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中心体招募和微管成核因子γ-TuRC组织的结构机制。

Structural mechanisms for centrosomal recruitment and organization of the microtubule nucleator γ-TuRC.

作者信息

Gao Qi, Hofer Florian W, Filbeck Sebastian, Vermeulen Bram J A, Würtz Martin, Neuner Annett, Kaplan Charlotte, Zezlina Maja, Sala Cornelia, Shin Hyesu, Gruss Oliver J, Schiebel Elmar, Pfeffer Stefan

机构信息

Zentrum für Molekulare Biologie der Universität Heidelberg (ZMBH), Heidelberg, Germany.

European Molecular Biology Laboratory (EMBL), Heidelberg, Germany.

出版信息

Nat Commun. 2025 Mar 12;16(1):2453. doi: 10.1038/s41467-025-57729-2.

Abstract

The γ-tubulin ring complex (γ-TuRC) acts as a structural template for microtubule formation at centrosomes, associating with two main compartments: the pericentriolar material and the centriole lumen. In the pericentriolar material, the γ-TuRC is involved in microtubule organization, while the function of the centriole lumenal pool remains unclear. The conformational landscape of the γ-TuRC, which is crucial for its activity, and its centrosomal anchoring mechanisms, which determine γ-TuRC activity and turnover, are not understood. Using cryo-electron tomography, we analyze γ-TuRCs in human cells and purified centrosomes. Pericentriolar γ-TuRCs simultaneously associate with the essential adapter NEDD1 and the microcephaly protein CDK5RAP2. NEDD1 forms a tetrameric structure at the γ-TuRC base through interactions with four GCP3/MZT1 modules and GCP5/6-specific extensions, while multiple copies of CDK5RAP2 engage the γ-TuRC in two distinct binding patterns to promote γ-TuRC closure and activation. In the centriole lumen, the microtubule branching factor Augmin tethers a condensed cluster of γ-TuRCs to the centriole wall with defined directional orientation. Centriole-lumenal γ-TuRC-Augmin is protected from degradation during interphase and released in mitosis to aid chromosome alignment. This study provides a unique view on γ-TuRC structure and molecular organization at centrosomes and identifies an important cellular function of centriole-lumenal γ-TuRCs.

摘要

γ-微管蛋白环复合物(γ-TuRC)作为中心体上微管形成的结构模板,与两个主要区域相关联:中心粒周围物质和中心粒管腔。在中心粒周围物质中,γ-TuRC参与微管组织,而中心粒管腔池的功能仍不清楚。γ-TuRC的构象格局对其活性至关重要,而其中心体锚定机制决定了γ-TuRC的活性和周转,但目前尚不清楚。我们使用冷冻电子断层扫描技术分析了人类细胞和纯化中心体中的γ-TuRC。中心粒周围的γ-TuRC同时与必需的衔接蛋白NEDD1和小头畸形蛋白CDK5RAP2相关联。NEDD1通过与四个GCP3/MZT1模块和GCP5/6特异性延伸部分相互作用,在γ-TuRC基部形成四聚体结构,而多个拷贝的CDK5RAP2以两种不同的结合模式与γ-TuRC结合,以促进γ-TuRC的闭合和激活。在中心粒管腔中,微管分支因子Augmin将γ-TuRC的浓缩簇以确定的方向系在中心粒壁上。中心粒管腔中的γ-TuRC-Augmin在间期受到保护不被降解,并在有丝分裂时释放出来以帮助染色体排列。这项研究提供了关于γ-TuRC在中心体的结构和分子组织的独特观点,并确定了中心粒管腔γ-TuRC的重要细胞功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0be9/11903878/9d290fecd849/41467_2025_57729_Fig1_HTML.jpg

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