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Regulation of Hip1r by epsin controls the temporal and spatial coupling of actin filaments to clathrin-coated pits

机译:Epin对Hip1r的调控可控制肌动蛋白丝与网格蛋白包被的凹陷的时间和空间耦合

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摘要

Recently, it has become clear that the actin cytoskeleton is involved in clathrin-mediated endocytosis. During clathrin-mediated endocytosis, clathrin triskelions and adaptor proteins assemble into lattices, forming clathrin-coated pits. These coated pits invaginate and detach from the membrane, a process that requires dynamic actin polymerization. We found an unexpected role for the clathrin adaptor epsin in regulating actin dynamics during this late stage of coated vesicle formation. In Dictyostelium cells, epsin is required for both the membrane recruitment and phosphorylation of the actin- and clathrin-binding protein Hip1r. Epsin-null and Hip1r-null cells exhibit deficiencies in the timing and organization of actin filaments at clathrin-coated pits. Consequently, clathrin structures persist on the membranes of epsin and Hip1r mutants and the internalization of clathrin structures is delayed. We conclude that epsin works with Hip1r to regulate actin dynamics by controlling the spatial and temporal coupling of actin filaments to clathrin-coated pits. Specific residues in the ENTH domain of epsin that are required for the membrane recruitment and phosphorylation of Hip1r are also required for normal actin and clathrin dynamics at the plasma membrane. We propose that epsin promotes the membrane recruitment and phosphorylation of Hip1r, which in turn regulates actin polymerization at clathrin-coated pits.
机译:最近,已经清楚肌动蛋白的细胞骨架参与网格蛋白介导的内吞作用。在网格蛋白介导的内吞作用过程中,网格蛋白triskelions和衔接蛋白组装成格子,形成网格蛋白包被的凹坑。这些包被的凹坑陷于膜中并从膜上脱离,该过程需要动态肌动蛋白聚合。我们发现网格蛋白衔接蛋白epsin在包被的囊泡形成的这一晚期阶段在调节肌动蛋白动力学中具有出乎意料的作用。在双歧杆菌细胞中,肌动蛋白和网格蛋白结合蛋白Hip1r的膜募集和磷酸化都需要epsin。 Epsin null和Hip1r null细胞在网格蛋白包被的凹坑中肌动蛋白丝的时间和组织方面表现出缺陷。因此,网格蛋白结构在epsin和Hip1r突变体的膜上持续存在,并且网格蛋白结构的内部化被延迟。我们得出的结论是,epsin与Hip1r协同作用,通过控制肌动蛋白丝与网格蛋白包被的凹坑的时空耦合来调节肌动蛋白动力学。膜募集和Hip1r磷酸化所需的epsin的ENTH域中的特定残基也需要质膜上的正常肌动蛋白和网格蛋白动力学。我们建议,epsin促进Hip1r的膜募集和磷酸化,进而调节网格蛋白包衣的小窝的肌动蛋白聚合。

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