Anticancer Agent Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), Ochang, Korea.
FEBS J. 2020 Dec;287(23):5027-5038. doi: 10.1111/febs.15579. Epub 2020 Oct 19.
The primary cilium is a nonmotile microtubule-based structure, which functions as an antenna-like cellular sensing organelle. The primary cilium is assembled from the basal body, a mother centriole-based structure, during interphase or a quiescent cell stage, and rapidly disassembles before entering mitosis in a dynamic cycle. Defects in this ciliogenesis dynamics are associated with human diseases such as ciliopathy and cancer, but the molecular mechanisms of the ciliogenesis dynamics are still largely unknown. To date, various cellular signaling pathways associated with primary cilia have been proposed, but the main signaling pathways regulating primary cilia assembly/disassembly remain enigmatic. This review describes recent findings in Wnt-induced primary cilia assembly/disassembly and potential future directions for the study of the cellular signaling related to the primary ciliogenesis dynamics.
初级纤毛是一种非运动性的微管基结构,作为一种类似天线的细胞感应细胞器发挥作用。初级纤毛由基体组装而成,基体是一种基于中心粒的结构,在间期或静止细胞阶段组装,在进入有丝分裂之前快速解体,形成一个动态循环。这种纤毛发生动力学的缺陷与人类疾病有关,如纤毛病和癌症,但纤毛发生动力学的分子机制在很大程度上仍不清楚。迄今为止,已经提出了各种与初级纤毛相关的细胞信号通路,但调节初级纤毛组装/解体的主要信号通路仍然是一个谜。本文综述了 Wnt 诱导的初级纤毛组装/解体的最新发现,并对与初级纤毛发生动力学相关的细胞信号研究的未来方向进行了探讨。