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Thermal fluctuations biased for directional motion in molecular motors

机译:为分子电动机的方向运动而偏向热波动

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Recently developed single molecule measurements have demonstrated that the mechanisms for numerous protein functions involve thermal fluctuation, or Brownian motion. Protein interactions bias the random thermal noise in a manner such that the protein can perform its given functions. This phenomenon has been observed in molecular motor unidirectional movement where Brownian motion is used to preferentially bind the motor heads in one direction causing directional motility. This is analogous to that used by proteins in which spontaneous structural fluctuations are used to switch function. Seeing that two very different systems implement similar mechanisms suggests there exists a general scheme applied by diverse proteins that exploits thermal fluctuations in order to achieve their respective functions.
机译:最近开发的单分子测量结果表明,许多蛋白质功能的机制都涉及热波动或布朗运动。蛋白质相互作用以某种方式使随机热噪声偏向,使得蛋白质可以执行其给定的功能。在分子电动机单向运动中已观察到此现象,其中布朗运动用于优先沿一个方向束缚电动机头,从而导致方向运动。这类似于蛋白质所使用的蛋白质,其中蛋白质使用自发的结构波动来切换功能。看到两个非常不同的系统实现了相似的机制,这表明存在一种由多种蛋白质应用的通用方案,这些蛋白质利用热波动来实现其各自的功能。

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