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Cell Membrane Tethers Generate Mechanical Force in Response to Electrical Stimulation

机译:细胞膜系链响应电刺激产生机械力

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摘要

Living cells maintain a huge transmembrane electric field across their membranes. This electric field exerts a force on the membrane because the membrane surfaces are highly charged. We have measured electromechanical force generation by cell membranes using optically trapped beads to detach the plasma membrane from the cytoskeleton and form long thin cylinders (tethers). Hyperpolarizing potentials increased and depolarizing potentials decreased the force required to pull a tether. The membrane tether force in response to sinusoidal voltage signals was a function of holding potential, tether diameter, and tether length. Membrane electromechanical force production can occur at speeds exceeding those of ATP-based protein motors. By harnessing the energy in the transmembrane electric field, cell membranes may contribute to processes as diverse as outer hair cell electromotility, ion channel gating, and transport.
机译:活细胞在其膜上维持巨大的跨膜电场。该电场在膜片上施加力,因为膜片表面带高电。我们已经测量了由细胞膜产生的机电力,使用光捕获的珠子将质膜与细胞骨架分离并形成细长的圆柱体(系链)。超极化电势增加而去极化电势降低拉系绳所需的力。响应于正弦电压信号的膜绳力是保持电位,绳直径和绳长度的函数。膜电动势的产生速度可能超过基于ATP的蛋白马达的速度。通过利用跨膜电场中的能量,细胞膜可能参与多种过程,例如外部毛细胞电动力,离子通道门控和转运。

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