Lombardi Vincenzo, Piazzesi Gabriella, Reconditi Massimo, Linari Marco, Lucii Leonardo, Stewart Alex, Sun Yin-Biao, Boesecke Peter, Narayanan Theyencheri, Irving Tom, Irving Malcolm
Laboratorio di Fisiologia, DBAG, Universitá di Firenze, I-50134 Firenze, Italy.
Philos Trans R Soc Lond B Biol Sci. 2004 Dec 29;359(1452):1883-93. doi: 10.1098/rstb.2004.1557.
The molecular mechanism of muscle contraction was investigated in intact muscle fibres by X-ray diffraction. Changes in the intensities of the axial X-ray reflections produced by imposing rapid changes in fibre length establish the average conformation of the myosin heads during active isometric contraction, and show that the heads tilt during the elastic response to a change in fibre length and during the elementary force generating process: the working stroke. X-ray interference between the two arrays of myosin heads in each filament allows the axial motions of the heads following a sudden drop in force from the isometric level to be measured in situ with unprecedented precision. At low load, the average working stroke is 12 nm, which is consistent with crystallographic studies. The working stroke is smaller and slower at a higher load. The compliance of the actin and myosin filaments was also determined from the change in the axial spacings of the X-ray reflections following a force step, and shown to be responsible for most of the sarcomere compliance. The mechanical properties of the sarcomere depend on both the motor actions of the myosin heads and the compliance of the myosin and actin filaments.
通过X射线衍射研究了完整肌纤维中肌肉收缩的分子机制。通过对纤维长度进行快速改变,从而产生轴向X射线反射强度的变化,以此确定主动等长收缩过程中肌球蛋白头部的平均构象,并表明在对纤维长度变化的弹性反应以及基本力产生过程(即工作行程)中,头部会发生倾斜。每条肌丝中两排肌球蛋白头部之间的X射线干涉,使得在力从等长水平突然下降后,能够以前所未有的精度原位测量头部的轴向运动。在低负荷下,平均工作行程为12纳米,这与晶体学研究结果一致。在较高负荷下,工作行程更小且更慢。肌动蛋白丝和肌球蛋白丝的顺应性也由力阶跃后X射线反射轴向间距的变化确定,并表明其是肌节顺应性的主要原因。肌节的力学特性既取决于肌球蛋白头部的运动作用,也取决于肌球蛋白丝和肌动蛋白丝的顺应性。