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Setting the dynein motor in motion: New insights from electron tomography

机译:设置动力电动马达:电子断层扫描的新见解

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Dyneins are ATP-fueled macromolecular machines that power all minus-end microtubule–based transport processes of molecular cargo within eukaryotic cells and play essential roles in a wide variety of cellular functions. These complex and fascinating motors have been the target of countless structural and biophysical studies. These investigations have elucidated the mechanism of ATP-driven force production and have helped unravel the conformational rearrangements associated with the dynein mechanochemical cycle. However, despite decades of research, it remains unknown how these molecular motions are harnessed to power massive cellular reorganization and what are the regulatory mechanisms that drive these processes. Recent advancements in electron tomography imaging have enabled researchers to visualize dynein motors in their transport environment with unprecedented detail and have led to exciting discoveries regarding dynein motor function and regulation. In this review, we will highlight how these recent structural studies have fundamentally propelled our understanding of the dynein motor and have revealed some unexpected, unifying mechanisms of regulation.
机译:动力蛋白是由ATP推动的大分子机器,为真核细胞内所有基于负微管的分子货物运输过程提供动力,并在多种细胞功能中发挥重要作用。这些复杂而引人入胜的电机已成为无数结构和生物物理研究的目标。这些研究阐明了ATP驱动力产生的机理,并帮助揭示了与达因机械化学化学循环相关的构象重排。然而,尽管进行了数十年的研究,但如何利用这些分子运动来促进大规模细胞重组以及驱动这些过程的调控机制仍是未知的。电子断层扫描成像技术的最新进展使研究人员能够以前所未有的细节可视化其运输环境中的达因马达,并获得了有关达因马达功能和调节的令人兴奋的发现。在这篇综述中,我们将重点介绍这些最近的结构研究如何从根本上推动我们对达因运动的理解,并揭示出一些意想不到的统一调节机制。

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