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Structure of the minor pseudopilin EpsH from the Type 2 Secretion System of Vibrio cholerae

机译:霍乱弧菌2型分泌系统的次要伪菌素EpsH的结构

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摘要

Many Gram-negative bacteria use the multi-protein Type II Secretion System (T2SS) to selectively translocate virulence factors from the periplasmic space into the extracellular environment. In Vibrio cholerae the T2SS is called the Extracellular protein secretion (Eps) system which translocates cholera toxin and several enzymes in their folded state across the outer membrane. Five proteins of the T2SS, the pseudopilins, are thought to assemble into a pseudopilus, which may control the outer membrane pore EpsD, and participate in the active export of proteins in a “piston-like” manner. We report here the 2.0 Å resolution crystal structure of an N-terminally truncated variant of EpsH, a minor pseudopilin from Vibrio cholerae. While EpsH maintains an N-terminal α-helix and C-terminal β-sheet consistent with the Type 4a Pilin fold, structural comparisons reveal major differences between the minor pseudopilin EpsH and the major pseudopilin GspG from Klebsiella oxytoca: EpsH contains a large β-sheet in the variable domain, where the GspG contains an α-helix. Most importantly, EpsH contains at its surface a hydrophobic crevice between its variable and conserved β-sheets, wherein a majority of the conserved residues within the EpsH family are clustered. In a tentative model of a T2SS pseudopilus with EpsH at its tip, the conserved crevice faces away from the helix axis. This conserved surface region may be critical for interacting with other proteins from the T2SS machinery.
机译:许多革兰氏阴性细菌使用多蛋白II型分泌系统(T2SS)将毒力因子从周质空间转移到细胞外环境。在霍乱弧菌中,T2SS称为细胞外蛋白分泌(Eps)系统,该系统将霍乱毒素和几种酶以折叠状态转运到外膜上。 T2SS的5种蛋白质,即假菌毛蛋白,被认为是伪菌毛,可以控制外膜孔EpsD,并以“活塞样”方式参与蛋白质的主动输出。我们在此报告了EpsH(一种来自霍乱弧菌的次要假菌素)的N端截短变体的2.0Å分辨率晶体结构。尽管EpsH维持与4a型Pilin折叠一致的N端α螺旋和C端β折叠,但结构比较显示,小产假菌素EpsH和产于产酸克雷伯菌的主要假菌素GspG之间存在主要差异:EpsH包含大的β-可变域中的表格,其中GspG包含一个α螺旋。最重要的是,EpsH在其表面包含可变和保守的β-折叠之间的疏水缝隙,其中EpsH家族中的大多数保守残基都聚集在一起。在带有EpsH尖端的T2SS假菌毛的暂定模型中,保守的缝隙背对螺旋轴。这个保守的表面区域对于与T2SS机械中的其他蛋白质相互作用可能至关重要。

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