Schoenberg M
Biophys J. 1980 Apr;30(1):51-67. doi: 10.1016/S0006-3495(80)85076-4.
The influence of geometry on the force and stiffness measured during muscle contraction at different sarcomere lengths is examined by using three specific models of muscle cross-bridge geometry which are based upon the double-hinge model of H. E. Huxley (Science [Wash. D.C.]. 1969, 164:1356-1366) extended to three dimensions. The force generated during muscle contraction depends upon the orientation of the individual cross-bridge force vectors and the distribution of the cross-bridges between various states. For the simplest models, in which filament separation has no effect upon cross-bridge distribution, it is shown that changes in force vectors accompanying changes in myofilament separation between sarcomere lengths 2.0 and 3.65 microgram in an intact frog skeletal muscle fiber have only a small effect upon axial force. The simplest models, therefore, produce a total axial force proportional to the overlap between the actin and myosin filaments and independent of filament separation. However, the analysis shows that it is possible to find assumptions that produce a cross-bridge model in which the axial force is not independent of filament spacing. It is also shown that for some modes of attachment of subfragment-1 (S1) to actin the azimuthal location of the actin site is important in determining the axial force. A mode of S1 attachment to actin similar to that deduced by Moore et al. (J. Mol. Biol., 1970, 50:279-294), however, exhibits rather constant cross-bridge behavior over a wide range of actin site location.
通过使用三种基于H. E. 赫胥黎(《科学》[华盛顿特区],1969年,164卷:1356 - 1366页)的双铰链模型并扩展到三维的肌肉横桥几何结构的特定模型,研究了几何结构对在不同肌节长度的肌肉收缩过程中所测量的力和刚度的影响。肌肉收缩过程中产生的力取决于各个横桥力矢量的方向以及横桥在不同状态之间的分布。对于最简单的模型,即细丝间距对横桥分布没有影响的模型,研究表明,在完整青蛙骨骼肌纤维中,肌节长度在2.0和3.65微米之间变化时,伴随肌丝间距变化的力矢量变化对轴向力的影响很小。因此,最简单的模型产生的总轴向力与肌动蛋白和肌球蛋白细丝之间的重叠成正比,并且与细丝间距无关。然而,分析表明,有可能找到一些假设,从而产生一种轴向力不独立于细丝间距的横桥模型。研究还表明,对于亚片段 - 1(S1)与肌动蛋白的某些附着模式,肌动蛋白位点的方位位置在确定轴向力方面很重要。然而,一种类似于摩尔等人(《分子生物学杂志》,1970年,50卷:279 - 294页)推导的S1与肌动蛋白的附着模式,在肌动蛋白位点位置的广泛范围内表现出相当恒定的横桥行为。