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首页> 外文期刊>PLoS Pathogens >Role of SpaO in the assembly of the sorting platform of a Salmonella type III secretion system
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Role of SpaO in the assembly of the sorting platform of a Salmonella type III secretion system

机译:SpaO在组装III型沙门氏菌分泌系统分选平台中的作用

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Many bacterial pathogens and symbionts use type III secretion machines to interact with their hosts by injecting bacterial effector proteins into host target cells. A central component of this complex machine is the cytoplasmic sorting platform, which orchestrates the engagement and preparation of type III secreted proteins for their delivery to the needle complex, the substructure of the type III secretion system that mediates their passage through the bacterial envelope. The sorting platform is thought to be a dynamic structure whose components alternate between assembled and disassembled states. However, how this dynamic behavior is controlled is not understood. In S. Typhimurium a core component of the sorting platform is SpaO, which is synthesized in two tandemly translated products, a full length (SpaOL) and a short form (SpaOS) composed of the C-terminal 101 amino acids. Here we show that in the absence of SpaOS the assembly of the needle substructure of the needle complex, which requires a functional sorting platform, can still occur although with reduced efficiency. Consistent with this observation, in the absence of SpaOS secretion of effectors proteins, which requires a fully assembled injectisome, is only slightly compromised. In the absence of SpaOS we detect a significant number of fully assembled needle complexes that are not associated with fully assembled sorting platforms. We also find that although binding of SpaOL to SpaOS can be detected in the absence of other components of the sorting platform, this interaction is not detected in the context of a fully assembled sorting platform suggesting that SpaOS may not be a core structural component of the sorting platform. Consistent with this observation we find that SpaOS and OrgB, a component of the sorting platform, share the same binding surface on SpaOL. We conclude that SpaOS regulates the assembly of the sorting platform during type III secretion.
机译:许多细菌病原体和共生体通过将细菌效应蛋白注射到宿主靶细胞中来使用III型分泌机与宿主相互作用。这种复杂机器的主要组成部分是细胞质分选平台,该平台可协调III型分泌蛋白的结合和制备,以将其输送到针状复合物中,III型分泌系统的亚结构介导它们穿过细菌包膜。分拣平台被认为是一种动态结构,其组件在组装和拆卸状态之间交替。但是,如何控制这种动态行为还不清楚。在鼠伤寒沙门氏菌中,分选平台的核心成分是SpaO,它是由两个串联翻译的产物合成的,全长(SpaOL)和短形式(SpaOS)由C端101个氨基酸组成。在这里,我们表明,在缺少SpaOS的情况下,尽管效率降低了,但仍需要进行功能分类平台的针头复合体的针头子结构的组装仍会发生。与该观察结果一致,在不存在SpaOS的情况下,仅需要稍微损害需要完全组装的注射体的效应子蛋白的分泌。在没有SpaOS的情况下,我们会检测到与完全组装的分拣平台无关的大量完全组装的针头复合物。我们还发现,尽管可以在没有排序平台的其他组件的情况下检测到SpaOL与SpaOS的绑定,但是在完全组装的排序平台的上下文中未检测到这种相互作用,这表明SpaOS可能不是该组件的核心结构组件。分拣平台。与该观察结果一致,我们发现SpaOS和OrgB(排序平台的组件)在SpaOL上共享相同的绑定表面。我们得出的结论是,SpaOS在III型分泌过程中调节了分类平台的组装。

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