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对赫胥黎横桥模型中钙激活的重新审视。

A re-examination of calcium activation in the Huxley cross-bridge model.

作者信息

Zahalak G I, Motabarzadeh I

机构信息

Department of Mechanical Engineering, Washington University, St. Louis, MO 63130, USA.

出版信息

J Biomech Eng. 1997 Feb;119(1):20-9. doi: 10.1115/1.2796060.

Abstract

This paper investigates mathematical relations between models of calcium activation kinetics and Huxley-type models of cross-bridge dynamics in muscle. It is found that different calcium-activation schemes lead to the same form of generalized Huxley rate equation with calcium activation. [formula: see text] if it is assumed that calcium-troponin interaction rates are fast compared to the rates of transition associated with force-generating cross-bridge states. Calcium affects cross-bridge dynamics by modifying the bonding rate f, but does not affect the number of interacting cross bridges a or the unbonding rate g; this occurs through the appearance in the equation of an activation factor, r, which is a pure function of sarcoplasmic free calcium concentration. In particular, it is shown that both the "tight-coupling" and "loose-coupling" calcium-activation schemes introduced by Zahalak and Ma [1] lead to the same rate equation with the same activation factor; the difference between them appears in the calcium mass-balance equation. While both of these activation models can be made to fit simple twitch and force-velocity data equally well, experimentally observed load-dependent shifts in the free calcium concentration are compatible with the right-coupling scheme, but not with loose coupling.

摘要

本文研究了肌肉中钙激活动力学模型与横桥动力学的赫胥黎型模型之间的数学关系。研究发现,如果假设钙与肌钙蛋白的相互作用速率比与产生力的横桥状态相关的转变速率快,那么不同的钙激活方案会导致具有钙激活的广义赫胥黎速率方程具有相同的形式。[公式:见正文]钙通过改变结合速率f来影响横桥动力学,但不影响相互作用的横桥数量a或解离速率g;这是通过方程中一个激活因子r的出现而发生的,r是肌浆游离钙浓度的纯函数。特别地,研究表明,扎哈拉克和马[1]提出的“紧密耦合”和“松散耦合”钙激活方案都导致具有相同激活因子的相同速率方程;它们之间的差异出现在钙质量平衡方程中。虽然这两种激活模型都可以同样好地拟合简单的单收缩和力-速度数据,但实验观察到的游离钙浓度随负荷的变化与紧密耦合方案兼容,而与松散耦合不兼容。

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