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The Modular Structure of the Inner-Membrane Ring Component PrgK Facilitates Assembly of the Type III Secretion System Basal Body

机译:内膜环组件PrgK的模块化结构有利于III型分泌系统基础体的组装。

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The type III secretion system (T3SS) is a large macromolecular assembly found at the surface of many pathogenic Gram-negative bacteria. Its role is to inject toxic "effector'' proteins into the cells of infected organisms. The molecular details of the assembly of this large, multimembrane-spanning complex remain poorly understood. Here, we report structural, biochemical, and functional analyses of PrgK, an inner-membrane component of the prototypical Salmonella typhimurium T3SS. We have obtained the atomic structures of the two ring building globular domains and show that the C-terminal transmembrane helix is not essential for assembly and secretion. We also demonstrate that structural rearrangement of the two PrgK globular domains, driven by an interconnecting linker region, may promote oligomerization into ring structures. Finally, we used electron microscopy-guided symmetry modeling to propose a structural model for the intimately associated PrgH-PrgK ring interaction within the assembled basal body.
机译:III型分泌系统(T3SS)是在许多致病性革兰氏阴性细菌表面发现的大分子组装体。它的作用是将有毒的“效应子”蛋白注入被感染生物的细胞中。这种大型的跨膜复合物组装体的分子细节仍然鲜为人知。在这里,我们报道PrgK的结构,生化和功能分析鼠伤寒沙门氏菌原型T3SS的内膜成分我们已经获得了两个环结构球状结构域的原子结构,并表明C末端跨膜螺旋对于组装和分泌不是必需的,我们还证明了该结构的重排由相互连接的连接子区域驱动的两个PrgK球状结构域可能促进低聚成环结构。最后,我们使用电子显微镜引导的对称模型为组装的基体内紧密相关的PrgH-PrgK环相互作用提出了结构模型。

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