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pro vyhledávání: '"Elizabeth N. H. Tran"'
Publikováno v:
Molecular microbiologyREFERENCES. 118(4)
Enterobacterales have developed a specialized outer membrane polysaccharide (enterobacterial common antigen [ECA]). ECA biosynthesis begins on the cytoplasmic side of the inner membrane (IM) where glycosyltransferases sequentially add sugar moieties
Publikováno v:
Microbiology (Reading, England). 168(4)
Enterobacteriales have evolved a specialized outer membrane polysaccharide [Enterobacterial Common Antigen (ECA)] which allows them to persist in various environmental niches. Biosynthesis of ECA initiates on the cytoplasmic leaflet of the inner memb
Publikováno v:
J Bacteriol
Outer membrane (OM) polysaccharides allow bacteria to resist harsh environmental conditions and antimicrobial agents, traffic to and persist in pathogenic niches, and evade immune responses. Shigella flexneri has two OM polysaccharide populations, be
Autor:
Chiung-Wen Chang, Elizabeth N H Tran, Daniel J Ericsson, Lachlan W Casey, Thierry Lonhienne, Friederike Benning, Renato Morona, Bostjan Kobe
Publikováno v:
PLoS ONE, Vol 10, Iss 9, p e0138266 (2015)
Lipopolysaccharide (LPS), a surface polymer of Gram-negative bacteria, helps bacteria survive in different environments and acts as a virulence determinant of host infection. The O-antigen (Oag) component of LPS exhibits a modal chain-length distribu
Externí odkaz:
https://doaj.org/article/8c68ee9d58cf4c319f596c02a271ed8d
Publikováno v:
J Bacteriol
Shigella flexneri can synthesize polysaccharide chains having complex sugars and a regulated number of repeating units. S. flexneri lipopolysaccharide O antigen (Oag) is synthesized by the Wzy-dependent pathway, which is the most common pathway used