Shandong Provincial Key Laboratory of Animal Resistance Biology, Institute of Biomedical Sciences, College of Life Sciences, Collaborative Innovation Center of Cell Biology in Universities of Shandong, Shandong Normal University, Jinan, China.
Cheeloo College of Medicine, Shandong University, Jinan, China.
EMBO Rep. 2022 May 4;23(5):e54090. doi: 10.15252/embr.202154090. Epub 2022 Mar 18.
Despite the importance of cilia in cell signaling and motility, the molecular mechanisms regulating cilium formation remain incompletely understood. Herein, we characterize enkurin domain-containing protein 1 (ENKD1) as a novel centrosomal protein that mediates the removal of centriolar coiled-coil protein 110 (CP110) from the mother centriole to promote ciliogenesis. We show that Enkd1 knockout mice possess ciliogenesis defects in multiple organs. Super-resolution microscopy reveals that ENKD1 is a stable component of the centrosome throughout the ciliogenesis process. Simultaneous knockdown of ENKD1 and CP110 significantly reverses the ciliogenesis defects induced by ENKD1 depletion. Protein interaction analysis shows that ENKD1 competes with centrosomal protein 97 (CEP97) in binding to CP110. Depletion of ENKD1 enhances the CP110-CEP97 interaction and detains CP110 at the mother centriole. These findings thus identify ENKD1 as a centrosomal protein and uncover a novel mechanism controlling CP110 removal from the mother centriole for the initiation of ciliogenesis.
尽管纤毛在细胞信号转导和运动中很重要,但调节纤毛形成的分子机制仍不完全清楚。本文中,我们将卷曲酶结构域蛋白 1(ENKD1)鉴定为一种新型中心体蛋白,它介导中心体蛋白 110(CP110)从母中心粒上的去除,从而促进纤毛发生。我们发现 Enkd1 敲除小鼠在多个器官中存在纤毛发生缺陷。超分辨率显微镜显示,ENKD1 是整个纤毛发生过程中中心体的稳定组成部分。同时敲低 ENKD1 和 CP110 可显著逆转由 ENKD1 耗竭引起的纤毛发生缺陷。蛋白相互作用分析表明,ENKD1 与中心体蛋白 97(CEP97)竞争结合 CP110。ENKD1 的耗竭增强了 CP110-CEP97 的相互作用,并将 CP110 滞留在母中心粒上。这些发现确定了 ENKD1 是一种中心体蛋白,并揭示了一种控制 CP110 从母中心粒上去除以启动纤毛发生的新机制。