
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mannosyl-3-phosphoglycerate
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methanococcoides
- mobilis
-
petrotoga
- gdp-glucose
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glucosylation
Reaction
Synonyms
glucosyl-3-phosphoglycerate synthase, glucosyl-3-phosphoglycerate synthase/phosphatase, glucosylphosphoglycerate synthase, GpgS, GpgS protein, GpgS/P, More, MSMEG_5084, RB1005, Rv1208 protein
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General Information
General Information on EC 2.4.1.266 - glucosyl-3-phosphoglycerate synthase
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malfunction
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construction of a MSMEG_5084 knock-out mutant. As compared to its wild-type strain, the knock-out mutant strain mutant displays a significantly reduced growth rate at 37°C. Virtual elimination of the de novo production of methylglucose lipopolysaccharides molecules in the mutant
physiological function
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enzymes responsible for the transfer of the first glucose residue of methylglucose lipopolysaccharides
physiological function
key enzyme of glucosylglycerate synthesis. Glucosylglycerate is a widespread compatible solute among cyanobacteria. It appears to replace glutamate as an anion to counter monovalent cations in marine picocyanobacteria from N-poor environments
physiological function
key enzyme of glucosylglycerate synthesis. Glucosylglycerate is a widespread solute among cyanobacteria. It appears to replace glutamate as an anion to counter monovalent cations in marine picocyanobacteria from N-poor environments
physiological function
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key enzyme that catalyses the first glucosylation step in methylglucose lipopolysaccharide biosynthesis in mycobacteria
physiological function
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the increased resilience of this pathogen is due, to a great extent, to its complex, polysaccharide-rich, and unusually impermeable cell wall. Enzymes involved in glycosidic bond synthesis represent more than 1% of all ORFs identified from Mycobacterium tuberculosis. One of them is GpgS, a retaining glycosyltransferase with low sequence homology to any other glycosyltransferases of known structure, which has been identified in two species of mycobacteria and shown to be essential for the survival of Mycobacterium tuberculosis
physiological function
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key enzyme of glucosylglycerate synthesis. Glucosylglycerate is a widespread compatible solute among cyanobacteria. It appears to replace glutamate as an anion to counter monovalent cations in marine picocyanobacteria from N-poor environments
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