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Stochastic modeling reveals how motor protein and filament properties affect intermediate filament transport

机译:随机造型揭示了电机蛋白和灯丝特性如何影响中间灯丝

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Intermediate filaments are a key component of the cytoskeleton. Their transport along microtubules plays an essential role in the control of the shape and structural organization of cells. To identify the key parameters responsible for the control of intermediate filament transport, we generated a model of elastic filament transport by microtubule-associated dynein and kinesin. The model is also applicable to the transport of any elastically-coupled cargoes. We investigate the effect of filament properties such as number of motor binding sites, length, and elasticity on motion of filaments. Additionally, we consider the effect of motor properties, i.e. off rates, on filament transport. When one motor has a catch bond off rate it dictates the motion, whereas when motors have the same type of off rate filaments can alternate between retrograde and anterograde motions. The elasticity of filaments optimizes the filament transport and the coordination of motors along the length of the filament. (C) 2018 Elsevier Ltd. All rights reserved.
机译:中间细丝是细胞骨架的关键组分。他们沿着微管的运输在控制细胞的形状和结构组织中起着重要作用。为了确定负责控制中间灯丝传输的关键参数,我们通过微管相关的Dynein和Kinesin产生了弹性丝传输的模型。该模型也适用于任何弹性耦合货物的运输。我们探讨了丝状特性的影响,例如电动机结合位点,长度和弹性的运动数量。此外,我们考虑电动机性能,即OFF速率,在灯丝输送方面的效果。当一个电动机具有捕获粘合率时,它决定了运动,而当电动机具有相同类型的偏移率,则可以在逆行和伪造运动之间交替。丝的弹性优化了灯丝传输和沿着长丝的长度的电动机的配位。 (c)2018年elestvier有限公司保留所有权利。

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