Imaging of protein molecules—Towards atomic resolution

P.A. Bullough
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引用次数: 8

Abstract

This review discusses some of the recent developments in high resolution imaging of biological molecules. Electron micrographs of unstained biological molecules never show the resolution or contrast that would be predicted. Movements in the specimen caused by radiation damage, and possibly charging of the specimen are the most significant factors in the reduction of image contrast of these radiation-sensitive specimens. Until these limitations are overcome it is unlikely that the structures of biological molecules will be determined to the resolutions to which they are preserved. The causes of contrast loss in images are discussed in a quantitative manner and the use of crystalline paraffin as a model for radiation-sensitive specimens in general is described. Procedures for improving the contrast in images of biological molecules are described, including the new method of spot-scan imaging. Possible future developments, including high resolution imaging of single particles, are discussed.

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蛋白质分子成像——迈向原子分辨率
本文综述了生物分子高分辨率成像技术的最新进展。未染色生物分子的电子显微照片从未显示出预期的分辨率或对比度。由于辐射损伤引起的试样的运动,以及可能的试样充电,是这些辐射敏感试样图像对比度降低的最重要因素。在克服这些限制之前,生物分子的结构不可能被确定到它们被保存的分辨率。在图像对比度损失的原因进行了定量的讨论,并使用结晶石蜡作为模型的辐射敏感的标本一般描述。介绍了提高生物分子图像对比度的方法,包括点扫描成像的新方法。讨论了未来可能的发展,包括单粒子的高分辨率成像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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