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肌肉中的动态刚度和横桥作用

Dynamic stiffness and crossbridge action in muscle.

作者信息

Mason P

出版信息

Biophys Struct Mech. 1977 Dec 27;4(1):15-25. doi: 10.1007/BF00538837.

Abstract

Small sinusoidal vibrations at 300 HZ were applied to frog sartorius muscle to measure the dynamic stiffness (Young's modulus) throughout the course of tetanus. For a peak-to-peak amplitude of 0.4% the dynamic Young's modulus increased from 1.5 X 10(5) Nm-2 in the resting state to 2 X 10(7) Nm-2 in tetanus. After correction for the external connective tissue, the dynamic Young's modulus of the muscle was almost directly proportional to the tension throughout the development of tetanus. The ratio of dynamic Young's modulus to tensile stress thus remained constant (with a value at 300 Hz of approximately 100), consistently with Huxley and Simmon's identification of the crossbridges as the source of both tension and stiffness. For a single crossbridge the ratio of stiffness to tension was 8.2 X 10(7) m-1 at 300 Hz; it is deduced from literature data that the limiting value at high frequencies is about 1.6 X 10(8) m-1. This ratio is interpreted on Harrington's (1971) model to show that crossbridge action can be explained by a helix-coil transition of about 80 out of the 260 residues in each S-2 myosin strand. It is also shown that a helix-coil model can account for the observed rapid relaxation of muscle without invoking any complex behaviour of the crossbridge head.

摘要

对青蛙缝匠肌施加300赫兹的小正弦振动,以测量强直收缩过程中的动态刚度(杨氏模量)。对于峰峰值幅度为0.4%的情况,动态杨氏模量从静息状态下的1.5×10⁵牛顿每平方米增加到强直收缩时的2×10⁷牛顿每平方米。在对外部结缔组织进行校正后,肌肉的动态杨氏模量在强直收缩发展过程中几乎与张力成正比。因此,动态杨氏模量与拉伸应力的比值保持恒定(在300赫兹时约为100),这与赫胥黎和西蒙斯将横桥确定为张力和刚度来源的观点一致。对于单个横桥,在300赫兹时刚度与张力的比值为8.2×10⁷米⁻¹;从文献数据推断,高频时的极限值约为1.6×10⁸米⁻¹。根据哈林顿(1971年)的模型对该比值进行解释,表明横桥作用可以通过每个肌球蛋白S - 2链中260个残基中约80个残基的螺旋 - 线圈转变来解释。还表明,螺旋 - 线圈模型可以解释观察到的肌肉快速松弛现象,而无需调用横桥头的任何复杂行为。

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