Graduate School of Biostudies, Kyoto University, Kyoto, 606-8501, Japan.
Nat Commun. 2023 Aug 1;14(1):4602. doi: 10.1038/s41467-023-40390-y.
Clathrin-mediated endocytosis is pivotal to signal transduction pathways between the extracellular environment and the intracellular space. Evidence from live-cell imaging and super-resolution microscopy of mammalian cells suggests an asymmetric distribution of actin fibres near the clathrin-coated pit, which induces asymmetric pit-closing rather than radial constriction. However, detailed molecular mechanisms of this 'asymmetricity' remain elusive. Herein, we used high-speed atomic force microscopy to demonstrate that CIP4, a multi-domain protein with a classic F-BAR domain and intrinsically disordered regions, is necessary for asymmetric pit-closing. Strong self-assembly of CIP4 via intrinsically disordered regions, together with stereospecific interactions with the curved membrane and actin-regulating proteins, generates a small actin-rich environment near the pit, which deforms the membrane and closes the pit. Our results provide mechanistic insights into how disordered and structured domain collaboration promotes spatio-temporal actin polymerisation near the plasma membrane.
网格蛋白介导的内吞作用对于细胞外环境与细胞内空间之间的信号转导途径至关重要。来自哺乳动物细胞的活细胞成像和超分辨率显微镜的证据表明,网格蛋白包被陷窝附近的肌动蛋白纤维呈不对称分布,这诱导了不对称的陷窝闭合,而不是径向收缩。然而,这种“不对称性”的详细分子机制仍不清楚。在此,我们使用高速原子力显微镜证明,具有经典 F-BAR 结构域和无规卷曲区域的多结构域蛋白 CIP4 对于不对称的陷窝闭合是必需的。CIP4 通过无规卷曲区域的强烈自组装,以及与弯曲膜和肌动蛋白调节蛋白的立体特异性相互作用,在陷窝附近产生一个富含肌动蛋白的小环境,该环境使膜变形并关闭陷窝。我们的结果提供了机制上的见解,即无序和结构域的协同作用如何促进质膜附近的时空肌动蛋白聚合。