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不仅仅是一道屏障:利用物理模型将膜的形状与细胞功能联系起来。

More than just a barrier: using physical models to couple membrane shape to cell function.

机构信息

Department of Bionanoscience, Kavli Institute of Nanoscience, Delft University of Technology, Delft, The Netherlands.

出版信息

Soft Matter. 2021 Apr 7;17(13):3533-3549. doi: 10.1039/d0sm01758b. Epub 2021 Jan 27.

Abstract

The correct execution of many cellular processes, such as division and motility, requires the cell to adopt a specific shape. Physically, these shapes are determined by the interplay of the plasma membrane and internal cellular driving factors. While the plasma membrane defines the boundary of the cell, processes inside the cell can result in the generation of forces that deform the membrane. These processes include protein binding, the assembly of protein superstructures, and the growth and contraction of cytoskeletal networks. Due to the complexity of the cell, relating observed membrane deformations back to internal processes is a challenging problem. Here, we review cell shape changes in endocytosis, cell adhesion, cell migration and cell division and discuss how by modeling membrane deformations we can investigate the inner working principles of the cell.

摘要

许多细胞过程的正确执行,如分裂和运动,都需要细胞采用特定的形状。从物理上讲,这些形状是由质膜和内部细胞驱动因素的相互作用决定的。虽然质膜定义了细胞的边界,但细胞内部的过程会导致膜变形的力的产生。这些过程包括蛋白质结合、蛋白质超结构的组装以及细胞骨架网络的生长和收缩。由于细胞的复杂性,将观察到的膜变形与内部过程联系起来是一个具有挑战性的问题。在这里,我们回顾了胞吞、细胞黏附、细胞迁移和细胞分裂过程中的细胞形状变化,并讨论了如何通过模拟膜变形来研究细胞的内部工作原理。

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