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Ultrastructural analysis of IpaD at the tip of the nascent MxiH type III secretion apparatus of Shigella flexneri

机译:弗氏志贺氏菌新生MxiH III型分泌设备尖端IpaD的超微结构分析

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Shigella flexneri is a Gram-negative enteric pathogen that is the predominant cause of bacillary dysentery. Shigella uses a type III secretion system to deliver effector proteins that alter normal target cell functions to promote pathogen invasion. The type III secretion apparatus (T3SA) consists of a basal body, an extracellular needle, and a tip complex that is responsible for delivering effectors into the host cell cytoplasm. IpaD [Ipa (invasion plasmid antigen)] is the first protein to localize to the T3SA needle tip, where it prevents premature effector secretion and serves as an environmental sensor for triggering recruitment of the translocator protein IpaB to the needle tip. Thus, IpaD would be expected to form a stable structure whose overall architecture supports its functions. It is not immediately obvious from the published IpaD crystal structure (Protein Data Bank ID 2j0o) how a multimer of IpaD would be incorporated at the tip of the first static T3SA intermediate, nor what its functional role would be in building a mature T3SA. Here, we produce three-dimensional reconstructions from transmission electron microscopy images of IpaD localized at the Shigella T3SA needle tip for comparison to needle tips from a Shigella ipaD-null mutant. The results demonstrate that IpaD resides as a homopentamer at the needle tip of the T3SA. Furthermore, comparison to tips assembled from the distal domain IpaD Δ192-267 mutation shows that IpaD adopts an elongated conformation that facilitates its ability to control type III secretion and stepwise assembly of the T3SA needle tip complex.
机译:弗氏志贺氏菌是革兰氏阴性肠病原体,是细菌性痢疾的主要原因。志贺氏菌(Shigella)使用III型分泌系统来传递效应蛋白,从而改变正常靶细胞的功能以促进病原体入侵。 III型分泌设备(T3SA)由基体,细胞外针和尖端复合物组成,后者负责将效应子传递到宿主细胞的细胞质中。 IpaD [Ipa(侵袭质粒抗原)]是第一个定位于T3SA针尖的蛋白质,在该蛋白质中它防止过早的效应子分泌,并用作触发易位蛋白IpaB募集到针尖的环境传感器。因此,可以期望IpaD形成一个稳定的结构,其总体架构支持其功能。从已发布的IpaD晶体结构(蛋白质数据库ID 2j0o)中,立即发现IpaD的多聚体将如何掺入第一个静态T3SA中间体的尖端,以及它在构建成熟的T3SA中的功能性作用尚不明显。在这里,我们从位于志贺氏菌T3SA针尖的IpaD的透射电子显微镜图像产生了三维重建物,用于与志贺氏菌ipaD-null突变体的针尖进行比较。结果表明,IpaD作为高五聚体存在于T3SA的针尖。此外,与由远端结构域IpaDΔ192-267突变组装而成的针尖比较显示,IpaD采用延长的构象,有助于其控制III型分泌和T3SA针尖复合物的逐步组装的能力。

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