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首页> 外文期刊>Molecular cell >Molecular and structural basis of ESCRT-III recruitment to membranes during archaeal cell division.
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Molecular and structural basis of ESCRT-III recruitment to membranes during archaeal cell division.

机译:ESCRT-III在古细菌细胞分裂过程中募集到膜的分子和结构基础。

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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:颅骨王国的成员,如Sulfolobus,通过二元裂变分裂,但缺乏原本几乎普遍存在的微管蛋白和肌动蛋白细胞骨架蛋白超家族的基因。最近的工作已经确定,ESCRT机制的真核ESCRT-III和Vps4组件的Sulfolobus同源物在Sulfolobus细胞分裂中起重要作用。在真核生物中,几种途径将ESCRT-III蛋白募集到它们的作用位点。但是,尚不知道古生ESCRT-III的定位决定因素。在这里,我们确定了一种蛋白质CdvA,它负责将Sulfolobus ESCRT-III募集到膜上。与CdvA相互作用的分离的ESCRT-III结构域的过表达导致无核苷细胞的产生。此外,CdvA和ESCRT-III在体外协同作用使古细菌膜变形。 CdvA / ESCRT-III接口的结构使您可以洞悉更复杂的模块化真核ESCRT复合体。

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