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Chemomechanical coupling of the forward and backward steps of single kinesin molecules.

机译:单驱动蛋白分子前进和后退步骤的化学机械耦合。

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The molecular motor kinesin travels processively along a microtubule in a stepwise manner. Here we have studied the chemomechanical coupling of the hydrolysis of ATP to the mechanical work of kinesin by analysing the individual stepwise movements according to the directionality of the movements. Kinesin molecules move primarily in the forward direction and only occasionally in the backward direction. The hydrolysis of a single ATP molecule is coupled to either the forward or the backward movement. This bidirectional movement is well described by a model of Brownian motion assuming an asymmetric potential of activation energy. Thus, the stepwise movement along the microtubule is most probably due to Brownian motion that is biased towards the forward direction by chemical energy stored in ATP molecules.
机译:分子动力驱动蛋白逐步地沿着微管前进。在这里,我们根据运动的方向性,通过分析各个逐步运动来研究ATP水解与驱动蛋白的机械作用之间的化学机械耦合。驱动蛋白分子主要沿向前方向移动,而仅偶尔沿向后方向移动。单个ATP分子的水解与向前或向后运动相关。假设激活能量不对称,这种双向运动可以通过布朗运动模型很好地描述。因此,沿着微管的逐步运动最可能是由于布朗运动,布朗运动被存储在ATP分子中的化学能偏向正向。

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