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青蛙骨骼肌中两种电荷成分的差异特性。

Differential properties of two charge components in frog skeletal muscle.

作者信息

Hui C S

出版信息

J Physiol. 1983 Apr;337:531-52. doi: 10.1113/jphysiol.1983.sp014640.

Abstract

Charge movement in frog twitch muscle fibres bathed in a moderately hypertonic solution (containing 350 mM-sucrose) showed a main component (Q beta) and a secondary hump (Q gamma). Assuming that Q beta decays with a single exponential and Q gamma follows the time course of a symmetrical bell, a mathematical model was developed to separate Q gamma from Q beta. The activation curves of Q beta and Q gamma can be individually fitted by the two-state model of Schneider & Chandler (1973). The voltage distribution of Q gamma is approximately twice as steep as that of Q beta and the maximum moveable amount of Q beta about four times that of Q gamma. The decay rate constant of Q beta, expressed as a function of potential, follows the familiar U-shaped curve whereas the reciprocal of the time-to-peak of Q gamma rises linearly with increasing potentials. Application of the mathematical dissection technique to Qon values in solutions of varying concentrations of tetracaine yielded the dose dependence of the suppression of Q gamma by tetracaine. Q gamma inactivates more steeply than Q beta as the holding potential is made less negative. Each of the steady-state inactivation curves of Q beta and Q gamma forms a mirror image with the respective activation curve. It is speculated that Q gamma might be more directly involved than Q beta in triggering calcium release and activating contraction.

摘要

在适度高渗溶液(含350 mM蔗糖)中浸泡的青蛙单收缩肌纤维中的电荷移动显示出一个主要成分(Qβ)和一个次要峰(Qγ)。假设Qβ以单指数形式衰减且Qγ遵循对称钟形的时间进程,开发了一个数学模型来将Qγ与Qβ分离。Qβ和Qγ的激活曲线可以分别用Schneider和Chandler(1973年)的双态模型进行拟合。Qγ的电压分布斜率约为Qβ的两倍,且Qβ的最大可移动量约为Qγ的四倍。以电位函数表示的Qβ的衰减速率常数遵循常见的U形曲线,而Qγ的峰值时间的倒数则随电位增加呈线性上升。将数学剖析技术应用于不同浓度丁卡因溶液中的Qon值,得出了丁卡因对Qγ抑制的剂量依赖性。随着保持电位变得不那么负,Qγ比Qβ更陡峭地失活。Qβ和Qγ的每个稳态失活曲线都与各自的激活曲线形成镜像。据推测,与Qβ相比,Qγ可能更直接地参与触发钙释放和激活收缩。

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