在骨骼肌中,在零负荷下,肌凝蛋白马达的最小数量可以缩短速度

L. Fusi, Valentina Percario, E. Brunello, M. Caremani, P. Bianco, J. Powers, M. Reconditi, V. Lombardi, G. Piazzesi
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引用次数: 31

摘要

肌凝蛋白丝机械传感通过调整开关上电机的数量来确定收缩的效率。因此,卸载缩短速度(V0)已经设定在潜伏期松弛(LR)结束时,刺激开始后约10 ms,此时肌球蛋白丝仍处于OFF状态。在这里,在V0缩短期间,无论是在LR结束还是在等距收缩平台,每半肌球蛋白丝(n)的肌动蛋白附着电机的数量都是根据缩短后力重建过程中半肌节顺应性与力之间的关系来估计的。随着缩短,n的值逐渐减小,从LR结束开始的V0缩短期间,n的值为1-4。n的减少是通过恒定的占空比0.05和电机并联关闭来解释的,这解释了在空载缩短期间发现的非常低的ATP利用率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Minimum number of myosin motors accounting for shortening velocity under zero load in skeletal muscle
Myosin filament mechanosensing determines the efficiency of the contraction by adapting the number of switched ON motors to the load. Accordingly, the unloaded shortening velocity (V0) is already set at the end of latency relaxation (LR), ∼10 ms after the start of stimulation, when the myosin filament is still in the OFF state. Here the number of actin‐attached motors per half‐myosin filament (n) during V0 shortening imposed either at the end of LR or at the plateau of the isometric contraction is estimated from the relation between half‐sarcomere compliance and force during the force redevelopment after shortening. The value of n decreases progressively with shortening and, during V0 shortening starting at the end of LR, is 1–4. Reduction of n is accounted for by a constant duty ratio of 0.05 and a parallel switching OFF of motors, explaining the very low rate of ATP utilization found during unloaded shortening.
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