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Unidirectional Motion of Microtubules and Microspheres by Dynein Motor Protein

机译:通过Dynein Motor蛋白的微管和微球的单向运动

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This paper reports a nanotransport system with the directional movement control. The system consists of motor proteins, dynein and kinesin, and their tracks, microtubules. Dynein molecules are specifically immobilized on a microchannel glass surface and fluorescently labeled microtubules were transported by dynein motion. Moving directions of gliding microtubules were controlled by a pressure-driven flow through the microchannel, and their polarities were oriented in the designated direction. We have also examined their polarities by the unidirectional transport of kinesin-coated microspheres. Orientation ratios of microtubules were evaluated as 90.9% and 78.8% by moving microtubules and microspheres, respectively. Integrating dynein and kinesin provides a possibility to compose a two-dimensional nanotransport system.
机译:本文报告了具有定向运动控制的纳米传输系统。该系统由电动蛋白,Dynein和Kinesin以及它们的轨道组成,微管。 Dynein分子在微通道玻璃表面上专门固定在微通道玻璃表面上,并且通过Dynein运动输送荧光标记的微管。滑动微管的移动方向由通过微通道的压力驱动的流量控制,并且它们的极性在指定方向上取向。我们还通过单向传输的Kinesin涂层微球检查了它们的极性。通过移动微管和微球评价微管的定向比率为90.9%和78.8%。整合Dynein和Kinesin提供了构成二维纳米传输系统的可能性。

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