Department of Plant Biotechnology and Bioinformatics, Ghent University, Ghent, Belgium.
VIB Center for Plant Systems Biology, Ghent, Belgium.
Nat Cell Biol. 2024 Mar;26(3):438-449. doi: 10.1038/s41556-024-01354-6. Epub 2024 Feb 12.
Clathrin-mediated endocytosis is an essential cellular internalization pathway involving the dynamic assembly of clathrin and accessory proteins to form membrane-bound vesicles. The evolutionarily ancient TSET-TPLATE complex (TPC) plays an essential, but ill-defined role in endocytosis in plants. Here we show that two highly disordered TPC subunits, AtEH1 and AtEH2, function as scaffolds to drive biomolecular condensation of the complex. These condensates specifically nucleate on the plasma membrane through interactions with anionic phospholipids, and facilitate the dynamic recruitment and assembly of clathrin, as well as early- and late-stage endocytic accessory proteins. Importantly, condensation promotes ordered clathrin assemblies. TPC-driven biomolecular condensation thereby facilitates dynamic protein assemblies throughout clathrin-mediated endocytosis. Furthermore, we show that a disordered region of AtEH1 controls the material properties of endocytic condensates in vivo. Alteration of these material properties disturbs the recruitment of accessory proteins, influences endocytosis dynamics and impairs plant responsiveness. Our findings reveal how collective interactions shape endocytosis.
网格蛋白介导的内吞作用是一种重要的细胞内吞途径,涉及网格蛋白和辅助蛋白的动态组装,形成膜结合囊泡。进化上古老的 TSET-TPLATE 复合物(TPC)在植物的内吞作用中发挥着重要但定义不明确的作用。在这里,我们表明两个高度无序的 TPC 亚基,AtEH1 和 AtEH2,作为支架,驱动复合物的生物分子凝聚。这些凝聚物通过与阴离子磷脂的相互作用特异性地在质膜上起始,并促进网格蛋白以及早期和晚期内吞辅助蛋白的动态募集和组装。重要的是,凝聚促进了有序的网格蛋白组装。因此,TPC 驱动的生物分子凝聚促进了整个网格蛋白介导的内吞作用中的动态蛋白组装。此外,我们表明,AtEH1 的一个无序区域在体内控制内吞凝聚物的物质特性。改变这些物质特性会干扰辅助蛋白的募集,影响内吞作用动力学并损害植物的响应能力。我们的发现揭示了集体相互作用如何塑造内吞作用。