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首页> 外文期刊>Molecules >Force Dependence of Velocity and Run Length of Kinesin-1, Kinesin-2 and Kinesin-5 Family Molecular Motors
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Force Dependence of Velocity and Run Length of Kinesin-1, Kinesin-2 and Kinesin-5 Family Molecular Motors

机译:动力依赖速度和运行长度的Kinesin-1,Kinesin-2和Kinesin-5家族分子电机

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摘要

Kinesin-1, kinesin-2 and kinesin-5 are three families of a superfamily of motor proteins; which can walk processively on microtubule filaments by hydrolyzing ATP. It was experimentally shown that while the three kinesin dimers show similar feature on the force dependence of velocity, they show rather different features on the force dependence of run length. However, why the three families of kinesins show these rather different features is unclear. Here, we computationally studied the movement dynamics of the three dimers based on our proposed model. The simulated results reproduce well the available experimental data on the force dependence of velocity and run length. Moreover, the simulated results on the velocity and run length for the three dimers with altered neck linker lengths are also in quantitative agreement with the available experimental data. The studies indicate that the three families of kinesins show much similar movement mechanism and the rather different features on the force dependence of run length arise mainly from the difference in rate constants of the ATPase activity and neck linker docking. Additionally, the asymmetric (limping) movement dynamics of the three families of homodimers with and without altered neck linker lengths are studied, providing predicted results.
机译:Kinesin-1,Kinesin-2和Kinesin-5是三种超家族的运动蛋白;它可以通过水解ATP处理微管丝处理。实验表明,虽然三个kinesin二聚体显示出类似的力量依赖性的特征,但它们在运行长度的力依赖性上显示出相当不同的特征。但是,为什么三个家庭的kinesins表明这些相当不同的特征尚不清楚。在这里,我们基于所提出的模型计算到三维二聚体的运动动态。模拟结果再现了对速度和运行长度的力依赖性的可用实验数据。此外,对于具有改变的颈部连接器长度的三个二聚体的速度和运行长度的模拟结果也与可用的实验数据进行定量协议。这些研究表明,三个kinesins的三个家庭显示出许多类似的运动机制,并且运行长度的力依赖性的相当不同的特征主要来自ATP酶活性和颈部接头对接的速率常数差异。另外,研究了具有和不改变颈部接头长度的同型同源体的非对称(跛行)运动动态,提供了预测结果。

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