Literature DB >> 10632700

Lipopolysaccharide structures of Helicobacter pylori genomic strains 26695 and J99, mouse model H. pylori Sydney strain, H. pylori P466 carrying sialyl Lewis X, and H. pylori UA915 expressing Lewis B classification of H. pylori lipopolysaccharides into glycotype families.

M A Monteiro1, B J Appelmelk, D A Rasko, A P Moran, S O Hynes, L L MacLean, K H Chan, F S Michael, S M Logan, J O'Rourke, A Lee, D E Taylor, M B Perry.   

Abstract

This study describes the molecular makeup of the cell-wall lipopolysaccharides (LPSs) (O-chain polysaccharide-->core oligosaccharide-->lipid A) from five Helicobacter pylori strains: H. pylori 26695 and J99, the complete genome sequences of which have been published, the established mouse model Sydney strain (SS1), and the symptomatic strains P466 and UA915. All chemical and serological experiments were performed on the intact LPSs. H. pylori 26695 and SS1 possessed either a low-Mr semi-rough-form LPS carrying mostly a single Ley type-2 blood-group determinant in the O-chain region covalently attached to the core oligosaccharide or a high-Mr smooth-form LPS, as did strain J99, with an elongated partially fucosylated type-2 N-acetyllactosamine (polyLacNAc) O-chain polymer, terminated mainly by a Lex blood-group determinant, connected to the core oligosaccharide. In the midst of semi-rough-form LPS glycoforms, H. pylori 26695 and SS1 also expressed in the O-chain region a difucosylated antigen, alpha-L-Fucp(1-3)-alpha-L-Fucp(1-4)-beta-D-GlcpNAc, and the cancer-cell-related type-1 or type-2 linear B-blood-group antigen, alpha-D-Galp(1-3)-beta-D-Galp(1-3 or 4)-beta-D-GlcpNAc. The LPS of H. pylori strain P466 carried the cancer-associated type-2 sialyl Lex blood-group antigen, and the LPS from strain UA915 expressed a type-1 Leb blood-group unit. These findings should aid investigations that focus on identifying and characterizing genes responsible for LPS biosynthesis in genomic strains 26695 and J99, and in understanding the role of H. pylori LPS in animal model studies. The LPSs from the H. pylori strains studied to date were grouped into specific glycotype families.

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Year:  2000        PMID: 10632700     DOI: 10.1046/j.1432-1327.2000.01007.x

Source DB:  PubMed          Journal:  Eur J Biochem        ISSN: 0014-2956


  35 in total

1.  Identification and characterization of a lipopolysaccharide α,2,3-sialyltransferase from the human pathogen Helicobacter bizzozeronii.

Authors:  Pradeep Kumar Kondadi; Mirko Rossi; Brigitte Twelkmeyer; Melissa J Schur; Jianjun Li; Thomas Schott; Lars Paulin; Petri Auvinen; Marja-Liisa Hänninen; Elke K H Schweda; Warren Wakarchuk
Journal:  J Bacteriol       Date:  2012-03-09       Impact factor: 3.490

2.  Host Lewis phenotype-dependent Helicobacter pylori Lewis antigen expression in rhesus monkeys.

Authors:  Hans-Peter Wirth; Manqiao Yang; Edgardo Sanabria-Valentín; Douglas E Berg; André Dubois; Martin J Blaser
Journal:  FASEB J       Date:  2006-05-23       Impact factor: 5.191

3.  Surreptitious manipulation of the human host by Helicobacter pylori.

Authors:  Dawn A Israel; Richard M Peek
Journal:  Gut Microbes       Date:  2010-03

4.  Phase variation in H type I and Lewis a epitopes of Helicobacter pylori lipopolysaccharide.

Authors:  B J Appelmelk; M C Martino; E Veenhof; M A Monteiro; J J Maaskant; R Negrini; F Lindh; M Perry; G Del Giudice; C M Vandenbroucke-Grauls
Journal:  Infect Immun       Date:  2000-10       Impact factor: 3.441

5.  Genotypic and phenotypic variation of Lewis antigen expression in geographically diverse Helicobacter pylori isolates.

Authors:  Mary Ann Pohl; William Zhang; Sunny N Shah; Edgardo L Sanabria-Valentín; Guillermo I Perez-Perez; Martin J Blaser
Journal:  Helicobacter       Date:  2011-12       Impact factor: 5.753

6.  Periplasmic cleavage and modification of the 1-phosphate group of Helicobacter pylori lipid A.

Authors:  An X Tran; Mark J Karbarz; Xiaoyuan Wang; Christian R H Raetz; Sara C McGrath; Robert J Cotter; M Stephen Trent
Journal:  J Biol Chem       Date:  2004-10-15       Impact factor: 5.157

7.  Identification of the binding roles of terminal and internal glycan epitopes using enzymatically synthesized N-glycans containing tandem epitopes.

Authors:  Zhigang Wu; Yunpeng Liu; Cheng Ma; Lei Li; Jing Bai; Lauren Byrd-Leotis; Yi Lasanajak; Yuxi Guo; Liuqing Wen; He Zhu; Jing Song; Yanhong Li; David A Steinhauer; David F Smith; Baohua Zhao; Xi Chen; Wanyi Guan; Peng George Wang
Journal:  Org Biomol Chem       Date:  2016-11-29       Impact factor: 3.876

8.  Microwave-assisted sample preparation for rapid and sensitive analysis of H. pylori lipid A applicable to a single colony.

Authors:  Ping Zhou; Vandana Chandan; Xin Liu; Kenneth Chan; Eleonora Altman; Jianjun Li
Journal:  J Lipid Res       Date:  2009-04-28       Impact factor: 5.922

9.  A changing gastric environment leads to adaptation of lipopolysaccharide variants in Helicobacter pylori populations during colonization.

Authors:  Anna Skoglund; Helene Kling Bäckhed; Christina Nilsson; Britta Björkholm; Staffan Normark; Lars Engstrand
Journal:  PLoS One       Date:  2009-06-11       Impact factor: 3.240

10.  Helicobacter pylori lipopolysaccharide modification, Lewis antigen expression, and gastric colonization are cholesterol-dependent.

Authors:  Ellen Hildebrandt; David J McGee
Journal:  BMC Microbiol       Date:  2009-12-14       Impact factor: 3.605

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