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通过负染色和单颗粒分析揭示的肌球蛋白头部的柔韧性

Flexibility within myosin heads revealed by negative stain and single-particle analysis.

作者信息

Burgess S A, Walker M L, White H D, Trinick J

机构信息

Department of Clinical Veterinary Sciences, University of Bristol, Langford, Bristol, BS18 7DY, United Kingdom.

出版信息

J Cell Biol. 1997 Nov 3;139(3):675-81. doi: 10.1083/jcb.139.3.675.

Abstract

Electron microscopy of negatively stained myosin has previously revealed three discrete regions within the heads of the molecule. However, despite a probable resolution of approximately 2 nm, it is difficult to discern directly consistent details within these regions. This is due to variability in both head conformation and in staining. In this study, we applied single-particle image processing and classified heads into homogeneous groups. The improved signal-to-noise ratio after averaging these groups reveals substantially improved detail. The image averages were compared to a model simulating negative staining of the atomic structure of subfragment-1 (S1). This shows that the three head regions correspond to the motor domain and the essential and regulatory light chains. The image averages were very similar to particular views of the S1 model. They also revealed considerable flexibility between the motor and regulatory domains, despite the molecules having been prepared in the absence of nucleotide. This flexibility probably results from rotation of the regulatory domain about the motor domain, where the relative movement of the regulatory light chain is up to 12 nm, and is most clearly illustrated in animated sequences (available at http://www.leeds.ac.uk/chb/muscle/myosinhead.htm l). The sharply curved conformation of the atomic model of S1 is seen only rarely in our data, with straighter heads being more typical.

摘要

先前对经负染的肌球蛋白进行的电子显微镜观察揭示了该分子头部内三个不同的区域。然而,尽管可能具有约2纳米的分辨率,但在这些区域内直接辨别出一致的细节仍很困难。这是由于头部构象和染色的变异性所致。在本研究中,我们应用了单颗粒图像处理技术,并将头部分类为均匀的组。对这些组进行平均后,提高的信噪比揭示了显著改善的细节。将图像平均值与模拟亚片段-1(S1)原子结构负染的模型进行了比较。这表明三个头部区域分别对应于运动结构域以及必需轻链和调节轻链。图像平均值与S1模型的特定视图非常相似。尽管分子是在没有核苷酸的情况下制备的,但它们也揭示了运动结构域和调节结构域之间相当大的灵活性。这种灵活性可能是由于调节结构域围绕运动结构域旋转所致,其中调节轻链的相对移动可达12纳米,并且在动画序列中最为清晰地显示出来(可在http://www.leeds.ac.uk/chb/muscle/myosinhead.htm l获取)。在我们的数据中,仅很少见到S1原子模型的急剧弯曲构象,更典型的是头部较直的情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c166/2141716/2ef329324626/JCB.29262f1.jpg

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