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QUANTAL MOTOR ACTION IN MUSCLE CONTRACTION

机译:肌肉收缩中的量化运动

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It is becoming clear that quantal behavior is a central feature of contractile systems. Step-like behavior has been demonstrated in the kinesin - microtubule system and in the myosin - actin filament system-both on molecular scale. We show here that step-like features appear also in the single intact sarcomere. We studied single sarcomeres of single bumblebee myofibrils. Motor-imposed ramp length changes on activated myofibrils resulted in sarcomere-length changes that were stepwise. Computer analysis of the stepwise shortening patterns revealed a step-size distribution containing multiple peaks. The peaks were separated by 2.7 nm per half-sarcomere which is the linear actin-subunit spacing. Thus, translation steps are an integer multiple of the actin-subunit spacing. This result parallels the one observed in the kinesin-tubulin spacing where step size is a multiple of the tubulin-subunit spacing. In the muscle system, however, the steps are preserved on a macroscopic scale, implying high synchrony. The quantal steps are easily explained by a model in which the actin filament propels itself over stationary cross-bridges: if actin binds to the cross-bridges between steps, then the observed quantal result is inevitable.
机译:越来越清楚的是,数量行为是收缩系统的主要特征。在驱动蛋白-微管系统和肌球蛋白-肌动蛋白丝系统中都已在分子尺度上证明了阶梯状行为。我们在这里表明,阶梯状特征也出现在单个完整的肌节中。我们研究了单个大黄蜂肌原纤维的单个肉瘤。激活的肌原纤维对运动施加的斜坡长度变化导致肌节长度的变化是逐步的。逐步缩短模式的计算机分析显示出包含多个峰的步长分布。每个半肌节之间的峰间隔为2.7 nm,这是线性肌动蛋白亚基间距。因此,翻译步骤是肌动蛋白亚基间隔的整数倍。该结果与在驱动蛋白-微管蛋白间距中观察到的结果平行,其中步长为微管蛋白亚基间距的倍数。但是,在肌肉系统中,这些步骤以宏观尺度保留,这意味着高度同步。量化步长很容易用一个模型来解释,其中肌动蛋白丝在固定的跨桥上推动自身:如果肌动蛋白结合到跨步之间的跨桥,则观察到的定量结果是不可避免的。

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