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Function and distribution of EspG2, a type III secretion system effector of enteropathogenic Escherichia coli

机译:肠道致病性大肠杆菌III型分泌系统效应物EspG2的功能和分布

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The enteropathogenic Escherichia coli (EPEC) effector protein EspG, like the Shigella effector VirA, functions through disruption of the host cell microtubule network. Reports have differed as to whether the EspG homologue, EspG2, is also responsible for microtubule disruption. In this study we show that following translocation, EspG2 and VirA are localised under adherent bacteria and able to restore the microtubule disruption phenotype to an espG/espG2 double EPEC mutant. The espG/espG2 double mutant produced A/E lesions similar to wild-type EPEC on human intestinal in vitro organ cultures. Determining the distribution of espG and espG2 among clinical EPEC isolates revealed two different types of espG (espG alpha and espG beta) and espG2 (intact and pseudo genes), which were associated with specific EPEC serotypes and closely followed the EPEC lineage. This investigation has established a role for EspG2 in the disruption of the microtubule network and associated different espG and espG2 types with different groups of EPEC. (c) 2006 Elsevier SAS. All rights reserved.
机译:肠致病性大肠杆菌(EPEC)效应蛋白EspG(如志贺氏菌效应VirA)通过破坏宿主细胞微管网络发挥作用。关于EspG同源物EspG2是否也引起微管破坏的报道不同。在这项研究中,我们表明,易位后,EspG2和VirA定位在附着细菌下,并能够将微管破坏表型恢复为espG / espG2双EPEC突变体。 espG / espG2双重突变体在人肠道体外器官培养物中产生类似于野生型EPEC的A / E病变。确定espG和espG2在临床EPEC分离株中的分布后发现,有两种不同类型的espG(espG alpha和espG beta)和espG2(完整基因和假基因),它们与特定的EPEC血清型相关,并严格遵循EPEC血统。这项研究确定了EspG2在微管网络破坏中的作用,并将不同的espG和espG2类型与不同的EPEC组相关联。 (c)2006年Elsevier SAS。版权所有。

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