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Molecular adaptations allow dynein to generate large collective forces inside cells

机译:分子适应允许Dynein在细胞内产生大型集体力量

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摘要

Many cellular processes require large forces that are generated collectively by multiple cytoskeletal motor proteins. Understanding how motors generate force as a team is therefore fundamentally important but is poorly understood. Here, we demonstrate optical trapping at single-molecule resolution inside cells to quantify force generation by motor teams driving single phagosomes. In remarkable paradox, strong kinesins fail to work collectively, whereas weak and detachment-prone dyneins team up to generate large forces that tune linearly in strength and persistence with dynein number. Based on experimental evidence, we propose that leading dyneins in a load-carrying team take short steps, whereas trailing dyneins take larger steps. Dyneins in such a team bunch close together and therefore share load better to overcome low/intermediate loads. Up against higher load, dyneins "catch bond" tenaciously to the microtubule, but kinesins detach rapidly. Dynein therefore appears uniquely adapted to work in large teams, which may explain how this motor executes bewilderingly diverse cellular processes.
机译:许多细胞过程需要由多个细胞骨架电机蛋白共同产生的大力。理解汽车如何产生力量,因为团队因此根本重要,但理解得很差。在这里,我们证明了在细胞内单分子分辨率的光学捕获,以通过驱动单个吞噬体的电动机团队量化力产生。在卓越的悖论中,强大的kinesins无法集体工作,而弱和分支易受DoNeins团队一起产生大型力量,这些力量在力量和持续存在于Dynein号码中。根据实验证据,我们提出了载荷团队中的领先Dodnins采取短暂的步骤,而尾随Dyniins采取更大的步骤。这种团队束在一起的DoNeins束缚,因此更好地匹配负载以克服低/中间负荷。对抗较高的负荷,Dyneins“抓住”顽固地抓住微管,但Kinesins迅速分离。因此,Dynein似乎唯一适合在大型团队中工作,这可以解释该电机如何执行令人困惑的多种蜂窝过程。

著录项

  • 来源
    《Cell》 |2013年第1期|共11页
  • 作者单位

    Department of Biological Sciences Tata Institute of Fundamental Research Mumbai 400005 India;

    Department of Biological Sciences Tata Institute of Fundamental Research Mumbai 400005 India;

    Department of Biological Sciences Tata Institute of Fundamental Research Mumbai 400005 India;

    Department of Biological Sciences Tata Institute of Fundamental Research Mumbai 400005 India;

    Department of Biological Sciences Tata Institute of Fundamental Research Mumbai 400005 India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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