Literature DB >> 11521085

Structural variability and originality of the Bordetella endotoxins.

M Caroff1, L Aussel, H Zarrouk, A Martin, J C Richards, H Thérisod, M B Perry, D Karibian.   

Abstract

Structural studies of Bordetella endotoxins (LPSs) have revealed remarkable differences: (i) between their LPSs and those of other bacterial pathogens; (ii) among the LPSs of the seven identified Bordetella species; and (iii) among the LPSs of some Bordetella strains. The lipid As have the "classical" bisphosphorylated diglucosamine backbone but tend to have fewer and species-specific fatty acid components compared to those of other genera. Nevertheless, three strains of B. bronchiseptica have at least three different fatty acid distributions; however, the recently identified B. hinzii and B. trematum LPSs had identical lipid A structures. The B. pertussis core is a dodecasaccharide multi-branched structure bearing amino and carboxylic groups. Another unusual feature is the presence of free amino sugars in the central core region and a complex distal trisaccharide unit containing five amino groups of which four are acetylated and one is methylated. The B. pertussis LPS does not have O-chains and that of B. trematum had only a single O-unit, unlike the LPSs of all the other species of the smooth-type. The O-chain-free cores of non-B. pertussis LPSs were always built on the B. pertussis core model but most were species-specifically incomplete. The LPS structures of three B. bronchiseptica strains were found to be different from each other. The O-chains of B. bronchiseptica and B. parapertussis were almost identical and had some features in common with B. hinzii O-chain. Serological analyses are consistent with the determined LPS structures.

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Year:  2001        PMID: 11521085

Source DB:  PubMed          Journal:  J Endotoxin Res        ISSN: 0968-0519


  25 in total

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3.  Role of pagL and lpxO in Bordetella bronchiseptica lipid A biosynthesis.

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4.  Toward a new vaccine for pertussis.

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Review 5.  Bordetella pertussis pathogenesis: current and future challenges.

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7.  Bordetella bronchiseptica Glycosyltransferase Core Mutants Trigger Changes in Lipid A Structure.

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8.  Secondary acylation of Vibrio cholerae lipopolysaccharide requires phosphorylation of Kdo.

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9.  Saccharide/protein conjugate vaccines for Bordetella species: preparation of saccharide, development of new conjugation procedures, and physico-chemical and immunological characterization of the conjugates.

Authors:  Joanna Kubler-Kielb; Evgeny Vinogradov; Gil Ben-Menachem; Vince Pozsgay; John B Robbins; Rachel Schneerson
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10.  Glucosamine found as a substituent of both phosphate groups in Bordetella lipid A backbones: role of a BvgAS-activated ArnT ortholog.

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