Čajánek Lukáš, Smite Sindija, Ivashchenko Olha, Huranova Martina
Laboratory of Cilia and Centrosome Biology, Department of Histology and Embryology, Faculty of Medicine, Masaryk University, Kamenice 3, Brno, 62500, Czech Republic.
Section of Animal Physiology and Immunology, Department of Experimental Biology, Faculty of Science, Masaryk University, Kamenice 5, Brno, 62500, Czech Republic.
Cell Biosci. 2025 Jun 7;15(1):81. doi: 10.1186/s13578-025-01403-z.
Cilia are versatile, microtubule-based organelles that facilitate cellular signaling, motility, and environmental sensing in eukaryotic cells. These dynamic structures act as hubs for key developmental signaling pathways, while their assembly and disassembly are intricately regulated along cell cycle transitions. Recent findings show that factors regulating ciliogenesis and cilia dynamics often integrate their roles across other cellular processes, including cell cycle regulation, cytoskeletal organization, and intracellular trafficking, ensuring multilevel crosstalk of mechanisms controlling organogenesis. Disruptions in these shared regulators lead to broad defects associated with both ciliopathies and cancer. This review explores the crosstalk of regulatory mechanisms governing cilia assembly, disassembly, and maintenance during ciliary signaling and the cell cycle, along with the broader implications for development, tissue homeostasis, and disease.
纤毛是多功能的、基于微管的细胞器,在真核细胞中促进细胞信号传导、运动和环境感知。这些动态结构充当关键发育信号通路的枢纽,而它们的组装和拆卸在细胞周期转换过程中受到复杂的调控。最近的研究结果表明,调节纤毛发生和纤毛动态变化的因子通常在其他细胞过程中整合其作用,包括细胞周期调控、细胞骨架组织和细胞内运输,从而确保控制器官发生的机制进行多层次的相互作用。这些共享调节因子的破坏会导致与纤毛病和癌症相关的广泛缺陷。本综述探讨了在纤毛信号传导和细胞周期过程中,控制纤毛组装、拆卸和维持的调节机制之间的相互作用,以及对发育、组织稳态和疾病的更广泛影响。