Sackmann Erich, Tanaka Motomu
Physics Department E22/E27, Technical University of Munich, James-Franck-Strasse, 85747 Garching, Germany.
Physical Chemistry of Biosystems, Institute of Physical Chemistry, Heidelberg University, 69120 Heidelberg, Germany.
Biophys Rev. 2021 Jan 11;13(1):123-138. doi: 10.1007/s12551-021-00781-1. eCollection 2021 Feb.
Cell migration plays vital roles in many biologically relevant processes such as tissue morphogenesis and cancer metastasis, and it has fascinated biophysicists over the past several decades. However, despite an increasing number of studies highlighting the orchestration of proteins involved in different signaling pathways, the functional roles of lipid membranes have been essentially overlooked. Lipid membranes are generally considered to be a functionless two-dimensional matrix of proteins, although many proteins regulating cell migration gain functions only after they are recruited to the membrane surface and self-organize their functional domains. In this review, we summarize how the logistical recruitment and release of proteins to and from lipid membranes coordinates complex spatiotemporal molecular processes. As predicted from the classical framework of the Smoluchowski equation of diffusion, lipid/protein membranes serve as a 2D reaction hub that contributes to the effective and robust regulation of polarization and migration of cells involving several competing pathways.
细胞迁移在许多生物学相关过程中发挥着至关重要的作用,如组织形态发生和癌症转移,在过去几十年里一直吸引着生物物理学家。然而,尽管越来越多的研究强调了参与不同信号通路的蛋白质的协同作用,但脂膜的功能作用基本上被忽视了。脂膜通常被认为是蛋白质的无功能二维基质,尽管许多调节细胞迁移的蛋白质只有在被招募到膜表面并自组织其功能域后才获得功能。在这篇综述中,我们总结了蛋白质在脂膜上的后勤招募和释放如何协调复杂的时空分子过程。正如从扩散的斯莫卢霍夫斯基方程的经典框架所预测的那样,脂质/蛋白质膜作为一个二维反应中心,有助于对涉及多个竞争通路的细胞极化和迁移进行有效而稳健的调节。