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尿路致病性大肠杆菌菌毛顶端P菌毛蛋白的结构与抗原特性

Structure and antigenic properties of the tip-located P pilus proteins of uropathogenic Escherichia coli.

作者信息

Lund B, Lindberg F, Normark S

机构信息

Department of Microbiology, University of Umeå, Sweden.

出版信息

J Bacteriol. 1988 Apr;170(4):1887-94. doi: 10.1128/jb.170.4.1887-1894.1988.

Abstract

Pyelonephritogenic Escherichia coli frequently expresses pili which bind to Gal alpha (1-4)Gal receptors present on the uroepithelium. Binding of these pili is mediated by a pilus-associated adhesin, PapG, and not by the major subunit which constitutes the bulk of the pilus structure. The adhesin and two pilinlike proteins, PapE and PapF, are present in only a few copies each at the pilus tip. Surface exposure of both PapF and PapG is required to achieve receptor-specific binding. The nucleotide sequences for the genes encoding the tip-associated proteins PapE, PapF, and PapG were determined for two E. coli clones expressing P pili of serotypes F11 and F7(2) and compared with the corresponding sequences established for proteins of F13 pili. Specific antisera were used to study the cross-reactivity between the F13 tip proteins and the equivalent proteins in F11 and F7(2) pili. We present data showing that, like the major pilus subunit, PapE varies its structure and antigenic properties among pili of different serotypes. In contrast, the PapF protein was highly conserved, and PapF-specific antisera raised against serotype F13 cross-reacted with the PapF proteins of both F11 and F7(2) serotypes. The PapG adhesin protein from F11 and F7(2) pili differed by only five amino acids out of 316 residues. However, the F13 adhesin showed only 45% amino acid homology with the other two variants.

摘要

致肾盂肾炎的大肠杆菌经常表达能与尿路上皮细胞上存在的Galα(1-4)Gal受体结合的菌毛。这些菌毛的结合是由一种菌毛相关黏附素PapG介导的,而不是由构成菌毛结构主体的主要亚基介导。黏附素以及两种菌毛样蛋白PapE和PapF在菌毛尖端各自仅以少量拷贝存在。PapF和PapG的表面暴露都是实现受体特异性结合所必需的。测定了表达血清型F11和F7(2)的P菌毛的两个大肠杆菌克隆中编码尖端相关蛋白PapE、PapF和PapG的基因的核苷酸序列,并与为F13菌毛蛋白建立的相应序列进行了比较。使用特异性抗血清研究F13尖端蛋白与F11和F7(2)菌毛中的等效蛋白之间的交叉反应性。我们提供的数据表明,与主要菌毛亚基一样,PapE在不同血清型的菌毛之间其结构和抗原特性会发生变化。相比之下,PapF蛋白高度保守,针对血清型F13产生的PapF特异性抗血清与F11和F7(2)血清型的PapF蛋白都发生交叉反应。F11和F7(2)菌毛的PapG黏附蛋白在316个残基中仅有5个氨基酸不同。然而,F13黏附素与其他两个变体仅显示45%的氨基酸同源性。

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