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兔骨骼肌纤维中磷酸盐瞬变的应变依赖性调节。

Strain-dependent modulation of phosphate transients in rabbit skeletal muscle fibers.

作者信息

Homsher E, Lacktis J, Regnier M

机构信息

Department of Physiology, University of California at Los Angeles 90024, USA.

出版信息

Biophys J. 1997 Apr;72(4):1780-91. doi: 10.1016/S0006-3495(97)78824-6.

Abstract

When inorganic phosphate (Pi) is photogenerated from caged Pi during isometric contractions of glycerinated rabbit psoas muscle fibers, the released Pi binds to cross-bridges and reverses the working stroke of cross-bridges. The consequent force decline, the Pi-transient, is exponential and probes the kinetics of the power-stroke and Pi release. During muscle shortening, the fraction of attached cross-bridges and the average strain on them decreases (Ford, L. E., A.F. Huxley, and R.M. Simmons, 1977. Tension responses to sudden length change in stimulated frog muscle fibers near slack length. J. Physiol. (Lond.). 269:441-515; Ford, L. E., A. F. Huxley, and R.M. Simmons, 1985. Tension transients during steady state shortening of frog muscle fibers. J. Physiol. (Lond.). 361:131-150. To learn to what extent the Pi transient is strain dependent, muscle fibers were activated and shortened or lengthened at a fixed velocity during the photogeneration of Pi. The Pi transients observed during changes in muscle length showed three primary characteristics: 1) during shortening the Pi transient rate, Kpi, increased and its amplitude decreased with shortening velocity; Kpi increased linearly with velocity to > 110 s-1 at 0.3 muscle lengths per second (ML/s). 2) At a specific shortening velocity, increases in [Pi] produce increases in Kpi that are nonlinear with [Pi] and approach an asymptote. 3) During forced lengthening Kpi and the amplitude of the Pi transient are little different from the isometric contractions. These data can be approximated by a strain-dependent three-state cross-bridge model. The results show that the power stroke's rate is strain-dependent, and are consistent with biochemical studies indicating that the rate-limiting step at low strains is a transition from a weakly to a strongly bound cross-bridge state.

摘要

在甘油处理的兔腰大肌纤维等长收缩过程中,当笼锁无机磷酸(Pi)光解产生无机磷酸时,释放的Pi会与横桥结合并逆转横桥的工作行程。由此导致的力下降,即Pi瞬变,呈指数形式,并探究了动力冲程和Pi释放的动力学。在肌肉缩短过程中,附着的横桥比例及其上的平均应变会降低(福特,L.E.,A.F.赫胥黎,和R.M.西蒙斯,1977年。松弛长度附近受刺激青蛙肌肉纤维对突然长度变化的张力反应。《生理学杂志》(伦敦)。269:441 - 515;福特,L.E.,A.F.赫胥黎,和R.M.西蒙斯,1985年。青蛙肌肉纤维稳态缩短过程中的张力瞬变。《生理学杂志》(伦敦)。361:131 - 150。为了了解Pi瞬变在多大程度上依赖于应变,在Pi光解过程中,肌肉纤维以固定速度被激活并缩短或拉长。在肌肉长度变化期间观察到Pi瞬变表现出三个主要特征:1)在缩短过程中,Pi瞬变率Kpi增加,其幅度随缩短速度降低;Kpi随速度线性增加,在每秒0.3个肌肉长度(ML/s)时>110 s-1。2)在特定缩短速度下,[Pi]的增加会使Kpi增加,且与[Pi]呈非线性关系并接近渐近线。3)在强制拉长过程中,Kpi和Pi瞬变的幅度与等长收缩时几乎没有差异。这些数据可以用一个依赖应变的三态横桥模型来近似。结果表明动力冲程的速率依赖于应变,并且与生化研究一致,表明低应变下的限速步骤是从弱结合到强结合横桥状态的转变。

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