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首页> 外文期刊>Molecular Microbiology >Structure of the Mycobacterium tuberculosis type VII secretion system chaperone EspG5 in complex with PE25-PPE41 dimer
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Structure of the Mycobacterium tuberculosis type VII secretion system chaperone EspG5 in complex with PE25-PPE41 dimer

机译:与PE25-PPE41二聚体复合的结核分枝杆菌VII型分泌系统分子伴侣EspG5的结构

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The growth or virulence of Mycobacterium tuberculosis bacilli depends on homologous type VII secretion systems, ESX-1, ESX-3 and ESX-5, which export a number of protein effectors across membranes to the bacterial surface and environment. PE and PPE proteins represent two large families of highly polymorphic proteins that are secreted by these ESX systems. Recently, it was shown that these proteins require system-specific cytoplasmic chaperones for secretion. Here, we report the crystal structure of M. tuberculosisESX-5-secreted PE25-PPE41 heterodimer in complex with the cytoplasmic chaperone EspG5. EspG5 represents a novel fold that is unrelated to previously characterized secretion chaperones. Functional analysis of the EspG5-binding region uncovered a hydrophobic patch on PPE41 that promotes dimer aggregation, and the chaperone effectively abolishes this process. We show that PPE41 contains a characteristic chaperone-binding sequence, the hh motif, which is highly conserved among ESX-1-, ESX-3- and ESX-5-specific PPE proteins. Disrupting the interaction between EspG5 and three different PPE target proteins by introducing different point mutations generally affected protein secretion. We further demonstrate that the EspG5 chaperone plays an important role in the ESX secretion mechanism by keeping aggregation-prone PE-PPE proteins in their soluble state.
机译:结核分枝杆菌的生长或毒力取决于同源的VII型分泌系统ESX-1,ESX-3和ESX-5,它们通过膜将许多蛋白质效应子输出到细菌表面和环境。 PE和PPE蛋白质代表这些ESX系统分泌的两个大家族的高度多态的蛋白质。最近,已显示这些蛋白质需要系统特异性的胞质伴侣来分泌。在这里,我们报告与细胞质伴侣EspG5复杂的结核分枝杆菌ESX-5分泌的PE25-PPE41异二聚体的晶体结构。 EspG5代表一种新颖的折叠,与以前表征的分泌伴侣无关。 EspG5结合区域的功能分析发现PPE41上的疏水补丁促进了二聚体的聚集,并且分子伴侣有效地消除了这一过程。我们显示PPE41包含一个特征性的伴侣结合序列,hh主题,这是在ESX-1,ESX-3-和ESX-5特异性PPE蛋白之间高度保守的。通过引入不同的点突变来破坏EspG5与三种不同的PPE目标蛋白之间的相互作用,通常会影响蛋白的分泌。我们进一步证明,EspG5分子伴侣通过将易于聚集的PE-PPE蛋白保持在其可溶状态,在ESX分泌机制中发挥重要作用。

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