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Midbody Targeting Of The Escrt Machinery By A Noncanonical Coiled Coil In Cep55

机译:在Cep55中使用非规范线圈对Escrt机械进行中体瞄准

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The ESCRT (endosomal sorting complex required for transport) machinery is required for the scission of membrane necks in processes including the budding of HIV-1 and cytokinesis. An essential step in cytokinesis is recruitment of the ESCRT-I complex and the ESCRT-associated protein ALIX to the midbody (the structure that tethers two daughter cells) by the protein CEP55. Biochemical experiments show that peptides from ALIX and the ESCRT-I subunit TSG101 compete for binding to the ESCRT- and ALIX-binding region (EABR) of CEP55. We solved the crystal structure of EABR bound to an ALIX peptide at a resolution of 2.0 angstroms. The structure shows that EABR forms an aberrant dimeric parallel coiled coil. Bulky and charged residues at the interface of the two central heptad repeats create asymmetry and a single binding site for an ALIX or TSG101 peptide. Both ALIX and ESCRT-I are required for cytokinesis, which suggests that multiple CEP55 dimers are required for function.
机译:在包括HIV-1萌芽和胞质分裂在内的过程中,需要使用ESCRT(运输所需的内体分拣复合体)机械来切开膜颈。细胞分裂的关键步骤是通过蛋白CEP55将ESCRT-1复合物和ESCRT相关蛋白ALIX募集到中体(束缚两个子细胞的结构)上。生化实验表明,ALIX和ESCRT-1亚基TSG101的肽竞争与CEP55的ESCRT和ALIX结合区(EABR)的结合。我们解决了以2.0埃的分辨率与ALIX肽结合的EABR的晶体结构。该结构表明EABR形成异常的二聚体平行盘绕线圈。两个中央七肽重复序列的界面处的庞大残基和带电残基会形成不对称性,并形成ALIX或TSG101肽的单个结合位点。细胞分裂需要ALIX和ESCRT-1,这表明功能需要多个CEP55二聚体。

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