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Molecular and structural basis of ESCRT-III recruitment to membranes during archaeal cell division.

机译:Escrt-III植物脑分裂期间Escrt-III募集的分子和结构基础。

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摘要

Members of the crenarchaeal kingdom, such as Sulfolobus, divide by binary fission yet lack genes for the otherwise near-ubiquitous tubulin and actin superfamilies of cytoskeletal proteins. Recent work has established that Sulfolobus homologs of the eukaryotic ESCRT-III and Vps4 components of the ESCRT machinery play an important role in Sulfolobus cell division. In eukaryotes, several pathways recruit ESCRT-III proteins to their sites of action. However, the positioning determinants for archaeal ESCRT-III are not known. Here, we identify a protein, CdvA, that is responsible for recruiting Sulfolobus ESCRT-III to membranes. Overexpression of the isolated ESCRT-III domain that interacts with CdvA results in the generation of nucleoid-free cells. Furthermore, CdvA and ESCRT-III synergize to deform archaeal membranes in vitro. The structure of the CdvA/ESCRT-III interface gives insight into the evolution of the more complex and modular eukaryotic ESCRT complex.
机译:颅底王国的成员,如柳霉菌,除以二元裂变除以另外近乎普遍的小管蛋白的基因,缺乏细胞骨骼蛋白的肌动蛋白酶。 最近的工作已经确定了Escrt机械真核生物Escrt-III和VPS4组分的苏洛枯草同源物在亚磺酰桶细胞分裂中起重要作用。 在真核生物中,几种途径将Escrt-III蛋白招募到他们的行动部位。 然而,古代ESCRT-III的定位决定簇不知道。 在这里,我们鉴定蛋白质CDVA,该蛋白质CDVA负责募集磺脲ESCRT-III至膜。 与CDVA相互作用的孤立ESCRT-III结构域的过度表达导致产生无核细胞的产生。 此外,CDVA和ESCRT-III在体外协同变形古膜。 CDVA / ESCRT-III界面的结构介绍了更复杂和模块化真核ESCRT复合物的演变。

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