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ESCRT-III CHMP2A and CHMP3 form variable helical polymers in vitro and act synergistically during HIV-1 budding

机译:ESCRT-III CHMP2A和CHMP3在体外形成可变的螺旋聚合物,并在HIV-1出芽期间协同作用

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摘要

The endosomal sorting complex required for transport-III (ESCRT-III) proteins are essential for budding of some enveloped viruses, for the formation of intraluminal vesicles at the endosome and for the abscission step of cytokinesis. ESCRT-III proteins form polymers that constrict membrane tubes, leading to fission. We have used electron cryomicroscopy to determine the molecular organization of pleiomorphic ESCRT-III CHMP2A- CHMP3 polymers. The three-dimensional reconstruction at 22 ? resolution reveals a helical organization of filaments of CHMP molecules organized in a head-to-tail fashion. Protease susceptibility experiments indicate that polymerization is achieved via conformational changes that increase the protomer stability. Combinatorial siRNA knockdown experiments indicate that CHMP3 contributes synergistically to HIV-1 budding, and the CHMP3 contribution is ~ 10-fold more pronounced in concert with CHMP2A than with CHMP2B. This is consistent with surface plasmon resonance affinity measurements that suggest sequential CHMP4B-CHMP3-CHMP2A recruitment while showing that both CHMP2A and CHMP2B interact with CHMP4B, in agreement with their redundant functions in HIV-1 budding. Our data thus indicate that the CHMP2A-CHMP3 polymer observed in vitro contributes to HIV-1 budding by assembling on CHMP4B polymers.
机译:转运III(ESCRT-III)蛋白所需的内体分选复合物对于某些包膜病毒的出芽,内体中腔内小泡的形成以及胞质分裂的脱落步骤都是必不可少的。 ESCRT-III蛋白形成可收缩膜管的聚合物,从而导致裂变。我们已经使用电子冷冻显微镜检查来确定多晶形ESCRT-III CHMP2A- CHMP3聚合物的分子组织。三维重建在22?分辨率揭示了CHMP分子细丝的螺旋组织以头到尾的方式组织。蛋白酶敏感性实验表明,聚合反应是通过构象变化来实现的,该构象变化会增加启动子的稳定性。组合siRNA敲低实验表明,CHMP3对HIV-1出芽具有协同作用,与CHMP2A协同作用,CHMP3的作用明显高出10倍。这与表面等离振子共振亲和力测量结果一致,该测量结果表明顺序进行CHMP4B-CHMP3-CHMP2A募集,同时表明CHMP2A和CHMP2B均与CHMP4B相互作用,这与它们在HIV-1萌芽中的冗余功能一致。因此,我们的数据表明,通过在CHMP4B聚合物上组装,在体外观察到的CHMP2A-CHMP3聚合物有助于HIV-1出芽。

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