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Supermolecular structure of the enteropathogenic Escherichia coli type III secretion system and its direct interaction with the EspA-sheath-like structure

机译:肠致病菌的超分子结构 大肠杆菌III型分泌系统及其 与EspA型护套结构直接互动

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摘要

Enteropathogenic Escherichia coli (EPEC) secretes several Esp proteins via the type III secretion system (secreton). EspA, EspB, and EspD are required for translocation of the effector proteins into host cells, in which EspB and EspD are thought to form a pore in the host membrane. Recent study has shown that EspA forms a filamentous structure that assembles as a physical bridge between bacteria and host cell surfaces, which then functions as a conduit for the translocation of bacterial effectors into host cells. To investigate the supermolecular structure of the type III secreton in EPEC, we partially purified it from the bacteria membrane and observed it via transmission electron microscopy. The EPEC type III secreton was composed of a basal body and a needle part and was similar to those of Salmonella and Shigella, except for a sheath-like structure at the tip of the needle. The length of sheath-like structures varied; it extended more than 600 nm and was 10 times longer than the Shigella needle part. The putative major needle component, EscF, was required for both secretion of Esp proteins and needle complex formation. Interestingly, elongation of the sheath-like structure was observed under constitutive expression of EspA but not of EscF. Furthermore, the transmission electron microscopy view with immunogold labeled anti-EspA antibodies clearly showed that EspA is a component of the sheath-like structure. This study revealed, to our knowledge for the first time, the supermolecular structure of the EPEC type III secreton and its direct association with the EspA-sheath-like structure.
机译:肠致病性大肠杆菌(EPEC)通过III型分泌系统(secreton)分泌几种Esp蛋白。将效应蛋白转运到宿主细胞中需要EspA,EspB和EspD,其中EspB和EspD被认为在宿主膜中形成孔。最近的研究表明,EspA形成了一种丝状结构,其组装成细菌和宿主细胞表面之间的物理桥,然后充当细菌效应子向宿主细胞移位的通道。为了研究EPEC中III型分泌物的超分子结构,我们从细菌膜中部分纯化了该蛋白,并通过透射电子显微镜对其进行了观察。 EPEC III型分泌物由基体和针状部分组成,与沙门氏菌和志贺氏菌相似,除了在针尖具有鞘状结构。鞘状结构的长度各不相同;它延伸超过600海里,比志贺氏菌针部分长10倍。 Esp蛋白的分泌和针复合物的形成都需要假定的主要针成分EscF。有趣的是,在EspA而非EscF的组成型表达下观察到鞘状结构的伸长。此外,带有免疫金标记的抗EspA抗体的透射电子显微镜视图清楚地表明EspA是鞘状结构的组成部分。这项研究首次揭示了EPEC III型分泌物的超分子结构及其与EspA鞘状结构的直接联系。

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