Jeong Sangmoo, Galic Milos
Department of Electrical Engineering, Stanford University, Stanford, CA, USA.
Methods Mol Biol. 2014;1174:275-84. doi: 10.1007/978-1-4939-0944-5_19.
Vesicle endocytosis at the plasma membrane is associated with a precise temporal choreography in the recruitment of cytosolic proteins that sense, generate, or stabilize locally curved membrane regions. To dissect the role of membrane curvature sensing from other co-occurring events during the initial steps of endocytosis, we developed a method to artificially induce nanoscale deformations of the PM in living cells that is based on cone-shaped nanostructures (i.e., Nanocones). When cultured on Nanocones, cells create stable inward plasma membrane deformations to which curvature-sensing proteins are recruited. Here, we provide a detailed protocol how to use Nanocones to study recruitment during the initial steps of endocytosis in cells by fluorescence and electron microscopy.
质膜上的囊泡内吞作用与胞质蛋白的募集过程中精确的时间编排相关,这些胞质蛋白能够感知、产生或稳定局部弯曲的膜区域。为了在胞吞作用的初始步骤中剖析膜曲率感知与其他同时发生事件的作用,我们开发了一种基于锥形纳米结构(即纳米锥)在活细胞中人工诱导质膜纳米级变形的方法。当细胞在纳米锥上培养时,会产生稳定的向内质膜变形,曲率感知蛋白会被募集到这些变形处。在这里,我们提供了一份详细的实验方案,介绍如何使用纳米锥通过荧光显微镜和电子显微镜研究细胞内吞作用初始步骤中的募集情况。