Donner Laboratory, Life Science Division, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, Berkeley, CA 94720, USA.
Curr Biol. 2013 Feb 18;23(4):339-44. doi: 10.1016/j.cub.2013.01.029. Epub 2013 Jan 31.
Ciliary compartmentalization plays pivotal roles in ciliogenesis and in various signaling pathways. Here we describe a structure at the ciliary base that appears to have all the features required for compartmentalization and which we thus call the "ciliary partitioning system" (CPS). This complex consists of the terminal plate, which serves as a cytosolic "ciliary pore complex" (CPC), and a membrane region well suited to serve as a diffusion barrier. The CPC is a plate-shaped structure containing nine pores through which the microtubule doublets of the basal body pass. Each pore expands from the doublet B-tubule into an opening well suited for the passage of intraflagellar transport particles. The membrane diffusion barrier encompasses an extended region of detergent-resistant periciliary membrane (ciliary pocket) and a ring complex that connects the CPC to the membrane. Proteomics analysis shows involvement of the ciliary pocket in vesicle trafficking, suggesting that this region plays an active role in membrane transport. The CPC and the ring together form a complete partition defining the ciliary boundary.
纤毛隔室化在纤毛发生和各种信号通路中起着关键作用。在这里,我们描述了一种位于纤毛基部的结构,它似乎具有隔室化所需的所有特征,因此我们称之为“纤毛分隔系统”(CPS)。这个复合物由充当细胞质“纤毛孔复合物”(CPC)的终板和一个非常适合作为扩散屏障的膜区域组成。CPC 是一个板状结构,包含九个孔,基体外周微管双联体通过这些孔穿过。每个孔从 B-微管扩展成一个适合中间纤维运输颗粒通过的开口。膜扩散屏障包含一个扩展的去污剂抗性纤毛膜(纤毛口袋)区域和一个将 CPC 连接到膜的环复合物。蛋白质组学分析表明纤毛口袋参与囊泡运输,表明该区域在膜运输中发挥积极作用。CPC 和环一起形成一个完整的分隔,定义了纤毛边界。