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首页> 外文期刊>Journal of the Royal Society Interface >Insights into the mechanisms of myosin and kinesin molecular motors from the single-molecule unbinding force measurements
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Insights into the mechanisms of myosin and kinesin molecular motors from the single-molecule unbinding force measurements

机译:从单分子解粘力测量中了解肌球蛋白和驱动蛋白分子马达的机理

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摘要

In cells, ATP (adenosine triphosphate)-driven motor proteins, both cytoskeletal and nucleic acid-based, operate on their corresponding 'tracks', that is, actin, microtubules or nucleic acids, by converting the chemical energy of ATP hydrolysis into mechanical work. During each mechanochemical cycle, a motor proceeds via several nucleotide states, characterized by different affinities for the 'track' filament and different nucleotide (ATP or ADP) binding kinetics, which is crucial for a motor to efficiently perform its cellular functions. The measurements of the rupture force between the motor and the track by applying external loads to the individual motor-substrate bonds in various nucleotide states have proved to be an important tool to obtain valuable insights into the mechanism of the motors' performance. We review the application of this technique to various linear molecular motors, both processive and non-processive, giving special attention to the importance of the experimental geometry.
机译:在细胞中,ATP(三磷酸腺苷)驱动的运动蛋白(基于细胞骨架和核酸)通过将ATP水解的化学能转化为机械功而在其相应的“轨迹”上运行,即肌动蛋白,微管或核酸。在每个机械化学循环中,马达通过几种核苷酸状态前进,其特征是“跟踪”丝的亲和力不同,核苷酸(ATP或ADP)的结合动力学也不同,这对于马达有效执行其细胞功能至关重要。通过在各种核苷酸状态下将外部载荷施加到单个电动机-基底键上来测量电动机与轨道之间的断裂力,已被证明是获得对电动机性能机理的宝贵见解的重要工具。我们回顾了这种技术在各种线性分子电动机中的应用,无论它们是连续的还是非连续的,都要特别注意实验几何的重要性。

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