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首页> 外文期刊>Advances in Experimental Medicine and Biology >Molecular step(s) of force generation: temperature-perturbation experiments on muscle fibres.
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Molecular step(s) of force generation: temperature-perturbation experiments on muscle fibres.

机译:力生成的分子步骤:肌肉纤维的温度摄动实验。

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The steady active muscle force is reduced, but the force generation induced by a standard temperature jump becomes 2-3 fold faster with increased inorganic phosphate level, [Pi]. The increase in the rate of force generation also exhibits saturation at higher [Pi] levels and the relation is hyperbolic. These observations are consistent with a kinetic scheme where rapid Pi release by actomyosin crossbridges in muscle is preceded by the force generation step. Such a scheme accounts for the sigmoidal temperature dependence of steady active force and its sensitivity to [Pi]. The [Pi] dependence of force recovery after stretch (positive strain) is also hyperbolic, suggesting that the "pre Pi-release force generation step" is strain-sensitive--as expected. However, length-release (negative strain) force transients are not [Pi] sensitive indicating an asymmetry, but its significance and also the kinetic step underlying force recovery from negative strain remain unclear.
机译:稳定的活跃肌肉力量减小了,但是随着无机磷酸盐水平的增加,由标准温度跃变引起的力量的生成速度会加快2-3倍。力产生速率的增加在较高的Pi水平下也表现出饱和,并且该关系是双曲线的。这些观察结果与动力学方案一致,在动力学方案中,肌动蛋白交叉桥在肌肉中快速释放Pi,然后进行力生成步骤。这种方案考虑了稳态作用力的S形温度依赖性及其对Pi的敏感性。拉伸(正应变)后力恢复的Pi依赖性也是双曲线的,这表明“ Pi释放前的力生成步骤”是应变敏感的(如预期的那样)。然而,长度释放(负应变)力瞬变对π不敏感,表明不对称,但是其重要性以及从负应变恢复力的动力学步骤仍然不清楚。

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