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原肌球蛋白晶体结构与肌肉调节。

Tropomyosin crystal structure and muscle regulation.

作者信息

Phillips G N, Fillers J P, Cohen C

出版信息

J Mol Biol. 1986 Nov 5;192(1):111-31. doi: 10.1016/0022-2836(86)90468-7.

Abstract

The crystal structure of tropomyosin filaments has been solved to 15 A resolution by refinement of models against the diffraction data and heavy atom labeling of cysteine residues. These results confirm and extend earlier findings. The improved maps reveal the pitch of the coiled coil, the location of the cysteine residues, and the location and features of the overlapping molecular ends in the filaments. A correlation can now be made between regions of the amino acid sequence and key features of the molecule, such as contact sites in the lattice and departures from regularity along the coiled coil. The crystal shows remarkable dynamic features and the relative flexibility of different parts of the molecule as well as its anisotropic character have been determined. The structure and motions of tropomyosin in the crystal provide information on the structure of tropomyosin in muscle and its possible role in regulation. An atomic model of the molecule has been constructed, based on the low resolution X-ray results, together with the stereochemistry of alpha-helical coiled coils. In contrast to previous views, the molecule appears to display but one set of seven alpha-sites that permit weak linkages of the flexible tropomyosin filament to the actin helix. Correspondingly, we picture that in the "off" state of ATPase activity, the alpha-sites are not occupied; in the "on" state, they are only partly occupied; and in the "potentiated" state, they are more completely saturated. Control of contraction is therefore seen as a statistical mechanism requiring at least three distinct average conformations for the tropomyosin molecule on the actin helix.

摘要

通过根据衍射数据对模型进行精修以及对半胱氨酸残基进行重原子标记,原肌球蛋白丝的晶体结构已解析到15埃的分辨率。这些结果证实并扩展了早期的发现。改进后的图谱揭示了卷曲螺旋的螺距、半胱氨酸残基的位置以及丝中重叠分子末端的位置和特征。现在可以在氨基酸序列区域与分子的关键特征之间建立关联,例如晶格中的接触位点以及沿卷曲螺旋偏离规则性的情况。该晶体显示出显著的动态特征,并且已经确定了分子不同部分的相对柔韧性及其各向异性特征。晶体中原肌球蛋白的结构和运动提供了有关肌肉中原肌球蛋白结构及其在调节中可能作用的信息。基于低分辨率X射线结果以及α-螺旋卷曲螺旋的立体化学,构建了该分子的原子模型。与先前的观点相反,该分子似乎仅显示一组七个α位点,这些位点允许柔性原肌球蛋白丝与肌动蛋白螺旋形成弱连接。相应地,我们设想在ATP酶活性的“关闭”状态下,α位点未被占据;在“开启”状态下,它们仅部分被占据;而在“增强”状态下,它们更完全地饱和。因此,收缩的控制被视为一种统计机制,原肌球蛋白分子在肌动蛋白螺旋上至少需要三种不同的平均构象。

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