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基于单颗粒分析的分枝杆菌 ESX-5 型 VII 型分泌系统膜复合物的结构。

Structure of the mycobacterial ESX-5 type VII secretion system membrane complex by single-particle analysis.

机构信息

European Molecular Biology Laboratory, Hamburg Unit, Notkestraße 85, 22607 Hamburg, Germany.

Research Institute of Molecular Pathology (IMP), Vienna Biocenter (VBC), Campus-Vienna-Biocenter 1, 1030 Vienna, Austria.

出版信息

Nat Microbiol. 2017 Apr 10;2:17047. doi: 10.1038/nmicrobiol.2017.47.

DOI:10.1038/nmicrobiol.2017.47
PMID:28394313
Abstract

Mycobacteria are characterized by their impermeable outer membrane, which is rich in mycolic acids. To transport substrates across this complex cell envelope, mycobacteria rely on type VII (also known as ESX) secretion systems. In Mycobacterium tuberculosis, these ESX systems are essential for growth and full virulence and therefore represent an attractive target for anti-tuberculosis drugs. However, the molecular details underlying type VII secretion are largely unknown, due to a lack of structural information. Here, we report the molecular architecture of the ESX-5 membrane complex from Mycobacterium xenopi determined at 13 Å resolution by electron microscopy. The four core proteins of the ESX-5 complex (EccB, EccC, EccD and EccE) assemble with equimolar stoichiometry into an oligomeric assembly that displays six-fold symmetry. This membrane-associated complex seems to be embedded exclusively in the inner membrane, which indicates that additional components are required to translocate substrates across the mycobacterial outer membrane. Furthermore, the extended cytosolic domains of the EccC ATPase, which interact with secretion effectors, are highly flexible, suggesting an as yet unseen mode of substrate interaction. Comparison of our results with known structures of other bacterial secretion systems demonstrates that the architecture of type VII secretion system is fundamentally different, suggesting an alternative secretion mechanism.

摘要

分枝杆菌的特点是其不透性的外膜,富含分枝菌酸。为了将底物运输穿过这个复杂的细胞包膜,分枝杆菌依赖于 VII 型(也称为 ESX)分泌系统。在结核分枝杆菌中,这些 ESX 系统对于生长和完全毒力是必不可少的,因此代表了抗结核药物的一个有吸引力的靶点。然而,由于缺乏结构信息,VII 型分泌的分子细节在很大程度上仍是未知的。在这里,我们通过电子显微镜以 13Å 的分辨率报告了来自非洲分枝杆菌的 ESX-5 膜复合物的分子结构。ESX-5 复合物的四个核心蛋白(EccB、EccC、EccD 和 EccE)以等摩尔比组装成具有六重对称的寡聚组装体。这个与膜相关的复合物似乎专门嵌入在内膜中,这表明需要额外的成分来将底物穿过分枝杆菌的外膜转运。此外,与分泌效应物相互作用的 EccC ATP 酶的扩展胞质结构域具有高度的灵活性,这表明存在一种尚未见过的底物相互作用模式。将我们的结果与其他细菌分泌系统的已知结构进行比较表明,VII 型分泌系统的结构在根本上是不同的,这表明存在替代的分泌机制。

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Mycosins Are Required for the Stabilization of the ESX-1 and ESX-5 Type VII Secretion Membrane Complexes.肌动蛋白对于ESX-1和ESX-5 VII型分泌膜复合物的稳定是必需的。
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ESX secretion systems: mycobacterial evolution to counter host immunity.
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A novel variant of the type VII secretion system EssC component is associated with an Rhs toxin.一种新型的 VII 型分泌系统 EssC 组成部分与 Rhs 毒素有关。
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