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首页> 外文期刊>Journal of computational science >Exact stochastic simulations of intra-cellular transport by mechanically coupled molecular motors
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Exact stochastic simulations of intra-cellular transport by mechanically coupled molecular motors

机译:机械耦合分子马达对细胞内运输的精确随机模拟

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摘要

Numerous processes in live cells depend on active, motor-driven transport of cargo and organelles along the filaments of the cytoskeleton. Understanding the resulting dynamics and the underlying biophysical and biochemical processes critically depends on computational models of intra-cellular transport. A number of motor-cargo models have hence been developed to reproduce experimentally observed transport dynamics on various levels of detail. Computer simulations of these models have so far exclusively relied on approximate time-discretization methods. Using a consensus motor-cargo model that unites several existing models from the literature we demonstrate that this simulation approach is not correct. The numerical errors do not vanish even for arbitrarily small time steps, rendering the algorithm inconsistent. We propose a novel exact simulation algorithm for intra-cellular transport models that is also computationally more efficient than the approximate one. Furthermore, we introduce a robust way of analyzing the different time scales in the model dynamics using velocity autocorrelation functions.
机译:活细胞中的许多过程都取决于沿着细胞骨架细丝的主动,机动驱动的货物和细胞器的运输。了解由此产生的动力学以及潜在的生物物理和生化过程关键取决于细胞内运输的计算模型。因此,已经开发出许多汽车模型,以在各种细节水平上再现实验观察到的运输动力学。到目前为止,这些模型的计算机模拟仅依赖于近似时间离散化方法。使用结合了文献中的几个现有模型的共识汽车模型,我们证明了这种模拟方法是不正确的。即使对于任意小的时间步长,数值误差也不会消失,从而导致算法不一致。我们为细胞内运输模型提出了一种新颖的精确仿真算法,该算法在计算上也比近似算法更有效。此外,我们介绍了一种使用速度自相关函数分析模型动力学中不同时间尺度的可靠方法。

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