Physics Department, Indian Institute of Technology-Bombay, Powai, Mumbai, 400076, India.
Phys Rev E. 2016 Dec;94(6-1):062404. doi: 10.1103/PhysRevE.94.062404. Epub 2016 Dec 16.
Endocytosis is among the most common transport mechanisms which cells employ to receive macromolecules, the so-called cargo, from its extra cellular environment. Clathrin-mediated endocytosis (CME), in particular, involves the cytoplasmic protein clathrin which induces formation and internalization of clathrin-coated membrane buds that contain extra-cellular cargo. Decades of experimental work have established that the morphology of the clathrin coat evolves with time and induces its curvature on the membrane bud; but energetics of the process remain unclear. Recent experiments by Avinoam et al. [Science 348, 1369 (2015)SCIEAS0036-807510.1126/science.aaa9555] reported that the area of the clathrin coat remains fixed while its curvature increases with time and also the clathrin molecules in the coat turn over rapidly. We show that these observations challenge existing models of coated membrane bud formation. We analyze their data to bring out certain features consistent with the underlying lattice structure of the coat. We hypothesize that membrane curvature inhibits clathrin deposition and propose a kinetic model that explains the area distribution of clathrin coats. We also show that their data on shape evolution of the coated membrane bud can be approximately understood from simple geometric considerations. However, the energetics of the coat formation which controls the kinetics of the process remains a puzzle.
内吞作用是细胞从细胞外环境摄取大分子(所谓的货物)的最常见的运输机制之一。特别是网格蛋白介导的内吞作用(CME)涉及细胞质蛋白网格蛋白,它诱导网格蛋白包被膜泡的形成和内化,其中包含细胞外货物。几十年来的实验工作已经确定,网格蛋白包被的形态随时间演变,并在膜泡上诱导其曲率;但该过程的能量学仍然不清楚。最近,Avinoam 等人的实验[Science 348, 1369 (2015)SCIEAS0036-807510.1126/science.aaa9555]报道说,网格蛋白包被的面积保持固定,而其曲率随时间增加,并且包被中的网格蛋白分子迅速翻转。我们表明,这些观察结果挑战了包被膜泡形成的现有模型。我们分析了他们的数据,以揭示出与包被的潜在晶格结构一致的某些特征。我们假设膜曲率抑制网格蛋白沉积,并提出了一个解释网格蛋白包被面积分布的动力学模型。我们还表明,他们关于包被膜泡形状演变的数据可以从简单的几何考虑来近似理解。然而,控制该过程动力学的包被形成的能量学仍然是一个谜。