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基于最大热力学效率估算横桥刚度。

Estimation of cross-bridge stiffness from maximum thermodynamic efficiency.

作者信息

Barclay C J

机构信息

Department of Physiology, Monash University, Clayton, Victoria, Australia.

出版信息

J Muscle Res Cell Motil. 1998 Nov;19(8):855-64. doi: 10.1023/a:1005409708838.

Abstract

In muscle, work is performed by myosin cross-bridges during interactions with actin filaments. The amount of work performed during each interaction can be related to the mechanical properties of the cross-bridge; work is the integral of the force produced with respect to the distance that the cross-bridge moves the actin filament, and force is determined by the stiffness of the attached cross-bridge. In this paper, cross-bridge stiffness in frog sartorius muscle was estimated from thermodynamic efficiency (work/free energy change) using a two-state cross-bridge model, assuming constant stiffness over the working range and tight-coupling between cross-bridge cycles and ATP use. This model accurately predicts mechanical efficiency (work/enthalpy output). A critical review of the literature indicates that a realistic value for maximum thermodynamic efficiency of frog sartorius is 0.45 under conditions commonly used in experiments on isolated muscle. Cross-bridge stiffness was estimated for a range of power stroke amplitudes. For realistic amplitudes (10-15 nm), estimated cross-bridge stiffness was between 1 and 2.2 pN nm-1. These values are similar to those estimated from quick-release experiments, taking into account compliance arising from structures other than cross-bridges, but are substantially higher than those from isolated protein studies. The effects on stiffness estimates of relaxing the tight-coupling requirement and of incorporating more force-producing cross-bridge states are also considered.

摘要

在肌肉中,肌球蛋白横桥与肌动蛋白丝相互作用时会做功。每次相互作用期间所做的功量可能与横桥的力学特性有关;功是横桥使肌动蛋白丝移动的距离上产生的力的积分,而力由附着的横桥的刚度决定。在本文中,利用两态横桥模型,根据热力学效率(功/自由能变化)估算了青蛙缝匠肌中的横桥刚度,假设在工作范围内刚度恒定,且横桥循环与ATP利用之间紧密耦合。该模型准确预测了机械效率(功/焓输出)。对文献的批判性综述表明,在离体肌肉实验常用的条件下,青蛙缝匠肌的最大热力学效率的实际值为0.45。针对一系列动力冲程幅度估算了横桥刚度。对于实际幅度(10 - 15纳米),估算的横桥刚度在1至2.2皮牛每纳米之间。考虑到横桥以外结构产生的顺应性,这些值与通过快速释放实验估算的值相似,但远高于离体蛋白质研究的值。还考虑了放宽紧密耦合要求以及纳入更多产生力的横桥状态对刚度估算的影响。

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