Je Su-Yeon, Ko Hyuk Wan
Department of Biochemistry, College of Life Science and Biotechnology, Yonsei University, Seoul, 03722, Republic of Korea.
Brain Korea 21 (BK21) FOUR Program, Yonsei Education & Research Center for Biosystems, Yonsei University, Seoul, 03722, Republic of Korea.
Cell Commun Signal. 2024 Dec 18;22(1):607. doi: 10.1186/s12964-024-01962-7.
The primary cilium is a cellular organelle whose assembly and disassembly are closely linked to the cell cycle. The centriole distal appendage (DA) is essential for the early stages of ciliogenesis by anchoring the mother centriole to the cell surface. Despite the identification of over twelve proteins constituting the DA, including CEP83, CEP89, CEP164, FBF1, and SCLT1, their specific functions in ciliary dynamics are not fully understood. Here, we elucidate the precise role of DA proteins in ciliary assembly and disassembly. While Cep89 mutant cells exhibit normal ciliogenesis, the kinetics of ciliary disassembly is significantly delayed. Through siRNA-mediated knockdown of DA proteins, we identified two functional subgroups within DA proteins: CEP83, SCLT1, and CEP164, which are primarily essential for ciliary assembly and centriole docking, and CEP89 and FBF1, which specifically regulate ciliary disassembly. Notably, the depletion of CEP89 and FBF1 not only impedes ciliary disassembly but also disrupts the Aurora A kinase signaling pathway, leading to its downregulation and mislocalization at the basal body during serum-induced cell cycle re-entry. These findings suggest that DA components can be functionally categorized into two modules responsible for distinct aspects of ciliary dynamics, with broad implications for cellular signaling, homeostasis, and development.
初级纤毛是一种细胞器,其组装和拆卸与细胞周期密切相关。中心粒远端附属物(DA)通过将母中心粒锚定到细胞表面,对纤毛发生的早期阶段至关重要。尽管已经鉴定出超过十二种构成DA的蛋白质,包括CEP83、CEP89、CEP164、FBF1和SCLT1,但它们在纤毛动态中的具体功能尚未完全了解。在这里,我们阐明了DA蛋白在纤毛组装和拆卸中的精确作用。虽然Cep89突变细胞表现出正常的纤毛发生,但纤毛拆卸的动力学明显延迟。通过siRNA介导的DA蛋白敲低,我们在DA蛋白中鉴定出两个功能亚组:CEP83、SCLT1和CEP164,它们主要对纤毛组装和中心粒对接至关重要,以及CEP89和FBF1,它们专门调节纤毛拆卸。值得注意的是,CEP89和FBF1的缺失不仅阻碍纤毛拆卸,还会破坏Aurora A激酶信号通路,导致其在血清诱导的细胞周期重新进入期间在基体处下调和定位错误。这些发现表明,DA成分可以在功能上分为两个模块,负责纤毛动态的不同方面,对细胞信号传导、内环境稳定和发育具有广泛影响。