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Delivery of enteropathogenic Escherichia coli's receptor for intimate adherence into host epithelial cells.

机译:肠致病性大肠埃希氏菌受体的递送,使其紧密粘附到宿主上皮细胞中。

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摘要

Bacteria have evolved many systems to secrete proteins that are involved in pathogenesis. By evolving targeted delivery systems, it is thought that these pathogens have the advantage of direct (and undiluted) delivery of effectors to a specific cellular location where they can intersect and influence host mechanisms. Several plant and animal Gram-negative bacterial pathogens have a specialized secretion system, called type III (T3SS), to deliver effectors directly from their cytoplasm into host cells, meaning that those effectors cross several biochemically distinct barriers, including the bacterial inner membrane, peptidoglycan layer, and outer membrane as well as the host plasma membrane and even potentially intracellular host membranes. These type III bacterial effector proteins are injected into the host cell where they affect a wide variety of events from promoting phagocytosis, to preventing phagocytosis, to subverting other host signalling pathways. We explored the mechanism by which enteropathogenic Escherichia coli (EPEC) inserts its receptor Tir into host cell membranes, a process which triggers intimate attachment of the bacterium to the host through Tir's outer membrane ligand intimin. We used a mechanical method of cell lysis and ultracentrifugation to fractionate infected HeLa cells to investigate the biology and biochemistry of Tir delivery and translocation, and found that the T3SS was essential for Tir delivery. This method demonstrated that the translocation of Tir into the host cell membrane requires its transmembrane domains, but not tyrosine-phosphorylation or binding to Tir's ligand, intimin. Bacterial fractionation revealed that the type III effectors Tir and EspB required a complete type III apparatus for any degree of export by EPEC indicating a continuous channel. Three type III components were studied and localized to the cytoplasm/associated with the inner membrane (EscN), inner membrane (EscV) and outer membrane (EscC). Remarkably, localization of the EscC secretin to the outer membrane was altered in escV and escN mutants but not in the escF needle protein mutant, suggesting that correct insertion and function of EscC secretin in the outer membrane depends not only on the sec-dependent export pathway but also other type III apparatus components. As effectors like Tir exit the bacteria through the T3SS, they should interact with components of the apparatus. To examine this hypothesis, we performed experiments to determine if there were any interactions between Tir and its chaperone CesT, and EPEC's type III apparatus. By affinity chromatography, gel overlay and immunoprecipitation, we have found that Tir and CesT interact with the type III ATPase EscN. Tir is not necessary for CesT and EscN interactions, and conversely EscN binds Tir specifically without its chaperone CesT. (Abstract shortened by UMI.)
机译:细菌已经进化出许多系统来分泌与发病有关的蛋白质。通过发展靶向递送系统,认为这些病原体具有将效应子直接(和未稀释)递送到特定的细胞位置的优势,在那里它们可以相交并影响宿主机制。几种动植物革兰氏阴性细菌病原体具有一种专门的分泌系统,称为III型(T3SS),可将效应子直接从其细胞质传递到宿主细胞中,这意味着这些效应子会跨越多个生化上不同的屏障,包括细菌内膜,肽聚糖层,外膜以及宿主质膜,甚至可能是细胞内宿主膜。这些III型细菌效应蛋白被注射到宿主细胞中,在宿主细胞中它们影响广泛的事件,从促进吞噬作用到阻止吞噬作用,再到破坏其他宿主信号传导途径。我们探索了肠致病性大肠埃希氏大肠杆菌(EPEC)将其受体Tir插入宿主细胞膜的机制,该过程触发细菌通过Tir的外膜配体intimin紧密附着于宿主。我们使用细胞裂解和超速离心的机械方法对感染的HeLa细胞进行分级,以研究Tir传递和易位的生物学和生物化学,并发现T3SS对于Tir传递至关重要。该方法证明,Tir易位到宿主细胞膜中需要其跨膜结构域,但不需要酪氨酸磷酸化或与Tir的配体内膜素结合。细菌分离显示,III型效应物Tir和EspB对于EPEC指示连续通道需要任何程度的出口,都需要完整的III型装置。研究了三种III型成分,并将其定位于细胞质/与内膜(EscN),内膜(EscV)和外膜(EscC)相关。值得注意的是,在 escV escN 突变体中,EscC分泌蛋白在外膜的定位发生了变化,但在 escF 针状蛋白突变体中却没有变化。 EscC分泌蛋白在外膜中的正确插入和功能不仅取决于 sec 依赖的输出途径,而且还取决于其他III型器械组件。当像Tir的效应子通过T3SS排出细菌时,它们应与设备的组件相互作用。为了检验这一假设,我们进行了实验以确定Tir及其分子伴侣CesT和EPEC的III型仪器之间是否存在任何相互作用。通过亲和色谱,凝胶覆盖和免疫沉淀,我们发现Tir和CesT与III型ATPase EscN相互作用。 Tir对于CesT和EscN相互作用不是必需的,相反,EscN特异地结合Tir而没有其伴侣CesT。 (摘要由UMI缩短。)

著录项

  • 作者

    Gauthier, Annick.;

  • 作者单位

    The University of British Columbia (Canada).;

  • 授予单位 The University of British Columbia (Canada).;
  • 学科 Biology Microbiology.; Biology Cell.; Health Sciences Pathology.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 174 p.
  • 总页数 174
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学;细胞生物学;病理学;
  • 关键词

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