Biophysics Graduate Group, University of California Berkeley, Berkeley, CA.
Department of Molecular and Cell Biology, University of California Berkeley, Berkeley, CA.
J Cell Biol. 2022 Jul 4;221(7). doi: 10.1083/jcb.202109013. Epub 2022 May 9.
During clathrin-mediated endocytosis (CME), flat plasma membrane is remodeled to produce nanometer-scale vesicles. The mechanisms underlying this remodeling are not completely understood. The ability of clathrin to bind membranes of distinct geometries casts uncertainty on its specific role in curvature generation/stabilization. Here, we used nanopatterning to produce substrates for live-cell imaging, with U-shaped features that bend the ventral plasma membrane of a cell into shapes resembling energetically unfavorable CME intermediates. This induced membrane curvature recruits CME proteins, promoting endocytosis. Upon AP2, FCHo1/2, or clathrin knockdown, CME on flat substrates is severely diminished. However, induced membrane curvature recruits CME proteins in the absence of FCHo1/2 or clathrin and rescues CME dynamics/cargo uptake after clathrin (but not AP2 or FCHo1/2) knockdown. Induced membrane curvature enhances CME protein recruitment upon branched actin assembly inhibition under elevated membrane tension. These data establish that membrane curvature assists in CME nucleation and that the essential function of clathrin during CME is to facilitate curvature evolution, rather than scaffold protein recruitment.
在网格蛋白介导的内吞作用(CME)中,扁平的质膜被重塑以产生纳米级囊泡。这种重塑的机制尚不完全清楚。网格蛋白结合不同几何形状的膜的能力使其在曲率产生/稳定化中的具体作用存在不确定性。在这里,我们使用纳米图案化技术制作了用于活细胞成像的基底,这些基底具有 U 形特征,可以将细胞的腹质膜弯曲成类似于能量不利的 CME 中间产物的形状。这种诱导的膜曲率募集 CME 蛋白,促进内吞作用。在 AP2、FCHo1/2 或网格蛋白敲低后,在平坦的基底上 CME 严重减少。然而,在没有 FCHo1/2 或网格蛋白的情况下,诱导的膜曲率会募集 CME 蛋白,并在网格蛋白(而不是 AP2 或 FCHo1/2)敲低后恢复 CME 动力学/货物摄取。在膜张力升高时,分支肌动蛋白组装抑制下,诱导的膜曲率增强 CME 蛋白的募集。这些数据表明,膜曲率有助于 CME 的成核,并且网格蛋白在 CME 中的基本功能是促进曲率演变,而不是支架蛋白募集。