首页> 美国卫生研究院文献>The Journal of General Physiology >First-order kinetics of muscle oxygen consumption and an equivalent proportionality between QO2 and phosphorylcreatine level. Implications for the control of respiration
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First-order kinetics of muscle oxygen consumption and an equivalent proportionality between QO2 and phosphorylcreatine level. Implications for the control of respiration

机译:肌肉耗氧量的一级动力学以及QO2和磷酸肌酸水平之间的等价比例。对呼吸控制的意义

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摘要

In frog sartorius muscle, after a tetanus at 20 degrees C, during which an impulse-like increase occurs in the rate of ATP hydrolysis, the rate of O2 consumption (QO2) reaches a peak relatively quickly and then declines monoexponentially, with a time constant not dependent on the tetanus duration (tau = 2.6 min in Rana pipiens and 2.1 min in Rana temporaria). To a good approximation, these kinetics are those of a first-order impulse response, and the scheme of reactions that couple O2 consumption to extramitochondrial ATP hydrolysis thus behaves as a first-order system. It is first deduced and then demonstrated directly that while QO2(t) is monoexponential, it changes in parallel with the levels of creatine and phosphorylcreatine, with proportionality constants +/- 1/tau p, where p is the P/O2 ratio in vivo. From this, it is further deduced that the mitochondrial creatine kinase (CK) reaction is pseudo-first order in vivo. The relationship between [creatine] and QO2 predicted by published models of the control of respiration is markedly different from that actually observed. As shown here, the first-order kinetics of QO2 are consistent with the hypothesis that respiration is rate-limited by the mitochondrial CK reaction; this has as a corollary the "creatine shuttle" hypothesis.
机译:在青蛙缝线肌中,在20°C的破伤风之后,在此过程中,ATP水解速率呈脉冲状增加,O2消耗速率(QO2)相对较快地达到峰值,然后以时间常数呈指数下降。不依赖于破伤风的持续时间(piaens中的tau = 2.6分钟,temporaria中的tau = 2.1分钟)。近似而言,这些动力学是一阶冲激响应的动力学,因此将O2消耗与线粒体ATP水解耦合的反应方案表现为一阶系统。它首先被推论,然后直接证明,尽管QO2(t)是单指数的,但它与肌酸和磷酸肌酸的水平平行变化,比例常数为+/- 1 / tau p,其中p是体内的P / O2比。据此,进一步推断线粒体肌酸激酶(CK)反应在体内是假一级。由发布的呼吸控制模型预测的[肌酸]与QO2之间的关系与实际观察到的明显不同。如此处所示,QO2的一级动力学与以下假设相符:呼吸受线粒体CK反应限制。由此推论“肌酸穿梭”假说。

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