首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Kinesin's Cover-neck Bundle Folds Forward To Generate Force
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Kinesin's Cover-neck Bundle Folds Forward To Generate Force

机译:Kinesin的盖脖子束向前折叠以产生力量

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Each step of the kinesin motor involves a force-generating molecular rearrangement. Although significant progress has been made in elucidating the broad features of the kinesin mechanochemical cycle, molecular details of the force generation mechanism remain a mystery. Recent molecular dynamics simulations have suggested a mechanism in which the forward drive is produced when the N-terminal cover strand forms a β-sheet with the neck linker to yield the cover-neck bundle. We tested this proposal by comparing optical trapping motility measurements of cover strand mutants with the wild-type. Motility data, as well as kinetic analyses, revealed impairment of the force-generating capacity accompanied by a greater load dependence in the mechanochemical cycle. In particular, a mutant with the cover strand deleted functioned only marginally, despite the fact that the cover strand, the N-terminal "dangling end," unlike the neck linker and nucleotide-binding pocket, is not involved with any previously considered energy transduction pathway. Furthermore, a constant assisting load, likely in lieu of a power stroke, was shown to rescue forward motility in the cover strand deletion mutant. Our results support a stepping mechanism driven by dynamic cover-neck bundle formation. They also suggest a strategy to generate motors with altered mechanical characteristics by targeting the force-generating element.
机译:驱动蛋白马达的每个步骤都涉及产生力的分子重排。尽管在阐明驱动蛋白力学化学循环的广泛特征方面已经取得了重大进展,但是力产生机理的分子细节仍然是个谜。最近的分子动力学模拟已经提出了一种机制,其中当N末端覆盖链与颈连接基形成β-折叠以产生覆盖颈束时,产生向前驱动。我们通过比较覆盖链突变体与野生型的光阱能动性测试来测试该建议。动力数据以及动力学分析表明,在机械化学循环中,力产生能力受到损害,同时负载依赖性更大。尤其是,尽管覆盖链,N末端“悬挂端”与颈部连接子和核苷酸结合袋不同,但不涉及任何先前认为的能量转导,但缺失了覆盖链的突变体仅略有起作用途径。此外,显示出恒定的辅助负荷(可能代替力量中风)可以挽救覆盖链缺失突变体中的向前运动。我们的结果支持由动态覆盖颈束形成驱动的步进机制。他们还提出了一种通过瞄准力产生元件来产生具有改变的机械特性的电动机的策略。

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