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PMID: 15509570 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

A single bifunctional UDP-GlcNAc/Glc 4-epimerase supports the synthesis of three cell surface glycoconjugates in Campylobacter jejuni.

The Journal of biological chemistry ·Vol. 280 ·No. 6 ·2005-02-11 ·Pages 4792-802

Bernatchez S, Szymanski CM, Ishiyama N, Li J, Jarrell HC, Lau PC, Berghuis AM, Young NM, Wakarchuk WW

Abstract

The major cell-surface carbohydrates (lipooligosaccharide, capsule, and glycoprotein N-linked heptasaccharide) of Campylobacter jejuni NCTC 11168 contain Gal and/or GalNAc residues. GalE is the sole annotated UDP-glucose 4-epimerase in this bacterium. The presence of GalNAc residues in these carbohydrates suggested that GalE might be a UDP-GlcNAc 4-epimerase. GalE was shown to epimerize UDP-Glc and UDP-GlcNAc in coupled assays with C. jejuni glycosyltransferases and in sugar nucleotide epimerization equilibria studies. Thus, GalE possesses UDP-GlcNAc 4-epimerase activity and was renamed Gne. The Km(app) values of a purified MalE-Gne fusion protein for UDP-GlcNAc and UDP-GalNAc are 1087 and 1070 microm, whereas those for UDP-Glc and UDP-Gal are 780 and 784 microm. The kcat and kcat/Km(app) values were three to four times higher for UDP-GalNAc and UDP-Gal than for UDP-GlcNAc and UDP-Glc. The comparison of the kinetic parameters of MalE-Gne to those of other characterized bacterial UDP-GlcNAc 4-epimerases indicated that Gne is a bifunctional UDP-GlcNAc/Glc 4-epimerase. The UDP sugar-binding site of Gne was modeled by using the structure of the UDP-GlcNAc 4-epimerase WbpP from Pseudomonas aeruginosa. Small differences were noted, and these may explain the bifunctional character of the C. jejuni Gne. In a gne mutant of C. jejuni, the lipooligosaccharide was shown by capillary electrophoresis-mass spectrometry to be truncated by at least five sugars. Furthermore, both the glycoprotein N-linked heptasaccharide and capsule were no longer detectable by high resolution magic angle spinning NMR. These data indicate that Gne is the enzyme providing Gal and GalNAc residues with the synthesis of all three cell-surface carbohydrates in C. jejuni NCTC 11168.

MeSH Terms
Amino Acid Motifs Amino Acid Sequence Binding Sites Campylobacter jejuni/enzymology Carbohydrate Epimerases/chemistry,metabolism Carbohydrate Sequence Carbohydrates/chemistry Cell Membrane/enzymology Electrophoresis, Capillary Glycoproteins/chemistry Ions Kinetics Magnetic Resonance Spectroscopy Mass Spectrometry Models, Biological Models, Chemical Models, Molecular Molecular Sequence Data Mutation Oligonucleotides/chemistry Plasmids/metabolism Polysaccharides/chemistry Protein Conformation Protons Pseudomonas aeruginosa/metabolism Recombinant Fusion Proteins/chemistry Uridine Diphosphate/chemistry
Chemicals
Carbohydrates Glycoproteins Ions Oligonucleotides Polysaccharides Protons Recombinant Fusion Proteins Uridine Diphosphate Carbohydrate Epimerases UDP-N-acetylglucosamine 4-epimerase
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Bernatchez Stéphane
Institute for Biological Sciences, National Research Council of Canada, Ottawa, Ontario K1A 0R6, Canada.
Szymanski Christine M
Ishiyama Noboru
Li Jianjun
Jarrell Harold C
Lau Peter C
Berghuis Albert M
Young N Martin
Wakarchuk Warren W
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2005-02-11
Epub
2004-00-27
Pages
4792-802
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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