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扇贝横纹肌肌球蛋白丝的电子显微镜观察与图像分析

Electron microscopy and image analysis of myosin filaments from scallop striated muscle.

作者信息

Vibert P, Craig R

出版信息

J Mol Biol. 1983 Apr 5;165(2):303-20. doi: 10.1016/s0022-2836(83)80259-9.

Abstract

Thick filaments have been isolated from the striated adductor muscle of the scallop and examined by electron microscopy after negative staining. Many filaments appear intact, and reveal a centrally located bare-zone and a well-defined helical surface array of myosin crossbridges characterized by a 145 A axial period and prominent helical tracks of pitch 480 A. Heavy-metal shadowing shows that these helices are right-handed. A small perturbation of alternate crossbridge levels produces an axial period of 290 A, which is most prominent in a region on either side of the bare-zone. Image analysis reveals that the crossbridge array has 7-fold rotational symmetry, one of the possibilities suggested by earlier X-ray diffraction studies of native filaments in scallop muscle. A low-resolution three-dimensional reconstruction shows elongated surface projections ("crossbridges") that probably represent unresolved pairs of myosin heads. They run almost parallel to the filament surface, but are slewed slightly from the axis so that they lie along the right-handed helical tracks of pitch 480 A. The connection to the filament backbone probably occurs at the end of the crossbridges nearer the bare-zone; thus, their sense of tilt appears to be opposite to that of rigor attachment to actin. The 290 A period arises from a different distribution of crossbridge density at alternate levels; in addition, there are weak connections between the top of one crossbridge and the bottom of the next, 145 A away. The prominence of the 290 A period near the bare-zone suggests that anti-parallel molecular interactions are mainly responsible for this perturbation.

摘要

已从扇贝的横纹内收肌中分离出粗肌丝,并在负染后通过电子显微镜进行了检查。许多肌丝看起来完整无损,显示出位于中央的无横桥区以及明确定义的肌球蛋白横桥螺旋表面阵列,其特征为轴向周期为145埃,螺距为480埃的明显螺旋轨迹。重金属投影显示这些螺旋是右手螺旋。交替横桥水平的微小扰动会产生290埃的轴向周期,这在无横桥区两侧的区域最为明显。图像分析表明,横桥阵列具有七重旋转对称性,这是早期对扇贝肌肉中天然肌丝进行X射线衍射研究提出的可能性之一。低分辨率三维重建显示出细长的表面突起(“横桥”),可能代表未解析的肌球蛋白头部对。它们几乎与肌丝表面平行,但从轴上稍有偏移,因此它们沿着螺距为480埃的右手螺旋轨迹排列。与肌丝主干的连接可能发生在横桥靠近无横桥区的一端;因此,它们的倾斜方向似乎与肌动蛋白的强直附着方向相反。290埃的周期来自交替水平上横桥密度的不同分布;此外,一个横桥顶部与下一个横桥底部之间有弱连接,距离为145埃。无横桥区附近290埃周期的突出表明,反平行分子相互作用是这种扰动的主要原因。

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