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The size and the speed of the working stroke of muscle myosin and its dependence on the force.

机译:肌肉肌球蛋白工作冲程的大小和速度及其对力的依赖性。

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摘要

Myosin II is the motor protein that produces force and shortening in muscle by ATP-driven cyclic interactions of its globular portion, the head, with the actin filament. During each interaction the myosin head undergoes a conformational change, the working stroke, which, depending on the mechanical conditions, can generate a force of several piconewtons or an axial displacement of the actin filament toward the centre of the sarcomere of several nanometres. However, the sizes of the elementary force and length steps and their dependence on the mechanical conditions are still under question. Due to the small fraction of the ATPase cycle time myosin II spends attached to actin, single molecule mechanics failed to produce definitive measurements of the individual events. In intact frog muscle fibres, however, myosin II's working stroke can be synchronised in the few milliseconds following a step reduction in either force or length superimposed on the isometric contraction. Here we show that with 150 &mgr;sforce steps it is possible to separate the elastic response from the subsequent early rapid component of filament sliding due to the working stroke in the attached myosin heads. In this way we determine how the size and the speed of the working stroke depend on the clamped force. The relation between mechanical energy and force provides a molecular basis for muscle efficiency and an estimate of the isometric force exerted by a myosin head.
机译:肌球蛋白II是运动蛋白,通过其球状部分(头部)与肌动蛋白丝的ATP驱动的循环相互作用,在肌肉中产生力量并缩短肌肉。在每次相互作用过程中,肌球蛋白头部都会发生构象变化,其工作冲程取决于机械条件,可产生数微微牛顿的力或肌动蛋白丝向数纳米肌节中心的轴向位移。然而,基本力和长度步长的大小以及它们对机械条件的依赖性仍然存在疑问。由于肌动蛋白II花费在肌动蛋白上的ATPase周期时间的一小部分,因此单分子力学无法对单个事件进行确定的测量。但是,在完整的青蛙肌肉纤维中,在叠加等距收缩的力或长度逐步减小之后,肌球蛋白II的工作冲程可以在几毫秒内同步。在这里,我们显示,通过150个力的步骤,可以将弹性响应与后续的由于附着的肌球蛋白头中的工作行程而引起的细丝滑动的早期快速分量分开。这样,我们可以确定工作行程的大小和速度如何取决于夹紧力。机械能和力之间的关系为肌肉效率和肌球蛋白头所施加的等轴测力的估计提供了分子基础。

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