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在横桥转换动力学无变化的情况下增强力量:EMD 57033的作用

Force enhancement without changes in cross-bridge turnover kinetics: the effect of EMD 57033.

作者信息

Kraft T, Brenner B

机构信息

Department of Clinical Physiology, Medical School Hannover, Germany.

出版信息

Biophys J. 1997 Jan;72(1):272-81. doi: 10.1016/S0006-3495(97)78666-1.

Abstract

The thiadiazinon derivative EMD 57033 has been found previously in cardiac muscle to increase isometric force generation without a proportional increase in fiber ATPase, thus causing a reduction in tension cost. To analyze the mechanism by which EMD 57033 affects the contractile system, we studied its effects on isometric force, isometric fiber ATPase, the rate constant of force redevelopment (k(redev)), active fiber stiffness, and its effect on Fo, which is the force contribution of a cross-bridge in the force-generating states. We used chemically skinned fibers of the rabbit psoas muscle. It was found that with 50 microM EMD 57033, isometric force increases by more than 50%, whereas Kredev, active stiffness, and isometric fiber ATPase increase by at most 10%. The results show that EMD 57033 causes no changes in cross-bridge turnover kinetics and no changes in active fiber stiffness that would result in a large enough increase in occupancy of the force-generating states to account for the increase in active force. However, plots of force versus length change recorded during stretches and releases (T plots) indicate that in the presence of EMD 57033 the y(o) value (x axis intercept) for the cross-bridges becomes more negative while its absolute value increases. This might suggest a larger cross-bridge strain as the basis for increased active force. Analysis of T plots with and without EMD 57033 shows that the increase in cross-bridge strain is not due to a redistribution of cross-bridges among different force-generating states favoring states of larger strain. Instead, it reflects an increased cross-bridge strain in the main force-generating state. The direct effect of EMD 57033 on the force contribution of cross-bridges in the force-generating states represents an alternative mechanism for a positive inotropic intervention.

摘要

先前已发现噻二嗪农衍生物EMD 57033可使心肌的等长力产生增加,而纤维ATP酶却没有相应增加,从而导致张力消耗降低。为分析EMD 57033影响收缩系统的机制,我们研究了其对等长力、等长纤维ATP酶、力重建速率常数(k(redev))、活性纤维刚度的影响,以及它对F0的影响,F0是处于产生力状态的横桥的力贡献。我们使用了兔腰大肌的化学去表皮纤维。结果发现,使用50微摩尔EMD 57033时,等长力增加超过50%,而k(redev)、活性刚度和等长纤维ATP酶最多增加10%。结果表明,EMD 57033不会引起横桥周转动力学的变化,也不会引起活性纤维刚度的变化,而活性纤维刚度的变化会导致产生力状态的占有率有足够大的增加,从而解释主动力的增加。然而,在拉伸和释放过程中记录的力与长度变化的曲线(T曲线)表明,在存在EMD 57033的情况下,横桥的y(o)值(x轴截距)变得更负,而其绝对值增加。这可能表明更大的横桥应变是主动力增加的基础。对有和没有EMD 57033的T曲线分析表明,横桥应变的增加不是由于横桥在不同产生力状态之间的重新分布有利于更大应变状态。相反,它反映了主要产生力状态下横桥应变的增加。EMD 57033对处于产生力状态的横桥的力贡献的直接影响代表了一种正性肌力干预的替代机制。

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