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肌球蛋白丝。X. 横切面中九条亚丝的观察。

The myosin filament. X. Observation of nine subfilaments in transverse sections.

作者信息

Pepe F A, Ashton F T, Street C, Weisel J

出版信息

Tissue Cell. 1986;18(4):499-508. doi: 10.1016/0040-8166(86)90016-9.

Abstract

The molecular packing of the subfilaments in muscle thick filaments has been investigated by electron microscopy. Thin (80-100 nm) transverse sections of vertebrate skeletal muscle were cut, and 129 electron microscope images of thick filaments from 15 different areas including seven to ten images in each area were analyzed by computer image processing. The transverse sections were limited to the portion of the filaments between the bare zone and the C-protein bearing region. Of the 129 images, six were discarded because they were structurally disrupted, 17 did not show evidence for the presence of subfilaments from the autocorrelation function, and four did not show evidence for three-fold rotational symmetry from the power spectrum. The remaining 102 filaments all showed evidence for three-fold rotational symmetry, consistent with other available evidence (Pepe, 1982). From the analysis of these images by rotational filtering, we have found that the vertebrate skeletal myosin filament is made up of nine subfilaments and that the image appears to have trigonal symmetry. Of these subfilaments, six are arranged with a center-to-center spacing of about 4 nm and the other three on the surface of the filament are distorted from this arrangement. Three additional densities, which together with the other nine, correspond to the pattern of 12 densities previously observed in more highly selected images (Stewart et al., 1981; Pepe and Drucker, 1972) were observed in 5% of the images. Another pattern of nine subfilaments peripherally arranged around the circumference of the filament was observed occasionally. This latter image may represent the organization of the subfilaments in the bare zone region of the filament, resulting from sampling of individual filaments displaced longitudinally relative to the other filaments in the A-band.

摘要

通过电子显微镜对肌肉粗肌丝中细肌丝的分子堆积进行了研究。切取脊椎动物骨骼肌的薄(80 - 100纳米)横向切片,并通过计算机图像处理分析了来自15个不同区域的129张粗肌丝的电子显微镜图像,每个区域有7到10张图像。横向切片限于肌丝在裸露区和含C蛋白区域之间的部分。在这129张图像中,6张因结构破坏而被丢弃,17张自相关函数未显示细肌丝存在的证据,4张功率谱未显示三重旋转对称性的证据。其余102根肌丝均显示出三重旋转对称性的证据,与其他现有证据一致(佩佩,1982年)。通过旋转滤波对这些图像进行分析,我们发现脊椎动物骨骼肌肌球蛋白丝由9根细肌丝组成,且图像似乎具有三角对称性。在这些细肌丝中,6根以中心间距约4纳米排列,而细丝表面的另外3根则偏离了这种排列。在5%的图像中观察到另外三种密度,它们与其他九种密度一起,对应于先前在更精选图像中观察到的12种密度模式(斯图尔特等人,1981年;佩佩和德鲁克,1972年)。偶尔还观察到另一种由9根细肌丝围绕细丝圆周周边排列的模式。后一种图像可能代表细丝裸露区区域中细肌丝的组织,这是由于相对于A带中其他细丝纵向移位的单个细丝采样所致。

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