连杆颈对Kinesin电机步进过程的影响

P. Xie
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引用次数: 0

摘要

Kinesin运动蛋白由两个催化结构域组成,通过两个柔性颈连接体(NL)由一个长螺旋柄连接在一起,可以通过水解三磷酸腺苷(ATP)分子在微管上向正端行进。为了理解NL在过程步进中的作用,本文从理论上研究驱动蛋白马达的动力学,通过考虑有助于NL在驱动蛋白-1中对接的N末端覆盖链的突变或缺失、NL在驱动蛋白-1中的延伸、,驱动蛋白-2的NL与驱动蛋白-1的NL的交换,朝向MT负端移动的Ncd的柄和颈与驱动素-1的催化结构域的连接,驱动蛋白1的催化结构区与Ncd的催化结构畴的替换,等等。理论结果对关于这些突变对运动动力学影响的各种可用实验结果给出了一致和定量的解释,此外,还提供了预测结果。此外,还解释了驱动蛋白-6 MKLP2在没有NL对接的情况下的过程运动性。还解释了关于NL突变对双向驱动蛋白-5 Cin8动力学影响的可用实验数据。这些研究对驱动蛋白运动的步进机制具有重要意义。
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Effect of the Neck Linker on Processive Stepping of Kinesin Motor
Kinesin motor protein, which is composed of two catalytic domains connected together by a long coiled-coil stalk via two flexible neck linkers (NLs), can step processively on a microtubule towards the plus end by hydrolyzing adenosine triphosphate (ATP) molecules. To understand what the role is that the NL plays in the processive stepping, the dynamics of the kinesin motor are studied theoretically here by considering the mutation or deletion of an N-terminal cover strand that contributes to the docking of the NL in kinesin-1, the extension of the NL in kinesin-1, the mutation of the NL in kinesin-1, the swapping of the NL of kinesin-2 with that of kinesin-1, the joining of the stalk and neck of Ncd that moves towards the minus end of MT to the catalytic domain of kinesin-1, the replacement of catalytic domain of kinesin-1 with that of Ncd, and so on. The theoretical results give a consistent and quantitative explanation of various available experimental results about the effects of these mutations on motor dynamics and, moreover, provide predicted results. Additionally, the processive motility of kinesin-6 MKLP2 without NL docking is also explained. The available experimental data about the effect of NL mutations on the dynamics of the bi-directional kinesin-5 Cin8 are also explained. The studies are critically implicative to the mechanism of the stepping of the kinesin motor.
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