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首页> 外文期刊>Cell >Dynein motion switches from diffusive to directed upon cortical anchoring
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Dynein motion switches from diffusive to directed upon cortical anchoring

机译:动力蛋白的运动从扩散性切换到定向性皮层锚固

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Summary Cytoplasmic dynein is a motor protein that exerts force on microtubules. To generate force for the movement of large organelles, dynein needs to be anchored, with the anchoring sites being typically located at the cell cortex. However, the mechanism by which dyneins target sites where they can generate large collective forces is unknown. Here, we directly observe single dyneins during meiotic nuclear oscillations in fission yeast and identify the steps of the dynein binding process: from the cytoplasm to the microtubule and from the microtubule to cortical anchors. We observed that dyneins on the microtubule move either in a diffusive or directed manner, with the switch from diffusion to directed movement occurring upon binding of dynein to cortical anchors. This dual behavior of dynein on the microtubule, together with the two steps of binding, enables dyneins to self-organize into a spatial pattern needed for them to generate large collective forces.
机译:小结细胞质动力蛋白是一种在微管上施加力的运动蛋白。为了产生用于大细胞器运动的力,需要将动力蛋白锚定,锚定部位通常位于细胞皮层。但是,动力蛋白靶向产生大量集体力量的部位的机制尚不清楚。在这里,我们直接观察裂变酵母在减数分裂核振荡过程中的单个达因,并确定达因结合过程的步骤:从细胞质到微管,再从微管到皮层锚。我们观察到微管上的动力蛋白以扩散或定向方式移动,当动力蛋白与皮质锚定物结合后,就会发生从扩散到定向运动的转变。动力蛋白在微管上的这种双重行为,以及结合的两个步骤,使动力蛋白能够自组织成它们产生大的集体力所需的空间模式。

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