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20摄氏度下青蛙缝匠肌单次等长强直收缩后的耗氧动力学。

Kinetics of oxygen consumption after a single isometric tetanus of frog sartorius muscle at 20 degrees C.

作者信息

Mahler M

出版信息

J Gen Physiol. 1978 May;71(5):559-80. doi: 10.1085/jgp.71.5.559.

Abstract

The time-course of the rate of oxygen consumption (QO2) has been measured in the excised frog sartorius muscle after single isometric tetani of 0.1-1.0 s at 20 degrees C. To measure deltaQO2(t), the change in QO2 from its basal level, a novel method was devised, based on the validity in this tissue of the one-dimensional diffusion equation for oxygen, established in the preceding paper. After a tetanus, deltaQO2 reached a peak within 45-90 s, then declined exponentially, and could be well fit by deltaQO2(t) = QO + Q1(epsilon -k1t - epsilon-k2t). tau2 (= 1/k2), which characterized the rise of deltaQO2, was a decreasing function of tetanus duration (range: from 1.1 +/- 0.28 min [nu = 5] for a 0.1-s tetanus, to 0.34 +/- 0.05 min [nu = 8] for a 1.0-sec tetanus). tau1 (= 1/k1), which characterized the decline of deltaQO2, was not dependent on tetanus duration, with mean 3.68 +/- -.24 min (nu = 46). A forthcoming paper in this series shows that these kinetics of deltaQO2 are the responses to impulse-like changes in the rate of ATP hydrolysis. The variation of tau2 with tetanus duration thus indicates the involvement of a nonlinear process in the coupling of O2 consumption to ATP hydrolysis. However, the monoexponential decline of deltaQO2(t), with time constant independent of tetanus duration, suggests that during this phase, the coupling is rate-limited by a single reaction with apparent first order kinetics.

摘要

在20摄氏度下,对离体青蛙缝匠肌进行0.1 - 1.0秒的单次等长强直收缩后,测量了氧气消耗速率(QO2)随时间的变化过程。为了测量ΔQO2(t),即QO2相对于其基础水平的变化,基于前一篇论文中确立的该组织中氧气一维扩散方程的有效性,设计了一种新方法。强直收缩后,ΔQO2在45 - 90秒内达到峰值,然后呈指数下降,并且可以很好地拟合为ΔQO2(t) = QO + Q1(ε -k1t - ε -k2t)。表征ΔQO2上升的τ2(= 1/k2)是强直收缩持续时间的递减函数(范围:0.1秒强直收缩时为1.1±0.28分钟[ν = 5],1.0秒强直收缩时为0.34±0.05分钟[ν = 8])。表征ΔQO2下降的τ1(= 1/k1)不依赖于强直收缩持续时间,平均值为3.68±0.24分钟(ν = 46)。本系列即将发表的一篇论文表明,这些ΔQO2的动力学是对ATP水解速率类似脉冲变化的响应。因此,τ2随强直收缩持续时间的变化表明,在氧气消耗与ATP水解的偶联中涉及一个非线性过程。然而,ΔQO2(t)的单指数下降,其时间常数与强直收缩持续时间无关,表明在这个阶段,偶联受具有明显一级动力学的单一反应的速率限制。

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