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Qualitatively different cross-bridge attachments in fast and slow muscle fiber types.

机译:在快速和慢速肌纤维类型中,质构上不同的跨桥附件。

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摘要

Contractile properties differ between skeletal, cardiac and smooth muscles as well as between various skeletal muscle fiber types. This functional diversity is thought to be mainly related to different speeds of myosin head pulling cycles, with the molecular mechanism of force generation being essentially the same. In this study, force-generating attachments of myosin heads were investigated by applying small perturbations of myosin head pulling cycles in stepwise stretch experiments on skeletal muscle fibers of different type. Slow fibers (frog tonic and rat slow-twitch) exhibited only a 'slow-type' of myosin head attachment over the entire activation range, while fast fibers (frog and rat fast-twitch) displayed a 'slow-type' of myosin head attachment at low levels of activation, and an up to 30-times faster type at high levels of activation. These observations indicate that there are qualitative differences between the mechanisms of myosin head attachment in slow and fast vertebrate skeletal muscle fibers.
机译:骨骼肌,心肌和平滑肌之间以及各种骨骼肌纤维类型之间的收缩特性都不同。这种功能多样性被认为主要与肌球蛋白头部拉动循环的不同速度有关,力产生的分子机理基本相同。在这项研究中,通过对不同类型的骨骼肌纤维进行逐步拉伸实验,对肌球蛋白头的牵拉周期进行微扰,研究了肌球蛋白头的产生力的附件。慢纤维(青蛙补品和大鼠慢肌)在整个激活范围内仅表现出“慢型”的肌球蛋白头附着,而快纤维(青蛙和大鼠快肌)表现出“慢型”的肌球蛋白头处于低激活水平时的附件,而处于高激活水平时则快30倍。这些观察结果表明,在慢速和快速脊椎动物骨骼肌纤维中,肌球蛋白头部附着机制之间存在质的差异。

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