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The myosin start-of-power stroke state and how actin binding drives the power stroke

机译:肌球蛋白功率开始冲程状态以及肌动蛋白结合如何驱动功率冲程

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We propose that on binding to actin at the start of the power stroke the myosin cross-bridge takes on the rigor configuration at the actin interface. Starting from the prepower stroke state, this can be achieved by a small movement (16° rotation) of the lower 50K domain without twisting the central β-sheet or opening switch-1 or switch-2. The movement of the lower 50K domain puts a strain on the W-helix. This strain tries to twist the β-sheet, which could drive the power stroke. This would provide a coupling between actin binding and the execution of the power stroke. During the power stroke the β-sheet twists, moving the P-loop away from switch-2, which opens the nucleotide binding pocket and separates ADP from Pi. The power stroke is different from the recovery stroke because the upper and lower 50K domains are tethered in the rigor configuration.
机译:我们建议,在动力冲程开始时与肌动蛋白结合时,肌球蛋白跨桥在肌动蛋白界面上具有严格的构型。从前大功率冲程状态开始,这可以通过下50K域的较小移动(16°旋转)来实现,而无需扭曲中央β片或打开开关1或开关2。较低的50K域的运动给W螺旋带来了压力。这种应变试图扭曲β片,这可能会导致动力冲程。这将在肌动蛋白结合和动力冲程的执行之间提供耦合。在中风期间,β-折叠会扭曲,将P环从switch-2移开,这会打开核苷酸结合袋并将ADP与Pi分开。功率冲程与恢复冲程不同,因为上部和下部50K域以严格的配置进行束缚。

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