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CDK5RAP2对γ-微管蛋白环复合物的部分封闭激活微管成核。

Partial closure of the γ-tubulin ring complex by CDK5RAP2 activates microtubule nucleation.

作者信息

Xu Yixin, Muñoz-Hernández Hugo, Krutyhołowa Rościsław, Marxer Florina, Cetin Ferdane, Wieczorek Michal

机构信息

Department of Biology, Institute of Molecular Biology and Biophysics, ETH Zürich, 8093 Zürich, Switzerland.

Department of Biology, Institute of Molecular Biology and Biophysics, ETH Zürich, 8093 Zürich, Switzerland.

出版信息

Dev Cell. 2024 Dec 2;59(23):3161-3174.e15. doi: 10.1016/j.devcel.2024.09.002. Epub 2024 Sep 24.

Abstract

Microtubule nucleation is templated by the γ-tubulin ring complex (γ-TuRC), but its structure deviates from the geometry of α-/β-tubulin in the microtubule, explaining the complex's poor nucleating activity. Several proteins may activate the γ-TuRC, but the mechanisms underlying activation are not known. Here, we determined the structure of the porcine γ-TuRC purified using CDK5RAP2's centrosomin motif 1 (CM1). We identified an unexpected conformation of the γ-TuRC bound to multiple protein modules containing MZT2, GCP2, and CDK5RAP2, resulting in a long-range constriction of the γ-tubulin ring that brings it in closer agreement with the 13-protofilament microtubule. Additional CDK5RAP2 promoted γ-TuRC decoration and stimulated the microtubule-nucleating activities of the porcine γ-TuRC and a reconstituted, CM1-free human complex in single-molecule assays. Our results provide a structural mechanism for the control of microtubule nucleation by CM1 proteins and identify conformational transitions in the γ-TuRC that prime it for microtubule nucleation.

摘要

微管成核由γ-微管蛋白环复合物(γ-TuRC)介导,但它的结构与微管中α/β-微管蛋白的几何形状不同,这解释了该复合物成核活性较差的原因。几种蛋白质可能会激活γ-TuRC,但激活的潜在机制尚不清楚。在这里,我们确定了使用CDK5RAP2的中心体蛋白基序1(CM1)纯化的猪γ-TuRC的结构。我们发现γ-TuRC与包含MZT2、GCP2和CDK5RAP2的多个蛋白质模块结合时呈现出意想不到的构象,导致γ-微管蛋白环出现长程收缩,使其与13条原纤维的微管更加匹配。在单分子试验中,额外的CDK5RAP2促进了γ-TuRC的修饰,并刺激了猪γ-TuRC和重组的、不含CM1的人复合物的微管成核活性。我们的结果为CM1蛋白控制微管成核提供了一种结构机制,并确定了γ-TuRC中使其准备好进行微管成核的构象转变。

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