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Perfect anomalous transport of subdiffusive cargos by molecular motors in viscoelastic cytosol

机译:粘弹性细胞溶溶胶中的分子电机完美的沉屈卡的异常运输

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摘要

Multiple experiments show that various submicron particles such as magnetosomes, RNA messengers, viruses, and even much smaller nanoparticles such as globular proteins diffuse anomalously slow in viscoelastic cytosol of living cells. Hence, their sufficiently fast directional transport by molecular motors such as kinesins is crucial for the cell operation. It has been shown recently that the traditional flashing Brownian ratchet models of molecular motors are capable to describe both normal and anomalous transport of such subdiffusing cargos by molecular motors with a very high efficiency. This work elucidates further an important role of mechanochemical coupling in such an anomalous transport. It shows a natural emergence of a perfect subdiffusive ratchet regime due to allosteric effects, where the random rotations of a "catalytic wheel" at the heart of the motor operation become perfectly synchronized with the random stepping of a heavily loaded motor, so that only one ATP molecule is consumed on average at each motor step along microtubule. However, the number of rotations made by the catalytic engine and the traveling distance both scale sublinearly in time. Nevertheless, this anomalous transport can be very fast in absolute terms.
机译:多个实验表明,各种亚微粒粒子如磁或磁体,RNA信使,病毒,以及甚至更小的纳米颗粒,例如球状蛋白质在活细胞的粘弹性细胞溶质中慢慢地慢慢地扩散。因此,它们的分子电机如诸如kinesins的足够快的定向传输对于细胞操作至关重要。最近已经表明,分子电机的传统闪烁的布朗棘轮型号能够通过具有非常高的效率的分子电机来描述这种亚脱屑的尸体的正常和异常运输。该工作阐明了机械化学偶联在这种异常运输中的重要作用。它显示出由于变构效果而完美的副抗峰棘轮制度的自然出现,其中“催化轮”在电动机运行的心脏处的“催化轮”的随机旋转与大装载电动机的随机踩踏变得完全同步,因此只有一个ATP分子在沿着微管的每个电动机步骤中平均消耗。然而,催化发动机制造的旋转次数和行进距离两种尺寸载入的时间。尽管如此,这种异常的运输在绝对术语中可以非常快。

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