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硬骨鱼松弛肌肉中的“晶体状”肌球蛋白横桥阵列。鲽鱼鳍肌的低角度X射线衍射及其解读。

"Crystalline" myosin cross-bridge array in relaxed bony fish muscle. Low-angle x-ray diffraction from plaice fin muscle and its interpretation.

作者信息

Harford J, Squire J

出版信息

Biophys J. 1986 Jul;50(1):145-55. doi: 10.1016/S0006-3495(86)83447-6.

DOI:10.1016/S0006-3495(86)83447-6
PMID:3730499
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1329667/
Abstract

Detailed structural analysis of muscles normally used to study myosin cross-bridge behavior (e.g., frog sartorius muscle, insect flight muscle) is extremely difficult due to the statistical disorder inherent in their myosin filament arrays. Bony fish muscle is different from all other muscle types in having a myosin filament (A-Band) array with good three-dimensional (crystalline) regularity that is coherent right across each myofibril. Rigorous structure analysis is feasible with fish muscle. We show that low-angle x-ray diffraction patterns from plaice fin muscle contain characteristic vertebrate layer lines at orders of 429 (+/- 0.2) A, that these layer lines are well sampled by row-lines from a simple hexagonal lattice of a-spacing 470 (+/- 2.0) A at rest length and that there are meridional reflections, due to axial perturbations of the basic helix of myosin heads, similar in position to those from frog muscle but differing in relative intensities. Clear trends based on modeling to a resolution of 130 A of the observed intensities in the low angle x-ray diffraction pattern from relaxed plaice fin muscle suggest that: (a) the pattern out to 130 A is more sensitive to the distribution of the two heads than it is to details of the head shape, (b) both heads in one myosin molecule probably tilt axially in the same direction by approximately 20-40 degrees relative to a normal to the thick filament backbone, (c) the center of mass of the heads is at 145 to 160 A radius, and (d) the two heads form a compact structure by lying closely adjacent to each other and almost parallel. Little rotational disorder of the heads can occur. Because of its crystallinity, bony fish muscle provides a uniquely useful structural probe of myosin cross-bridge behavior in other muscle states such as rigor and active contraction.

摘要

由于用于研究肌球蛋白横桥行为的肌肉(如青蛙缝匠肌、昆虫飞行肌)中肌球蛋白丝阵列存在固有的统计无序性,对其进行详细的结构分析极为困难。硬骨鱼肌肉与所有其他肌肉类型不同,其肌球蛋白丝(A带)阵列具有良好的三维(晶体)规则性,且在每个肌原纤维中都是连贯的。对鱼肌肉进行严格的结构分析是可行的。我们发现,鲽鱼鳍肌的低角度X射线衍射图案包含特征性的脊椎动物层线,其间距为429(±0.2)埃,这些层线在静止长度时被间距为470(±2.0)埃的简单六边形晶格的行线很好地采样,并且存在子午反射,这是由于肌球蛋白头部基本螺旋的轴向扰动引起的,其位置与青蛙肌肉的相似,但相对强度不同。基于对松弛的鲽鱼鳍肌低角度X射线衍射图案中观测强度进行分辨率为130埃的建模得出的明显趋势表明:(a)到130埃的图案对两个头部的分布比对头部形状的细节更敏感;(b)一个肌球蛋白分子中的两个头部可能相对于粗丝主干法线轴向朝同一方向倾斜约20 - 40度;(c)头部的质心半径在145至160埃;(d)两个头部紧密相邻且几乎平行,形成一个紧凑结构。头部几乎没有旋转无序。由于其结晶性,硬骨鱼肌肉为研究其他肌肉状态(如僵直和主动收缩)下的肌球蛋白横桥行为提供了独特而有用的结构探针。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6406/1329667/66b3b62df8fd/biophysj00177-0141-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6406/1329667/66b3b62df8fd/biophysj00177-0141-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6406/1329667/66b3b62df8fd/biophysj00177-0141-a.jpg

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本文引用的文献

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Fine structure of the A-band in cryo-sections. III. Crossbridge distribution and the axial structure of the human C-zone.冷冻切片中A带的精细结构。III. 横桥分布与人C区的轴向结构。
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Thick myofilament mass determination by electron scattering measurements with the scanning transmission electron microscope.
使用 X 射线衍射研究肌肉生理学的分析方法和质量标准。
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Mammalian muscle fibers may be simple as well as slow.哺乳动物的肌肉纤维可能既简单又缓慢。
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Lattice arrangement of myosin filaments correlates with fiber type in rat skeletal muscle.肌球蛋白纤维的晶格排列与大鼠骨骼肌的纤维类型相关。
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