Taxonomic group: bacteria / Proteobacteria
(Phylum: Proteobacteria)
Associated disease: infection due to Campylobacter jejuni [ICD11:
XN4Q5 
]
NCBI PubMed ID: 17631632Journal NLM ID: 2985120RPublisher: American Society for Microbiology
Correspondence: guerryp

nmrc.navy.mil
Institutions: Enteric Diseases Department, Naval Medical Research Center, 503 Robert Grant Ave., Silver Spring, MD 20910, USA
Campylobacter jejuni has systems for N- and O-linked protein glycosylation. Although biochemical evidence demonstrated that a pseC mutant in the O-linked pathway accumulated the product of pglF in the N-linked pathway, analyses of transformation frequencies and glycosylation statuses of N-glycosylated proteins indicated a partial suppression of pglF by pseC
biosynthesis, Bacterial Proteins, Campylobacter jejuni, glycosylation
Structure type: monomer
Location inside paper: p.6731, fig.1
Trivial name: UDP-hexos-4-ulose sugar, UDP-2-acetamido-2,6-dideoxy-β-L-arabino-hex-4-ulose, UDP-2-acetamido-2,6-dideoxy-β-L-arabino-hexos-4-ulose, UDP-2-acetamido-2,6-dideoxy-β-L-arabino-4-hexulose
Compound class: nucleoside diphosphate sugar
Methods: PCR, serological methods, genetic methods
Biological activity: serological data
Enzymes that release or process the structure: Cj1293 (PseB) C4,6-dehydratase/C5-epimerase
Biosynthesis and genetic data: genetic data
Comments, role: intermediate of biosynthetic pathway pseudaminic acid
Related record ID(s): 20218, 20535, 21190, 21566, 21964, 21965, 21966, 21967, 23110, 23133, 24189, 25544
NCBI Taxonomy refs (TaxIDs): 197
Show glycosyltransferases
There is only one chemically distinct structure: