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EspA的卷曲螺旋结构域对于在肠致病性大肠杆菌表面组装III型分泌转运体至关重要。

The coiled-coil domain of EspA is essential for the assembly of the type III secretion translocon on the surface of enteropathogenic Escherichia coli.

作者信息

Delahay R M, Knutton S, Shaw R K, Hartland E L, Pallen M J, Frankel G

机构信息

Department of Biochemistry, Imperial College of Science, Technology and Medicine, London SW7 2AZ, United Kingdom.

出版信息

J Biol Chem. 1999 Dec 10;274(50):35969-74. doi: 10.1074/jbc.274.50.35969.

Abstract

Enteropathogenic E. coli (EPEC) utilize a type III secretion system to deliver virulence-associated effector proteins to the host cell. Four proteins, EspA, EspB, EspD, and Tir, which are integral to the formation of characteristic "attaching and effacing" (A/E) intestinal lesions, are known to be exported via the EPEC type III secretion system. Recent work demonstrated that EspA is a major component of a filamentous structure, elaborated on the surface of EPEC, which is required for translocation of EspB and Tir. The carboxyl terminus of EspA is predicted to comprise an alpha-helical region, which demonstrates heptad periodicity whereby positions a and d in the heptad repeat unit abcdefg are occupied by hydrophobic residues, indicating a propensity for coiled-coil interactions. Here we demonstrate multimeric EspA isoforms in EPEC culture supernatants and EspA:EspA interaction on solid phase. Non-conservative amino acid substitution of specific EspA heptad residues generated EPEC mutants defective in filament assembly but which retained the ability to induce A/E lesions; additional mutation totally abolished EspA filament assembly and A/E lesion formation. These results demonstrate a similarity to flagellar biosynthesis and indicate that the coiled-coil domain of EspA is required for assembly of the EspA filament-associated type III secretion translocon.

摘要

肠致病性大肠杆菌(EPEC)利用III型分泌系统将与毒力相关的效应蛋白递送至宿主细胞。已知EspA、EspB、EspD和Tir这四种蛋白对于形成特征性的“紧密黏附与抹平”(A/E)肠道损伤至关重要,它们通过EPEC的III型分泌系统输出。最近的研究表明,EspA是EPEC表面形成的丝状结构的主要成分,该结构是EspB和Tir转运所必需的。EspA的羧基末端预计包含一个α螺旋区域,该区域呈现七肽周期性,即七肽重复单元abcdefg中的a和d位置被疏水残基占据,这表明其具有形成卷曲螺旋相互作用的倾向。在此,我们证明了EPEC培养上清液中的多聚体EspA异构体以及固相上的EspA:EspA相互作用。特定EspA七肽残基的非保守氨基酸取代产生了在丝状组装方面存在缺陷但仍保留诱导A/E损伤能力的EPEC突变体;进一步的突变完全消除了EspA丝状组装和A/E损伤形成。这些结果证明了与鞭毛生物合成的相似性,并表明EspA的卷曲螺旋结构域是EspA丝状相关III型分泌转运体组装所必需的。

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