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Transport Properties of Melanosomes along Microtubules Interpreted by a Tug-of-War Model with Loose Mechanical Coupling

机译:通过拔河模型与松机耦合一起解析微管的黑素体输运性质

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摘要

In this work, we explored theoretically the transport of organelles driven along microtubules by molecular motors of opposed polarities using a stochastic model that considers a Langevin dynamics for the cargo, independent cargo-motor linkers and stepping motion for the motors. It has been recently proposed that the stiffness of the motor plays an important role when multiple motors collectively transport a cargo. Therefore, we considered in our model the recently reported values for the stiffness of the cargo-motor linker determined in living cells (∼0.01 pNm, ) which is significantly lower than the motor stiffness obtained in in vitro assays and used in previous studies. Our model could reproduce the multimodal velocity distributions and typical trajectory characteristics including the properties of the reversions in the overall direction of motion observed during melanosome transport along microtubules in Xenopus laevis melanophores. Moreover, we explored the contribution of the different motility states of the cargo-motor system to the different modes of the velocity distributions and could identify the microscopic mechanisms of transport leading to trajectories compatible with those observed in living cells. Finally, by changing the attachment and detachment rates, the model could reproduce the different velocity distributions observed during melanosome transport along microtubules in Xenopus laevis melanophores stimulated for aggregation and dispersion. Our analysis suggests that active tug-of-war processes with loose mechanical coupling can account for several aspects of cargo transport along microtubules in living cells.
机译:在这项工作中,我们从理论上探讨了使用极性相反的分子电动机沿着微管驱动的细胞器的运输过程,该模型采用考虑了朗格文动力学的货物,独立的货物-电动机连接器和电动机的步进运动的随机模型。最近提出,当多个电动机共同运输货物时,电动机的刚度起着重要的作用。因此,我们在模型中考虑了最近报道的在活细胞中测定的货物-马达连接子刚度的值(〜0.01 pN / nm,),该值明显低于在体外试验中获得并用于先前研究的马达刚度。我们的模型可以重现多峰速度分布和典型的轨迹特征,包括在非洲爪蟾黑色素细胞沿微管的黑色素体转运过程中观察到的整体运动方向反转的特性。此外,我们探索了货物-汽车系统的不同运动状态对速度分布的不同模式的贡献,并可以确定导致与活细胞中观察到的轨迹相容的微观运输机理。最后,通过改变附着和脱离速率,该模型可以重现在黑胶质黑素细胞中黑素体沿着微管运输时观察到的不同速度分布,黑胶质黑素细胞受到聚集和分散的刺激。我们的分析表明,主动的拔河过程与松散的机械耦合可以解释货物沿着活细胞中微管运输的几个方面。

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