Kawai M
Biophys J. 1978 Apr;22(1):97-103. doi: 10.1016/S0006-3495(78)85473-3.
The mechanical response of fully activated muscle bundles (one to five fibers) to sinusoidal length perturbation ( approximately 0.4% L(0)) was studied as a function of MgATP concentration. The frequency response (0.25-167 Hz; corresponding to 1 ms time resolution) of chemically skinned rabbit muscle fibers was resolved into three exponential rate processes, (A), (B), and (C). At 20 degrees C, the apparent rate constants associated with the fast exponential lead (2pic = 388-588 s(-1)) and the oscillatory work (2pib = 59-116 s(-1)) both increase with increment of the MgATP concentration from 1 to 5 mM, and they both saturate for further increase. Over the whole range of MgATP concentrations the slow exponential lead (2pia = 9-7 s(-1)) remains constant. The effect of MgATP on processes (B) and (C) can be interpreted in the context of the biochemical evidence, in which MgATP enters the cross-bridge cycle after the desorption of the product, and the binding of MgATP to rigorlike cross-bridges promotes a rapid dissociation of actomyosin (Lymn and Taylor, 1971. Biochemistry.10:4617-4624.). The effect is not predicted by a model for force generation in which head rotation dominates the fast component ("stage 2" of Huxley and Simmons, 1971. Nature (Lond.).233:533-538. and 1973. Cold Spring Harbor Symp. Quant. Biol.37:669-680.), and head dissociation dominates the slow component ("phase 4" of Huxley, 1974. J. Physiol. (Lond.).243:1-43; Julian et al., 1974. Biophys. J.14: 546-562.).
研究了完全激活的肌束(1至5根纤维)对正弦长度扰动(约0.4%L(0))的力学响应与MgATP浓度的关系。对化学去膜的兔肌纤维的频率响应(0.25 - 167 Hz;对应1 ms时间分辨率)分解为三个指数速率过程,(A)、(B)和(C)。在20℃时,与快速指数超前(2πc = 388 - 588 s(-1))和振荡功(2πb = 59 - 116 s(-1))相关的表观速率常数均随MgATP浓度从1 mM增加到5 mM而增加,且进一步增加时两者均达到饱和。在整个MgATP浓度范围内,缓慢指数超前(2πa = 9 - 7 s(-1))保持恒定。MgATP对过程(B)和(C)的影响可以根据生化证据来解释,其中MgATP在产物解吸后进入横桥循环,并且MgATP与强直样横桥的结合促进肌动球蛋白的快速解离(Lymn和Taylor,1971年。《生物化学》。10:4617 - 4624)。这种效应无法用一种力产生模型来预测,该模型中头部旋转主导快速成分(Huxley和Simmons,1971年。《自然》(伦敦)。233:533 - 538;1973年。《冷泉港定量生物学研讨会》。37:669 - 680),且头部解离主导缓慢成分(Huxley,1974年。《生理学杂志》(伦敦)。243:1 - 43;Julian等人,1974年。《生物物理杂志》。14:546 - 562)。