首页> 美国卫生研究院文献>PLoS Pathogens >A Component of the Xanthomonadaceae Type IV Secretion System Combines a VirB7 Motif with a N0 Domain Found in Outer Membrane Transport Proteins
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A Component of the Xanthomonadaceae Type IV Secretion System Combines a VirB7 Motif with a N0 Domain Found in Outer Membrane Transport Proteins

机译:Xanthomonadaceae IV型分泌系统的组成部分结合了VirB7母题和外膜转运蛋白中的N0域。

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摘要

Type IV secretion systems (T4SS) are used by Gram-negative bacteria to translocate protein and DNA substrates across the cell envelope and into target cells. Translocation across the outer membrane is achieved via a ringed tetradecameric outer membrane complex made up of a small VirB7 lipoprotein (normally 30 to 45 residues in the mature form) and the C-terminal domains of the VirB9 and VirB10 subunits. Several species from the genera of Xanthomonas phytopathogens possess an uncharacterized type IV secretion system with some distinguishing features, one of which is an unusually large VirB7 subunit (118 residues in the mature form). Here, we report the NMR and 1.0 Å X-ray structures of the VirB7 subunit from Xanthomonas citri subsp. citri (VirB7XAC2622) and its interaction with VirB9. NMR solution studies show that residues 27–41 of the disordered flexible N-terminal region of VirB7XAC2622 interact specifically with the VirB9 C-terminal domain, resulting in a significant reduction in the conformational freedom of both regions. VirB7XAC2622 has a unique C-terminal domain whose topology is strikingly similar to that of N0 domains found in proteins from different systems involved in transport across the bacterial outer membrane. We show that VirB7XAC2622 oligomerizes through interactions involving conserved residues in the N0 domain and residues 42–49 within the flexible N-terminal region and that these homotropic interactions can persist in the presence of heterotropic interactions with VirB9. Finally, we propose that VirB7XAC2622 oligomerization is compatible with the core complex structure in a manner such that the N0 domains form an extra layer on the perimeter of the tetradecameric ring.
机译:革兰氏阴性细菌使用IV型分泌系统(T4SS)将蛋白和DNA底物跨细胞包膜转运并进入靶细胞。通过由小的VirB7脂蛋白(成熟形式通常为30至45个残基)以及VirB9和VirB10亚基的C端结构域组成的环状十四聚体外膜复合物,可实现跨外膜的转运。 Xanthomonas植物病原体属中的几种具有未表征的IV型分泌系统,具有一些区别特征,其中之一是异常大的VirB7亚基(成熟形式有118个残基)。在这里,我们报道了来自柑橘黄单胞菌亚种的VirB7亚基的NMR和1.0ÅX射线结构。柠檬(VirB7XAC2622)及其与VirB9的相互作用。 NMR溶液研究表明,VirB7XAC2622的无序柔性N末端区域的残基27-41与VirB9 C末端结构域特异性相互作用,导致两个区域的构象自由度显着降低。 VirB7XAC2622具有一个独特的C末端结构域,其拓扑结构与在跨细菌外膜运输的不同系统的蛋白质中发现的N0结构域极为相似。我们显示,VirB7XAC2622通过涉及N0域中的保守残基和柔性N端区域内的残基42–49的相互作用而寡聚,并且这些同向相互作用可以在与VirB9发生异向相互作用的情况下持续存在。最后,我们提出VirB7XAC2622低聚与核心复合结构兼容的方式是,N0域在十四聚环的周边形成一个额外的层。

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