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首页> 外文期刊>Science Advances >Assembly of the asymmetric human γ-tubulin ring complex by RUVBL1-RUVBL2 AAA ATPase
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Assembly of the asymmetric human γ-tubulin ring complex by RUVBL1-RUVBL2 AAA ATPase

机译:Ruvbl1-Ruvbl2 AAA ATP酶组装不对称人γ-微管蛋白环络合物

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摘要

The microtubule nucleator γ-tubulin ring complex (γTuRC) is essential for the function of microtubule organizing centers such as the centrosome. Since its discovery over two decades ago, γTuRC has evaded in vitro reconstitution and thus detailed structure-function studies. Here, we show that a complex of RuvB-like protein 1 (RUVBL1) and RUVBL2 “RUVBL” controls assembly and composition of γTuRC in human cells. Likewise, RUVBL assembles γTuRC from a minimal set of core subunits in a heterologous coexpression system. RUVBL interacts with γTuRC subcomplexes but is not part of fully assembled γTuRC. Purified, reconstituted γTuRC has nucleation activity and resembles native γTuRC as revealed by its cryo–electron microscopy (cryo-EM) structure at ~4.0-? resolution. We further use cryo-EM to identify features that determine the intricate, higher-order γTuRC architecture. Our work finds RUVBL as an assembly factor that regulates γTuRC in cells and allows production of recombinant γTuRC for future in-depth mechanistic studies.
机译:微管核γ-微管蛋白环复合物(γturc)对于微管组织中心如中间体组织的功能是必不可少的。自两十年前发现以来,γturc已经疏散了体外重建,因此脱颖而出,因此进行了详细的结构函数研究。在此,我们表明RuvB样蛋白1(Ruvbl1)和Ruvbl2“Ruvbl”的复合物控制人细胞中γTurc的组装和组合物。同样,Ruvbl从异源共表表达系统中的最小一组核心子单元组装γturc。 Ruvbl与γturc子拷贝交互,但不是完全组装的γturc的一部分。纯化的,重构γTurc具有成核活性,并且类似于其冷冻电子显微镜(Cryo-EM)结构所揭示的天然γTurc在〜4.0-?解析度。我们进一步使用Cryo-EM来识别确定复杂的高阶γturc架构的功能。我们的作品发现Ruvbl作为调节细胞中γTurC的组装因子,并允许生产重组γturc以进行未来的深入机制研究。

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