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幽门螺杆菌脂多糖与基底膜蛋白层粘连蛋白的相互作用。

Interaction of lipopolysaccharides of Helicobacter pylori with basement membrane protein laminin.

作者信息

Valkonen K H, Wadström T, Moran A P

机构信息

Department of Medical Microbiology, University of Lund, Sweden.

出版信息

Infect Immun. 1994 Sep;62(9):3640-8. doi: 10.1128/iai.62.9.3640-3648.1994.

Abstract

The ability of hemagglutinating and poorly hemagglutinating strains of the gastroduodenal pathogen Helicobacter pylori to bind 125I-radiolabelled laminin was quantitated in a liquid phase assay. Although all strains bound laminin, some hemagglutinating strains were good binders of laminin (maximum of 31% binding), whereas poorly hemagglutinating strains bound intermediate to small amounts of laminin (minimum of 6% binding). Since a hydrophobic component of the bacterium has been reported to be involved in binding of laminin (T. J. Trust, P. Doig, L. Emödy, Z. Kienle, T. Wadström, and P. O'Toole, Infect. Immun. 59:4398-4404, 1991), we investigated the role of lipopolysaccharide (LPS) in the interaction of both types of strains with laminin. Although the extent of inhibition varied among strains, laminin binding to hemagglutinating and poorly hemagglutinating strains was inhibited with homologous and heterologous smooth-form LPS. The ability of heterologous rough-form LPS to produce inhibition comparable to that shown by smooth-form LPS indicated that the O side chain of H. pylori LPS was not involved in the interaction. Further inhibition experiments with dephosphorylated LPS, isolated core oligosaccharide, and free lipid A suggested that a phosphorylated structure in the core oligosaccharide mediates the interaction of a hemagglutinating strain of H. pylori with laminin, whereas a conserved nonphosphorylated structure in the core oligosaccharide mediates the interaction of a poorly hemagglutinating strain. Furthermore, we showed that the interaction of H. pylori LPS with 125I-radiolabelled laminin in a solid phase assay was saturable, specific, and inhibitable with unlabelled laminin. It was postulated that the initial recognition and binding of laminin by H. pylori may occur through LPS and that subsequently a more specific interaction with a lectin-like adhesin on the bacterial surface occurs.

摘要

在液相分析中对胃十二指肠病原体幽门螺杆菌的血凝性菌株和低血凝性菌株结合125I放射性标记层粘连蛋白的能力进行了定量。虽然所有菌株都能结合层粘连蛋白,但一些血凝性菌株是层粘连蛋白的良好结合者(最大结合率为31%),而低血凝性菌株结合的层粘连蛋白量介于中等和少量之间(最小结合率为6%)。由于据报道细菌的疏水成分参与层粘连蛋白的结合(T. J. Trust、P. Doig、L. Emödy、Z. Kienle、T. Wadström和P. O'Toole,《感染与免疫》59:4398 - 4404,1991),我们研究了脂多糖(LPS)在这两种菌株与层粘连蛋白相互作用中的作用。虽然不同菌株的抑制程度有所不同,但同源和异源光滑型LPS均可抑制层粘连蛋白与血凝性和低血凝性菌株的结合。异源粗糙型LPS产生与光滑型LPS相当抑制作用的能力表明,幽门螺杆菌LPS的O侧链不参与这种相互作用。用去磷酸化LPS、分离的核心寡糖和游离脂质A进行的进一步抑制实验表明,核心寡糖中的磷酸化结构介导了幽门螺杆菌血凝性菌株与层粘连蛋白的相互作用,而核心寡糖中保守的非磷酸化结构介导了低血凝性菌株的相互作用。此外,我们还表明,在固相分析中幽门螺杆菌LPS与125I放射性标记层粘连蛋白的相互作用是可饱和的、特异性的,并且可被未标记的层粘连蛋白抑制。据推测,幽门螺杆菌对层粘连蛋白的初始识别和结合可能通过LPS发生,随后会与细菌表面的一种凝集素样黏附素发生更特异性的相互作用。

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