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1型菌毛粘附素的FimH家族:fimH基因间微小序列变异导致的功能异质性

FimH family of type 1 fimbrial adhesins: functional heterogeneity due to minor sequence variations among fimH genes.

作者信息

Sokurenko E V, Courtney H S, Ohman D E, Klemm P, Hasty D L

机构信息

Department of Anatomy, University of Tennessee, Memphis 38163.

出版信息

J Bacteriol. 1994 Feb;176(3):748-55. doi: 10.1128/jb.176.3.748-755.1994.

Abstract

We recently reported that the type 1-fimbriated Escherichia coli strains CSH-50 and HB101(pPKL4), both K-12 derivatives, have different patterns of adhesion to yeast mannan, human plasma fibronectin, and fibronectin derivatives, suggesting functional heterogeneity of type 1 fimbriae. In this report, we provide evidence that this functional heterogeneity is due to variations in the fimH genes. We also investigated functional heterogeneity among clinical isolates and whether variation in fimH genes accounts for differences in receptor specificity. Twelve isolates obtained from human urine were tested for their ability to adhere to mannan, fibronectin, periodate-treated fibronectin, and a synthetic peptide copying the 30 amino-terminal residues of fibronectin. CSH-50 and HB101(pPKL4) were tested for comparison. Selected isolates were also tested for adhesion to purified fragments spanning the entire fibronectin molecule. Three distinct functional classes, designated M, MF, and MFP, were observed. The fimH genes were amplified by PCR from chromosomal DNA obtained from representative strains and expressed in a delta fim strain (AAEC191A) transformed with a recombinant plasmid containing the entire fim gene cluster but with a translational stop-linker inserted into the fimH gene (pPKL114). Cloned fimH genes conferred on AAEC191A(pPKL114) receptor specificities mimicking those of the parent strains from which the fimH genes were obtained, demonstrating that the FimH subunits are responsible for the functional heterogeneity. Representative fimH genes were sequenced, and the deduced amino acid sequences were compared with the previously published FimH sequence. Allelic variants exhibiting >98% homology and encoding proteins differing by as little as a single amino acid substitution confer distinct adhesive phenotypes. This unexpected adhesive diversity within the FimH family broadens the scope of potential receptors for enterobacterial adhesion and may lead to a fundamental change in our understanding of the role(s) that type 1 fimbriae may play in enterobacterial ecology or pathogenesis.

摘要

我们最近报道,1型菌毛化大肠杆菌菌株CSH-50和HB101(pPKL4)(均为K-12衍生物)对酵母甘露聚糖、人血浆纤连蛋白和纤连蛋白衍生物具有不同的黏附模式,这表明1型菌毛存在功能异质性。在本报告中,我们提供证据表明这种功能异质性是由于fimH基因的变异所致。我们还研究了临床分离株之间的功能异质性,以及fimH基因的变异是否导致受体特异性的差异。检测了从人尿液中分离得到的12株菌株对甘露聚糖、纤连蛋白、高碘酸盐处理的纤连蛋白以及模拟纤连蛋白30个氨基末端残基的合成肽的黏附能力。对CSH-50和HB101(pPKL4)进行了检测以作比较。还检测了选定的分离株对跨越整个纤连蛋白分子的纯化片段的黏附情况。观察到三种不同的功能类别,分别命名为M、MF和MFP。通过PCR从代表性菌株获得的染色体DNA中扩增fimH基因,并在一个缺失fim基因的菌株(AAEC191A)中表达,该菌株用含有整个fim基因簇但在fimH基因中插入了翻译终止接头的重组质粒(pPKL114)进行转化。克隆的fimH基因赋予AAEC191A(pPKL114)与从中获得fimH基因的亲本菌株相似的受体特异性,表明FimH亚基负责功能异质性。对代表性的fimH基因进行测序,并将推导的氨基酸序列与先前发表的FimH序列进行比较。同源性>98%且编码的蛋白质仅相差一个氨基酸替换的等位变体赋予不同的黏附表型。FimH家族中这种意外的黏附多样性拓宽了肠杆菌黏附潜在受体的范围,并可能导致我们对1型菌毛在肠杆菌生态学或发病机制中可能发挥的作用的理解发生根本性变化。

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本文引用的文献

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Nature. 1959 Mar 21;183(4664):782-6. doi: 10.1038/183782a0.

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