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松弛状态下青蛙骨骼肌的质量分布及其激活后的重新分布。

Distribution of mass in relaxed frog skeletal muscle and its redistribution upon activation.

作者信息

Yu L C, Steven A C, Naylor G R, Gamble R C, Podolsky R J

出版信息

Biophys J. 1985 Mar;47(3):311-21. doi: 10.1016/S0006-3495(85)83921-7.

Abstract

Five orders of equatorial reflection were recorded from both relaxed and fully activated intact frog sartorius muscle using synchrotron x-ray radiation. Electron density maps of the myofilament lattice in axial projection were calculated from the integrated intensities by Fourier synthesis, using all possible phase combinations. These maps were evaluated systematically in terms of their compatibility with electron microscopically and biochemically derived properties of the lattice structure and with the minimum wavelength principle. For the relaxed state, one phase combination emerged as most consistent with these constraints: it shows a thick filament with a compact core surrounded by an annular shell of density. The distribution of mass suggests that the S-2 moiety of the myosin molecule is an integral part of the thick-filament backbone and the S-1 moiety makes up the shell and is tilted or slewed around the backbone. For the active state, there are two feasible maps, which differ according to whether or not the activation process is associated with phase inversion in two of the reflections. Both maps represent patterns of redistribution of mass upon activation in which the thick-filament backbone is practically unaffected and there is movement of density from the annular shell towards the thin filaments. In addition to this outward radial flux of density from the thick-filament periphery, the pattern of net mass transfer involves a pronounced azimuthal component in both cases. The total net mass transfer is equivalent to approximately 20% (no phase change) or approximately 40% (with phase change) of the S-1 mass. From the observed systematic increase in peak widths of the higher orders, the size of the crystalline domain in the myofilament lattice in the relaxed sartorius is estimated to be greater than 650 nm and the variations in myofilament lattice spacing among different myofibrils to be about +/- 3%. Furthermore, in the activated state, the equilibrium positions of the myofilaments are no longer well ordered, but are distributed statistically about the lattice points with a standard deviation of approximately 3 nm.

摘要

使用同步加速器X射线辐射,从松弛和完全激活的完整青蛙缝匠肌中记录了五级赤道反射。通过傅里叶合成,利用所有可能的相位组合,从积分强度计算出肌丝晶格轴向投影的电子密度图。根据这些图与晶格结构的电子显微镜和生化特性以及最小波长原理的兼容性,对其进行了系统评估。对于松弛状态,一种相位组合与这些约束最为一致:它显示出一条粗肌丝,其紧密的核心被一个密度环形壳包围。质量分布表明,肌球蛋白分子的S-2部分是粗肌丝主干的一个组成部分,而S-1部分构成外壳,并围绕主干倾斜或扭转。对于激活状态,有两种可行的图,它们根据激活过程是否与两次反射中的相位反转相关而有所不同。两种图都代表了激活时质量重新分布的模式,其中粗肌丝主干实际上未受影响,并且密度从环形壳向细肌丝移动。除了从粗肌丝外围向外的径向密度通量外,两种情况下净质量转移模式都涉及明显的方位角分量。总净质量转移相当于S-1质量的约20%(无相位变化)或约40%(有相位变化)。从观察到的高阶峰宽的系统性增加,估计松弛缝匠肌中肌丝晶格中晶域的大小大于650nm,不同肌原纤维之间肌丝晶格间距的变化约为±3%。此外,在激活状态下,肌丝的平衡位置不再排列良好,而是围绕晶格点呈统计分布,标准偏差约为3nm。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b39e/1435205/49f8d82f0b2e/biophysj00194-0059-a.jpg

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