CCDC32 stabilizes clathrin-coated pits and drives their invagination.

Ziyan Yang, Changsong Yang, Zheng Huang, Peiliu Xu, Yueping Li, Lu Han, Linyuan Peng, Xiangying Wei, John Pak, Tatyana Svitkina, Sandra L Schmid, Zhiming Chen
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Abstract

Clathrin-mediated endocytosis (CME) is essential for maintaining cellular homeostasis. Previous studies have reported more than 50 CME accessory proteins; however, the mechanism driving the invagination of clathrin-coated pits (CCPs) remains elusive. We show by quantitative live cell imaging that siRNA-mediated knockdown of CCDC32, a poorly characterized endocytic accessory protein, leads to the accumulation of unstable flat clathrin assemblies. CCDC32 interacts with the alpha-appendage domain (AD) of AP2 in vitro and with full length AP2 complexes in cells. Deletion of aa78-98 in CCDC32, corresponding to a predicted alpha-helix, abrogates AP2 binding and CCDC32's early function in CME. Furthermore, clinically observed nonsense mutations in CCDC32, which result in C-terminal truncations that lack aa78-98, are linked to the development of cardio-facio-neuro-developmental syndrome (CFNDS). Overall, our data demonstrate the function of a novel endocytic accessory protein, CCDC32, in regulating CCP stabilization and invagination, critical early stages of CME.

CCDC32 可稳定凝集素包裹的凹坑,并促使其内陷。
凝集素介导的内吞作用(CME)对维持细胞的平衡至关重要。以前的研究已经报道了 50 多种 CME 辅助蛋白;然而,驱动凝集素包被坑(CCP)内陷的机制仍然难以捉摸。定量活细胞成像显示,CCDC32是一种特征不清的内细胞附属蛋白,它调节CCP的稳定,并且是CCP有效内陷所必需的。CCDC32 通过其盘卷结构域与 AP2 的 α-appendage 结构域 (AD) 相互作用,从而发挥这一功能。此外,我们还发现,临床上观察到的 CCDC32 无义突变会导致心-面-神经发育综合征(CFNDS)的发生,这种突变会通过取消 CCDC32 与 AP2 的相互作用来抑制 CME。总之,我们的数据证明了一种新型内吞附属蛋白CCDC32在CME调控中的功能和分子机制:凝集素介导的内吞作用(CME)是通过凝集素包被坑(CCPs)的启动、稳定和内陷发生的。在这项研究中,我们结合使用了定量活细胞成像、超微结构电子显微镜和生化实验,结果表明 CCDC32 是一种研究较少、功能模糊的蛋白,它是一种重要的内吞附属蛋白,可调节 CCP 的稳定和内陷。具体来说,CCDC32 是通过与 AP2 相互作用来发挥这一功能的,而 CCDC32 的盘卷结构域和 AP2 的α-附属结构域(AD)在介导 CCDC32 与 AP2 相互作用中是必不可少的。重要的是,我们证明了临床观察到的 CCDC32 功能缺失突变会丧失 AP2 相互作用的能力并抑制 CME,从而导致心脑神经发育综合征(CFNDS)的发生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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