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红细胞膜的混合模型:与脂质双层耦合的蛋白质网络单一单元。

A hybrid model for erythrocyte membrane: a single unit of protein network coupled with lipid bilayer.

作者信息

Zhu Qiang, Vera Carlos, Asaro Robert J, Sche Paul, Sung L Amy

机构信息

Department of Structural Engineering, University of California, San Diego, La Jolla, California, USA.

出版信息

Biophys J. 2007 Jul 15;93(2):386-400. doi: 10.1529/biophysj.106.094383. Epub 2007 Apr 20.

Abstract

To investigate the nanomechanics of the erythrocyte membrane we developed a hybrid model that couples the actin-spectrin network to the lipid bilayer. This model features a Fourier space Brownian dynamics model of the bilayer, a Brownian dynamics model of the actin protofilament, and a modified wormlike-chain model of the spectrin (including a cable-dynamics model to predict the oscillation in tension). This model enables us to predict the nanomechanics of single or multiple units of the protein network, the lipid bilayer, and the effect of their interactions. The present work is focused on the attitude of the actin protofilament at the equilibrium states coupled with the elevations of the lipid bilayer through their primary linkage at the suspension complex in deformations. Two different actin-spectrin junctions are considered at the junctional complex. With a point-attachment junction, large pitch angles and bifurcation of yaw angles are predicted. Thermal fluctuations at bifurcation may lead to mode-switching, which may affect the network and the physiological performance of the membrane. In contrast, with a wrap-around junction, pitch angles remain small, and the occurrence of bifurcation is greatly reduced. These simulations suggest the importance of three-dimensional molecular junctions and the lipid bilayer/protein network coupling on cell membrane mechanics.

摘要

为了研究红细胞膜的纳米力学,我们开发了一种将肌动蛋白-血影蛋白网络与脂质双层耦合的混合模型。该模型具有双层的傅里叶空间布朗动力学模型、肌动蛋白原纤维的布朗动力学模型以及血影蛋白的改进蠕虫状链模型(包括用于预测张力振荡的缆线动力学模型)。该模型使我们能够预测蛋白质网络单个或多个单元、脂质双层的纳米力学及其相互作用的影响。目前的工作重点是在变形过程中,通过它们在悬浮复合物中的主要连接,肌动蛋白原纤维在平衡状态下的姿态以及脂质双层的起伏。在连接复合物处考虑了两种不同的肌动蛋白-血影蛋白连接。对于点附着连接,预测会有大的螺距角和偏航角的分叉。分叉处的热涨落可能导致模式切换,这可能会影响网络和膜的生理性能。相比之下,对于环绕连接,螺距角保持较小,并且分叉的发生率大大降低。这些模拟表明了三维分子连接以及脂质双层/蛋白质网络耦合对细胞膜力学的重要性。

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