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Anomalous transport of subdiffusing cargos by single kinesin motors: the role of mechano-chemical coupling and anharmonicity of tether

机译:单驱动动力马达对亚扩散货物的反常运输:机械化学耦合作用和系链的不和谐性

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摘要

Here we generalize our previous model of molecular motors trafficking subdiffusing cargos in viscoelastic cytosol by (i) including mechano-chemical coupling between cyclic conformational fluctuations of the motor protein driven by the reaction of ATP hydrolysis and its translational motion within the simplest two-state model of hand-over-hand motion of kinesin, and also (ii) by taking into account the anharmonicity of the tether between the motor and the cargo (its maximally possible extension length). It is shown that the major earlier results such as occurrence of normal versus anomalous transport depending on the amplitude of binding potential, cargo size and the motor turnover frequency not only survive in this more realistic model, but the results also look very similar for the correspondingly adjusted parameters. However, this more realistic model displays a substantially larger thermodynamic efficiency due to a bidirectional mechano-chemical coupling. For realistic parameters, the maximal thermodynamic efficiency can transiently be about 50% as observed for kinesins, and even larger, surprisingly also in a novel strongly anomalous (sub) transport regime, where the motor enzymatic turnovers become also anomalously slow and cannot be characterized by a turnover rate. Here anomalously slow dynamics of the cargo enforces anomalously slow cyclic kinetics of the motor protein.
机译:在这里,我们通过(i)概括了我们以前的分子马达在粘弹性细胞溶胶中再扩散货物的分子马达运输模型,包括在最简单的二态模型中由ATP水解反应驱动的马达蛋白的循环构象波动与其平移运动之间的机械化学耦合驱动器的移交动作,以及(ii)考虑到电动机和货物之间的系链不和谐(最大可能的延伸长度)。结果表明,主要的早期结果,如正常运输与反常运输的发生,取决于结合势的幅度,货物大小和电机周转频率,不仅在这种更为现实的模型中得以保留,而且相应的结果看起来也非常相似。调整后的参数。然而,由于双向的机械-化学耦合,该更现实的模型显示出实质上更大的热力学效率。对于逼真的参数,最大的热力学效率可以瞬时达到约50%,如驱动蛋白所观察到的,甚至更大,令人惊讶的是,在一种新型的强烈异常(亚)转运机制中,电机酶的代谢也异常缓慢并且无法通过以下方式表征周转率。在这里,货物的异常缓慢的动力学增强了运动蛋白的异常缓慢的循环动力学。

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