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lnterference fine structure and sarcomere length dependence of the axial x-ray pattern from active single muscle fibers

机译:活性单肌纤维的轴向X射线图对精细结构和肌节长度的依赖性

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AXial x-ray diffraction patterns from single intact fibers of frog skeletal muscle were recorded by using a highly collimated x-ray beam at the European Synchrotron Radiation Facility. During isometric contraction at sarcomere lengths 2.2--3.2 pm, the M3 x-ray reflection, associated with the repeat of myosin heads along the filaments, was resolved into two peaks. The total M3 intensity decreased linearly with increasing sarcomere length and was directly proportional to the degree of overlap between myosin and actin filaments, showing that it comes from myosin heads in the overlap region. The separation between the M3 peaks was smaller at longer sarcomere length and was quantitatively explained by x-ray interference between myosin heads in the two overlap regions of each sarcomere. The relative intensity of the M3 peaks was independent of sarcomere length. showing that the axial periodicities of the nonoverlap and overlap regions of the myosin filament have the same value, 14.57 nm. during active contraction. In resting fibers the periodicity is 14.34 nm, so muscle activation produces a change in myosin filament structure in the nonoverlap as well as the overlap part of the filament. The results establish x-ray interferometry as a new tool for studying the motions of myosin heads during muscle contraction with unprecedented spa- tial resolution.
机译:通过在欧洲同步辐射器上使用高度准直的X射线束记录了青蛙骨骼肌的单个完整纤维的AXIAL X射线衍射图。在肌节长度为2.2--3.2 pm的等距收缩过程中,与肌球蛋白头沿细丝重复相关的M3 X射线反射被分解为两个峰。随着肌节长度的增加,总的M3强度呈线性下降,并且与肌球蛋白和肌动蛋白丝之间的重叠程度成正比,表明它来自重叠区域的肌球蛋白头部。在较长的肌节长度处,M3峰之间的间隔较小,并且通过每个肌节的两个重叠区域中的肌球蛋白头之间的X射线干扰进行了定量解释。 M3峰的相对强度与肌节长度无关。表明肌球蛋白丝的非重叠和重叠区域的轴向周期性具有相同的值14.57 nm。在主动收缩过程中。在静止的纤维中,周期性为14.34 nm,因此肌肉激活会在非重叠以及细丝的重叠部分产生肌球蛋白细丝结构的变化。结果将X射线干涉术确立为研究肌肉收缩过程中肌球蛋白头运动的新工具,具有空前的空间分辨率。

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