纤毛形成
纤毛
细胞生物学
高尔基体
细胞内
生物
基底
小泡
化学
分泌途径
脂质双层融合
超微结构
胞吐
微管
布雷菲尔德A
肌动蛋白
微泡
舱室(船)
细胞膜
囊泡融合
内吞作用
内吞循环
高尔基膜
顶膜
细胞
细胞骨架
细胞器
电穿孔
调节器
作者
Kerstin Schmidt,Korbinian Buerger,Olga Maier,Anita Zügner,Larissa Osten,Patrick Hofstetter,Helga Othmen,Yulia Zaytseva,Anita Hecht,Clarissa Read,Reinhard Rachel,Ralph Witzgall
标识
DOI:10.1038/s41467-026-76992-5
摘要
Abstract The intracellular cilia assembly pathway is a complex, multistep process that requires the continuous and coordinated incorporation of membrane material. However, how membrane remodeling occurs during early ciliogenesis is not yet understood. Moreover, the identity of the organelle(s) that supply membrane material for the nascent cilium has yet to be determined. Here, we extend the current model of primary cilia formation by showing that randomly attached distal appendage vesicles and tubules fuse laterally to generate a doughnut-shaped membrane structure. Centripetal fusion events follow to close the central hole. Our data demonstrate that both the Golgi apparatus and endocytotic pathways independently contribute to ciliogenesis. We identify the endocytotic protein GRAF1 as being essential during the early stages of ciliogenesis and for the delivery of plasma membrane-derived material to the developing ciliary membrane. Our three-dimensional ultrastructural analysis uncovers previously unrecognized intermediate stages in the intracellular cilia assembly pathway with GRAF1 as a regulator of ciliogenesis.
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