Phase variation in Helicobacter pylori lipopolysaccharide

被引:103
作者
Appelmelk, BJ
Shiberu, B
Trinks, C
Tapsi, N
Zheng, PY
Verboom, T
Maaskant, J
Hokke, CH
Schiphorst, WECM
Blanchard, D
Simoons-Smit, IM
van den Eijnden, DH
Vandenbroucke-Grauls, CMJE
机构
[1] Free Univ Amsterdam, Sch Med, Dept Med Microbiol, NL-1081 BT Amsterdam, Netherlands
[2] Free Univ Amsterdam, Sch Med, Dept Med Chem, NL-1081 BT Amsterdam, Netherlands
[3] Reg Blood Transfus Ctr, Nantes, France
基金
英国惠康基金;
关键词
D O I
10.1128/IAI.66.1.70-76.1998
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Helicobacter pylori NCTC 11637 lipopolysaccharide (LPS) expresses the human blood group antigen Lewis x (Le(x)) in a polymeric form. Le(x) is beta-D-galactose-(1-4)-[alpha-L-fucose-(1-3)]-beta-D-acetylglucosamine. Schematically the LPS structure is (Le(x))(n)-core-lipid A. In this report, we show that Le(x) expression is not a stable trait but that LPS displays a high frequency (0.2 to 0.5%) of phase variation, resulting in the presence of several LPS variants in one bacterial cell population. One type of phase variation implied the loss of alpha 1,3-linked fucose, resulting in variants that expressed nonsubstituted polylactosamines (also called the i antigen), i.e., Le(x) minus fucose; LPS: (lactosamine)(n)-core-lipid A. The switch of Le(x) to i antigen was reversible, A second group of variants arose by loss of polymeric main chain which resulted in expression of monomeric Le(y); LPS: (Le(y))-core-lipid A. A third group of variants arose by acquisition of alpha 1,2-linked fucose which hence expressed Le(x) plus Le(y); LPS: (Le(y)) (Le(x))(n)-core-lipid A. The second and third group of variants switched hack to the parental phenotype [(Le(x))(n)-core-lipid A] in lower frequencies. Part of the variation can be ascribed to altered expression levels of glycosyltransferase levels as assessed by assaying the activities of galactosyl-, fucosyl-, and N-acetylglucosaminyltransferases. Clearly phase variation increases the heterogeneity of H. pylori, and this process may he involved in generating the very closely related yet genetically slightly different strains that have been isolated from one patient.
引用
收藏
页码:70 / 76
页数:7
相关论文
共 35 条
[21]   HELICOBACTER-PYLORI INFECTION INDUCES ANTIBODIES CROSS-REACTING WITH HUMAN GASTRIC-MUCOSA [J].
NEGRINI, R ;
LISATO, L ;
ZANELLA, I ;
CAVAZZINI, L ;
GULLINI, S ;
VILLANACCI, V ;
POIESI, C ;
ALBERTINI, A ;
GHIELMI, S .
GASTROENTEROLOGY, 1991, 101 (02) :437-445
[22]   PHENOTYPIC VARIATION OF CARBOHYDRATE SURFACE-ANTIGENS AND THE PATHOGENESIS OF HAEMOPHILUS-INFLUENZAE INFECTIONS [J].
ROCHE, RJ ;
MOXON, ER .
TRENDS IN MICROBIOLOGY, 1995, 3 (08) :304-309
[23]  
ROELCKE D, 1995, BLOOD CEL B, V6, P117
[24]   HELICOBACTER-PYLORI EXPRESSES A COMPLEX SURFACE CARBOHYDRATE, LEWIS-X [J].
SHERBURNE, R ;
TAYLOR, DE .
INFECTION AND IMMUNITY, 1995, 63 (12) :4564-4568
[25]   Typing of Helicobacter pylori with monoclonal antibodies against Lewis antigens in Lipopolysaccharide [J].
SimoonsSmit, IM ;
Appelmelk, BJ ;
Verboom, T ;
Negrini, R ;
Penner, JL ;
Aspinall, GO ;
Moran, AP ;
She, FF ;
Shi, BS ;
Rudnica, W ;
Savio, A ;
deGraaff, J .
JOURNAL OF CLINICAL MICROBIOLOGY, 1996, 34 (09) :2196-2200
[26]   The complete genome sequence of the gastric pathogen Helicobacter pylori [J].
Tomb, JF ;
White, O ;
Kerlavage, AR ;
Clayton, RA ;
Sutton, GG ;
Fleischmann, RD ;
Ketchum, KA ;
Klenk, HP ;
Gill, S ;
Dougherty, BA ;
Nelson, K ;
Quackenbush, J ;
Zhou, LX ;
Kirkness, EF ;
Peterson, S ;
Loftus, B ;
Richardson, D ;
Dodson, R ;
Khalak, HG ;
Glodek, A ;
McKenney, K ;
Fitzegerald, LM ;
Lee, N ;
Adams, MD ;
Hickey, EK ;
Berg, DE ;
Gocayne, JD ;
Utterback, TR ;
Peterson, JD ;
Kelley, JM ;
Cotton, MD ;
Weldman, JM ;
Fujii, C ;
Bowman, C ;
Watthey, L ;
Wallin, E ;
Hayes, WS ;
Weidman, JM ;
Fujii, C ;
Borodovsky, M ;
Karp, PD ;
Smith, HO ;
Fraser, CM ;
Venter, JC .
NATURE, 1997, 388 (6642) :539-547
[27]   GENETIC-TRANSFORMATION IN HELICOBACTER-PYLORI [J].
TSUDA, M ;
KARITA, M ;
NAKAZAWA, T .
MICROBIOLOGY AND IMMUNOLOGY, 1993, 37 (01) :85-89
[28]  
VANDAM GJ, 1994, EUR J BIOCHEM, V225, P467, DOI 10.1111/j.1432-1033.1994.00467.x
[29]  
VANDENEIJNDEN DH, 1988, J BIOL CHEM, V263, P12461
[30]  
VANDENEIJNDEN DH, 1997, BIOCHEM SOC T, V25, P886