Yagi Naoto
SPring-8/JASRI, Kouto, Sayo, Hyogo 679-5198, Japan.
Biophys J. 2007 Jan 1;92(1):162-71. doi: 10.1529/biophysj.106.090696. Epub 2006 Oct 6.
A time-resolved x-ray diffraction study at a time resolution of 0.53 ms was made to investigate the structural origin of latency relaxation (LR) in frog skeletal muscle. Intensity and spacing measurements were made on meridional reflections from the Ca-binding protein troponin and the thick filament and on layer lines from the thin filament. At 16 degrees C, the intensity and spacing of all reflections started to change at 4 ms, simultaneously with the LR. At 0 degrees C, the intensity of the troponin reflection and the layer lines from the thin filament and the spacing of the 14.3-nm myosin meridional reflection, but not the spacing of other myosin meridional reflections, began to change at approximately 15 ms, when the LR also started. Intensity of myosin-based reflections started to change later. When the muscle was stretched to non-overlap length, the intensity and spacing changes of the myosin reflections disappeared. The simultaneous spacing change of the 14.3-nm myosin meridional reflection with the LR suggests that detachment of myosin heads that are bound to actin in the resting muscle is the cause of the LR.
进行了一项时间分辨率为0.53毫秒的时间分辨X射线衍射研究,以探究青蛙骨骼肌中延迟松弛(LR)的结构起源。对来自钙结合蛋白肌钙蛋白和粗肌丝的子午线反射以及来自细肌丝的层线进行了强度和间距测量。在16摄氏度时,所有反射的强度和间距在4毫秒时开始变化,与LR同时出现。在0摄氏度时,肌钙蛋白反射的强度、来自细肌丝的层线以及14.3纳米肌球蛋白子午线反射的间距,但不是其他肌球蛋白子午线反射的间距,在大约15毫秒时开始变化,此时LR也开始出现。基于肌球蛋白的反射强度稍后开始变化。当肌肉被拉伸至非重叠长度时,肌球蛋白反射的强度和间距变化消失。14.3纳米肌球蛋白子午线反射与LR同时出现的间距变化表明,静息肌肉中与肌动蛋白结合的肌球蛋白头部的脱离是LR的原因。