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Secretin of the Enteropathogenic Escherichia coli Type III Secretion System Requires Components of the Type III Apparatus for Assembly and Localization

机译:肠致病性大肠杆菌III型分泌系统的促胰液素需要III型仪器的组件才能进行组装和定位

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摘要

At least 16 proteins are thought to be involved in forming the enteropathogenic Escherichia coli (EPEC) type III translocation apparatus which delivers virulence factors into host cells, yet their function and location have not been determined. A biochemical analysis was performed on three components: EscN, a predicted cytoplasmic ATPase; EscV, a predicted inner membrane protein; and EscC, a predicted outer membrane secretin. Wild-type EPEC and mutants constructed in these genes were fractionated by lysozyme treatment, ultracentrifugation, and selective detergent extraction. Fractionation revealed that the type III effectors Tir and EspB required a complete type III apparatus for any degree of export by EPEC, suggesting a continuous channel. Epitope-tagged EscC, EscV, and EscN were localized by fractionation, confirming computer modeling predictions for their location. Transcomplementation experiments revealed that localization of EscV and EscN was unaffected by mutations in other examined type III components. Remarkably, localization of EscC was altered in escV or escN mutants, where EscC accumulated in the periplasm. EscC was correctly localized in the escF needle component mutant, indicating that secretin localization is independent of needle formation. These data indicate that, contrary to previous indications, correct insertion and function of EscC secretin in the outer membrane depends not only on the sec-dependent secretion pathway but also on other type III apparatus components.
机译:据认为,至少有16种蛋白质参与了肠致病性大肠埃希氏菌(EPEC)III型易位装置的形成,该装置将毒力因子传递到宿主细胞中,但尚未确定其功能和位置。对三个成分进行了生化分析:EscN,一种预测的胞质ATPase; EscV,一种预测的内膜蛋白; EscC,一种预测的外膜分泌素。通过溶菌酶处理,超速离心和选择性去污剂提取分离野生型EPEC和在这些基因中构建的突变体。分级分离显示,III型效应物Tir和EspB对于EPEC的任何程度的出口都需要完整的III型装置,表明存在连续通道。带有表位标签的EscC,EscV和EscN通过分级进行定位,从而确定了其位置的计算机建模预测。转互补实验显示EscV和EscN的定位不受其他检查的III型成分突变的影响。值得注意的是,EscC的位置在escV或escN突变体中发生了变化,其中EscC积累在周质中。 EscC正确定位在escF针成分突变体中,表明促胰液素的定位与针的形成无关。这些数据表明,与先前的指示相反,EscC分泌蛋白在外膜中的正确插入和功能不仅取决于sec依赖性分泌途径,还取决于其他III型装置组件。

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