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首页> 外文期刊>Science Advances >Different motilities of microtubules driven by kinesin-1 and kinesin-14 motors patterned on nanopillars
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Different motilities of microtubules driven by kinesin-1 and kinesin-14 motors patterned on nanopillars

机译:在纳米玻璃柱上采用Kinesin-1和Kinesin-14电动机驱动的微管的不同动力

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Kinesin is a motor protein that plays important roles in a variety of cellular functions. In vivo, multiple kinesin molecules are bound to cargo and work as a team to produce larger forces or higher speeds than a single kinesin. However, the coordination of kinesins remains poorly understood because of the experimental difficulty in controlling the number and arrangement of kinesins, which are considered to affect their coordination. Here, we report that both the number and spacing significantly influence the velocity of microtubules driven by nonprocessive kinesin-14 (Ncd), whereas neither the number nor the spacing changes the velocity in the case of highly processive kinesin-1. This result was realized by the optimum nanopatterning method of kinesins that enables immobilization of a single kinesin on a nanopillar. Our proposed method enables us to study the individual effects of the number and spacing of motors on the collective dynamics of multiple motors.
机译:Kinesin是一种运动蛋白,可在各种蜂窝功能中起重要作用。在体内,多个kinesin分子束缚到货物,作为团队工作,以产生比单个kinesin更大的力量或更高的速度。然而,由于控制kinesins的数量和排列而认为影响其协调,因此kinesins的协调仍然仍然明显难以理解。在这里,我们报告说,数量和间距都显着影响由非营养性kinesin-14(NCD)驱动的微管的速度,而数量和间距与高度加工的Kinesin-1的情况下,间距都没有变化。该结果是通过可培养的最佳纳米透明方法来实现,使得能够在纳米玻璃上固定单个Kinesin。我们所提出的方法使我们能够研究多个电动机集体动态的电机数量和间距的个人效果。

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