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Regulation of Protein Mobility via Thermal Membrane Undulations

机译:通过热膜波动调节蛋白质的流动性

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摘要

The in-plane diffusivelike motion of membrane bound proteins on the surface of cells is considered. We suggest, on the basis of theoretical arguments and simulation, that thermally excited undulations of the lipid bilayer may serve as a mechanism for proteins to hop between adjacent regions on the cell surface separated by barriers composed of internal cellular structure (e.g., the cytoskeleton). We specifically investigate the mobility of band 3 dimer on the surface of red blood cells where the spectrin cytoskeletal meshwork defines a series of “corrals” on the cell surface known to hinder protein motion. Previous models of this system have postulated that the cytoskeleton must deform to allow passage of membrane bound proteins out of these corral regions and have ignored fluctuations of the bilayer. Our model provides a complementary mechanism and we posit that the mobility of real proteins in real cells is likely the result of several mechanisms acting in parallel.
机译:考虑了细胞表面膜结合蛋白的面内扩散样运动。我们建议,基于理论论证和模拟,脂质双层的热激发起伏可能是蛋白质在细胞表面上相邻区域之间跳动的一种机制,该相邻区域被由内部细胞结构(例如,细胞骨架)组成的屏障隔开。我们专门研究了血红蛋白细胞骨架网状结构在血红细胞表面上的带3二聚体的迁移性,该结构在细胞表面上定义了一系列阻碍蛋白质运动的“围栏”。该系统以前的模型假定细胞骨架必须变形以允许膜结合蛋白通过这些皮质区域,并且忽略了双层的波动。我们的模型提供了一种互补的机制,并且我们认为真实蛋白质在真实细胞中的迁移可能是多种机制并行作用的结果。

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