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Structural basis for the hijacking of endosomal sorting nexin proteins by Chlamydia trachomatis

机译:沙眼衣原体劫持内体分选神经蛋白的结构基础

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摘要

During infection chlamydial pathogens form an intracellular membrane-bound replicative niche termed the inclusion, which is enriched with bacterial transmembrane proteins called Incs. Incs bind and manipulate host cell proteins to promote inclusion expansion and provide camouflage against innate immune responses. Sorting nexin (SNX) proteins that normally function in endosomal membrane trafficking are a major class of inclusion-associated host proteins, and are recruited by IncE/CT116. Crystal structures of the SNX5 phox-homology (PX) domain in complex with IncE define the precise molecular basis for these interactions. The binding site is unique to SNX5 and related family members SNX6 and SNX32. Intriguingly the site is also conserved in SNX5 homologues throughout evolution, suggesting that IncE captures SNX5-related proteins by mimicking a native host protein interaction. These findings thus provide the first mechanistic insights both into how chlamydial Incs hijack host proteins, and how SNX5-related PX domains function as scaffolds in protein complex assembly.>DOI:
机译:在感染期间,衣原体病原体形成细胞内与膜结合的复制生态位,称为包涵体,其中富含称为Incs的细菌跨膜蛋白。 Incs结合并操纵宿主细胞蛋白以促进包涵体扩展并提供针对先天免疫反应的伪装。通常在内体膜运输中起作用的分选神经毒素(SNX)蛋白是一类主要的包涵体相关宿主蛋白,由IncE / CT116募集。与IncE复杂的SNX5 phox-homology(PX)域的晶体结构定义了这些相互作用的精确分子基础。绑定站点对于SNX5及其相关家族成员SNX6和SNX32是唯一的。有趣的是,该位点在整个进化过程中也保留在SNX5同源物中,这表明IncE通过模仿天然宿主蛋白相互作用来捕获SNX5相关蛋白。因此,这些发现为衣原体公司如何劫持宿主蛋白以及SNX5相关的PX域如何在蛋白复合物组装中充当支架提供了首次机械学见解。> DOI:

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