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Polyisoprenol specificity in the Campylobacter jejuni N-linked glycosylation pathway.
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Characterization of PglJ, a Glycosyltransferase in the N-Linked Protein Glycosylation Pathway that Expands Glycan Diversity.
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N-linked glycosylation in Campylobacter jejuni and its functional transfer into E. coli.
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Chemoenzymatic synthesis of the bacterial polysaccharide repeating unit undecaprenyl pyrophosphate and its analogs.
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Uridine Bisphosphonates Differentiate Phosphoglycosyl Transferase Superfamilies.
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Chemoenzymatic Preparation of a Lipid-Linked Heptasaccharide on an Azide-Linked Polyisoprenoid.
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Defining Early Steps in Biofilm Biosynthesis.
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Recent Chemical and Chemoenzymatic Strategies to Complex-Type -Glycans.
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Detecting Glucose Fluctuations in the N-Glycan Structure.
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The surprising structural and mechanistic dichotomy of membrane-associated phosphoglycosyl transferases.
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2
Functional analysis of the Campylobacter jejuni N-linked protein glycosylation pathway.
Mol Microbiol. 2005 Mar;55(6):1695-703. doi: 10.1111/j.1365-2958.2005.04519.x.
3
Protein glycosylation in bacterial mucosal pathogens.
Nat Rev Microbiol. 2005 Mar;3(3):225-37. doi: 10.1038/nrmicro1100.
4
The N-X-S/T consensus sequence is required but not sufficient for bacterial N-linked protein glycosylation.
Glycobiology. 2005 Apr;15(4):361-7. doi: 10.1093/glycob/cwi019. Epub 2004 Dec 1.
7
Campylobacter--a tale of two protein glycosylation systems.
Trends Microbiol. 2003 May;11(5):233-8. doi: 10.1016/s0966-842x(03)00079-9.
8
N-linked glycosylation in Campylobacter jejuni and its functional transfer into E. coli.
Science. 2002 Nov 29;298(5599):1790-3. doi: 10.1126/science.298.5599.1790.
9
Structure of the N-linked glycan present on multiple glycoproteins in the Gram-negative bacterium, Campylobacter jejuni.
J Biol Chem. 2002 Nov 8;277(45):42530-9. doi: 10.1074/jbc.M206114200. Epub 2002 Aug 16.
10
Substrate specificity of the glycosyl donor for oligosaccharyl transferase.
J Org Chem. 2001 Sep 21;66(19):6217-28. doi: 10.1021/jo0100345.

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