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Simulating the role of microtubules in depolymerization-driven transport: a Monte Carlo approach.

机译:模拟微管在解聚驱动的运输中的作用:蒙特卡洛方法。

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摘要

In this paper we present a model that simulates the role of microtubules in depolymerization-driven transport. The model simulates a system that consists of a 13-protofilament microtubule with "five-start" helical structure and a motor protein-coated bead that moves along one of the protofilaments of the microtubule, as in in vitro experiments. The microtubule is simulated using the lateral cap model, with substantial generalizations. For the new terminal configurations in the presence of the bead, rate constants for association and dissociation events of tubulin molecules are calculated by exploring the geometric similarities between different patterns of terminal configurations and by decomposing complex patterns into simpler patterns whose corresponding rate constants are known. In comparison with a previous model, in which simplifications are made about the structure of the microtubule and in which the microtubule can only depolymerize, the detailed structure of the microtubule is taken into account in the present model. Furthermore, the microtubule can be either polymerizing or depolymerizing. Force-velocity curves are obtained for both zero and non-zero tubulin guanosine 5'-triphosphate (GTP) concentrations. By analyzing the trajectory of the bead under different parameters, the condition for "run and pause" is analyzed, and the time scale of "run" and "pause" is found to be different for different motor proteins. We also suggest experiments that can be used to examine the results predicted by the model.
机译:在本文中,我们提出了一个模型,该模型模拟微管在解聚驱动的运输中的作用。该模型模拟了一个系统,该系统由具有“五个起点”螺旋结构的13个原丝微管和一个沿着该微管原丝之一移动的运动蛋白包被的微珠组成,如体外实验所示。使用侧向帽模型模拟微管,并进行大量概括。对于存在珠子的新末端构型,微管蛋白分子缔合和解离事件的速率常数是通过探索末端构型的不同模式之间的几何相似性,以及将复杂的模式分解为已知相应速率常数的简单模式来计算的。与其中简化了微管的结构并且其中微管只能解聚的先前模型相比,在本模型中考虑了微管的详细结构。此外,微管可以聚合或解聚。对于零和非零的微管蛋白鸟苷5'-三磷酸(GTP)浓度均获得了力-速度曲线。通过分析不同参数下磁珠的轨迹,分析了“运行和暂停”的条件,发现“运动”和“暂停”的时间尺度对于不同的运动蛋白是不同的。我们还建议可用于检查模型预测结果的实验​​。

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