Enzyme

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     2. Transferases
        2.7 Transferring phosphorus-containing groups
            2.7.1 Phosphotransferases with an alcohol group as acceptor
ID:2.7.1.59
Description:N-acetylglucosamine kinase.
Alternative Name: GlcNAc kinase.
Cath: 3.30.420.40;

3D structure

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References

External Links

UniProtKB Enzyme Link: UniProtKB 2.7.1.59
BRENDA Enzyme Link: BRENDA 2.7.1.59
KEGG Enzyme Link: KEGG2.7.1.59
BioCyc Enzyme Link: BioCyc 2.7.1.59
ExPASy Enzyme Link: ExPASy2.7.1.59
EC2PDB Enzyme Link: EC2PDB 2.7.1.59
ExplorEnz Enzyme Link: ExplorEnz 2.7.1.59
PRIAM enzyme-specific profiles Link: PRIAM 2.7.1.59
IntEnz Enzyme Link: IntEnz 2.7.1.59
MEDLINE Enzyme Link: MEDLINE 2.7.1.59
MSA:

2.7.1.59;

Phylogenetic Tree:

2.7.1.59;

Uniprot:
M-CSA:
RHEA:17417 ATP + N-acetyl-D-glucosamine = ADP + H(+) + N-acetyl-D-glucosamine 6-phosphate
RULE(radius=1) [*:1]-[OH;+0:2].[*:3]=[P;H0;+0:4](-[*:5])(-[*:6])-[O;H0;+0:7]-[*:8]>>[*:8]-[OH;+0:7].[*:3]=[P;H0;+0:4](-[*:5])(-[*:6])-[O;H0;+0:2]-[*:1]
Reaction
Core-to-Core No scaffolds atoms were exchanged as a result of the reaction

References

TitleAuthorsDatePubMed ID
Metabolism of vertebrate amino sugars with N-glycolyl groups: elucidating the intracellular fate of the non-human sialic acid N-glycolylneuraminic acid.Bergfeld AK, Pearce OM, Diaz SL, Pham T, Varki A2012 Aug 1722692205
N-acetylgalactosamine utilization pathway and regulon in proteobacteria: genomic reconstruction and experimental characterization in Shewanella.Leyn SA, Gao F, Yang C, Rodionov DA2012 Aug 1022711537
Characterization of an N-acetylmuramic acid/N-acetylglucosamine kinase of Clostridium acetobutylicum.Reith J, Berking A, Mayer C2011 Oct21784936
The N-acetyl-D-glucosamine kinase of Escherichia coli and its role in murein recycling.Uehara T, Park JT2004 Nov15489439
Identification and characterization of the genes for N-acetylglucosamine kinase and N-acetylglucosamine-phosphate deacetylase in the pathogenic fungus Candida albicans.Yamada-Okabe T, Sakamori Y, Mio T, Yamada-Okabe H2001 Apr11298769