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Membrane Undulations Driven by Force Fluctuations of Active Proteins

机译:活性蛋白力波动驱动的膜起伏

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摘要

We analyze the height undulations of a membrane due to fluctuations in the force generated by membrane-bound proteins that induce normal motion or bending. We compare our results to the results of experiments on red blood cells and vesicles with incorporated active proton pumps. We treat these proteins as having an intrinsic time scale for the force generation or conformational change, leading to nonthermal membrane fluctuations. We find that the active fluctuations are inversely proportional to the viscosity of the surrounding fluid. This highlights some universal features of active membrane undulations.
机译:我们分析了由于膜结合蛋白诱导正常运动或弯曲而产生的力波动所引起的膜高度波动。我们将我们的结果与结合了活性质子泵的红细胞和囊泡的实验结果进行了比较。我们将这些蛋白质视为具有内在时间尺度的力产生或构象变化,从而导致非热膜波动。我们发现主动波动与周围流体的粘度成反比。这突出了主动膜起伏的一些普遍特征。

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