论文标题

具有曲率弹性的流体膜中的转运现象

Transport Phenomena in Fluid Films with Curvature Elasticity

论文作者

Mahapatra, Arijit, Saintillan, David, Rangamani, Padmini

论文摘要

细胞膜是弹性脂质双层,其中包含多种蛋白质,包括离子通道,受体和脚手架蛋白。已知这些蛋白质会在膜平面扩散并影响膜的弯曲。实验表明,膜平面中的脂质流与蛋白质的扩散紧密结合。因此,需要一个综合框架来解释这些过程之间的相互作用。在这里,我们提出了脂质的平面内粘性流,跨膜蛋白的扩散和脂质双层弹性变形的理论。对膜中的蛋白质进行建模,使其通过诱导自发曲率影响膜弯曲。我们使用helfrich样曲率弹性能量密度功能来制定膜的自由能,以说明蛋白质的化学势能。我们得出了该系统的保护定律和运动方程。最后,我们介绍了维数分析和数值模拟的结果,并证明了耦合传输过程在控制膜弯曲和蛋白质扩散动力学方面的影响。

Cellular membranes are elastic lipid bilayers that contain a variety of proteins, including ion channels, receptors, and scaffolding proteins. These proteins are known to diffuse in the plane of the membrane and to influence the bending of the membrane. Experiments have shown that lipid flow in the plane of the membrane is closely coupled with the diffusion of proteins. Thus, there is a need for a comprehensive framework that accounts for the interplay between these processes. Here, we present a theory for the coupled in-plane viscous flow of lipids, diffusion of transmembrane proteins, and elastic deformation of lipid bilayers. The proteins in the membrane are modeled such that they influence membrane bending by inducing a spontaneous curvature. We formulate the free energy of the membrane with a Helfrich-like curvature elastic energy density function modified to account for the chemical potential energy of proteins. We derive the conservation laws and equations of motion for this system. Finally, we present results from dimensional analysis and numerical simulations and demonstrate the effect of coupled transport processes in governing the dynamics of membrane bending and protein diffusion.

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