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Collective alignment of polar filaments by molecular motors

机译:分子马达对极性细丝进行集体排列

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We study the alignment of polar biofilaments, such as microtubules and actin, subject to the action of multiple molecular motors attached simultaneously to more than one filament. Focusing on a paradigm model of only two filaments interacting with multiple motors, we were able to investigate in detail the alignment dynamics. While almost no alignment occurs in the case of a single motor, the filaments become rapidly aligned due to the collective action of the motors. Our analysis shows that the alignment time is governed by the number of bound motors and the magnitude of the motors' stepping fluctuations. We predict that the time scale of alignment is in the order of seconds, much faster than that reported for passive crosslink-induced bundling. In vitro experiments on the alignment of microtubules by multiple-motor covered beads are in qualitative agreement. We also discuss another mode of fast alignment of filaments, namely the cooperation between motors and passive crosslinks
机译:我们研究极性生物丝(例如微管和肌动蛋白)的排列,同时受多个分子马达同时作用于一根以上的丝的作用。着眼于只有两个细丝与多个电机相互作用的范例模型,我们能够详细研究对准动力学。尽管在单个电动机的情况下几乎没有对齐,但由于电动机的共同作用,细丝会迅速对齐。我们的分析表明,对准时间受约束电机的数量和电机步进波动幅度的控制。我们预测对齐的时间尺度大约为几秒,比被动交联诱导的束缚所报道的快得多。通过多电机覆盖的珠子对微管进行对准的体外实验在质量上是一致的。我们还将讨论灯丝快速对齐的另一种模式,即电机和被动交联之间的配合

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