Bournonville Lorène, Laporte Marine H, Borgers Susanne, Guichard Paul, Hamel Virginie
University of Geneva, Faculty of Sciences, Department of Molecular and Cellular Biology, Geneva, Switzerland.
University of Lyon, Université Claude Bernard Lyon 1, MeLiS, UCBL, CNRS UMR 5284, INSERM U1314, Institut NeuroMyoGène, Lyon, France.
Nat Commun. 2025 Jul 24;16(1):6836. doi: 10.1038/s41467-025-62154-6.
Centrioles are evolutionarily conserved barrel-shaped organelles playing crucial roles in cell division and ciliogenesis. These functions are underpinned by specific structural sub-elements whose functions have been under investigation since many years. The A-C linker structure, connecting adjacent microtubule triplets in the proximal region, has remained unexplored due to its unknown composition. Here, using ultrastructure expansion microscopy, we characterized two recently identified A-C linker proteins, CCDC77 and WDR67, and discovered MIIP as an additional A-C linker protein. Our findings reveal that these proteins localize between microtubule triplets at the A-C linker, forming a complex. Depletion of A-C linker components disrupt microtubule triplet cohesion, leading to breakage at the proximal end. Co-removal of the A-C linker and the inner scaffold demonstrates their joint role in maintaining centriole architecture. Moreover, we uncover an unexpected function of the A-C linker in centriole duplication through torus regulation, underscoring the interplay between these protein modules.
中心粒是进化上保守的桶状细胞器,在细胞分裂和纤毛发生中起关键作用。这些功能由特定的结构亚元件支撑,其功能多年来一直在研究中。连接近端区域相邻微管三联体的A-C连接结构,由于其组成未知,一直未被探索。在这里,我们使用超微结构扩展显微镜,对最近鉴定出的两种A-C连接蛋白CCDC77和WDR67进行了表征,并发现MIIP是另一种A-C连接蛋白。我们的研究结果表明,这些蛋白定位于A-C连接处的微管三联体之间,形成一个复合体。A-C连接组件的缺失会破坏微管三联体的凝聚力,导致近端断裂。同时去除A-C连接和内部支架证明了它们在维持中心粒结构中的共同作用。此外,我们通过环调节发现了A-C连接在中心粒复制中的一个意想不到的功能,强调了这些蛋白质模块之间的相互作用。