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使用对称碳三明治技术改进冷冻电子显微镜的样本制备方法。

Improved specimen preparation for cryo-electron microscopy using a symmetric carbon sandwich technique.

作者信息

Gyobu Nobuhiko, Tani Kazutoshi, Hiroaki Yoko, Kamegawa Akiko, Mitsuoka Kaoru, Fujiyoshi Yoshinori

机构信息

Department of Biophysics, Faculty of Science, Kyoto University, Kyoto-fu, Japan.

出版信息

J Struct Biol. 2004 Jun;146(3):325-33. doi: 10.1016/j.jsb.2004.01.012.

Abstract

Image shift due to beam-induced specimen charging has become the most severe problem in electron microscopy for imaging two-dimensional (2D) crystals of biological macromolecules, especially in the case of highly tilted specimens. Image shift causes diffraction spots perpendicular to the tilt axis to disappear even at medium or low resolution. The yield of good images from tilted specimens prepared on a single layer of continuous carbon support film is therefore very low. In this paper, we have used 2D crystals of aquaporin-4 to investigate the effect of a carbon sandwich preparation method on specimen charging. We find that a larger number of images show sharp diffraction spots perpendicular to the tilt axis if crystals are placed in between two sheets of carbon film as compared to images taken from specimens prepared by the conventional single carbon support film technique. Our results demonstrate that the reproducible carbon sandwich preparation technique overcomes the severe specimen charging problem and thus has the potential to significantly speed up structure analysis by electron crystallography.

摘要

由于电子束诱导的样品充电导致的图像漂移已成为电子显微镜成像生物大分子二维(2D)晶体时最严重的问题,特别是在高倾斜度样品的情况下。图像漂移会导致即使在中低分辨率下,垂直于倾斜轴的衍射斑点也会消失。因此,在单层连续碳支撑膜上制备的倾斜样品获得高质量图像的成功率非常低。在本文中,我们使用水通道蛋白-4的二维晶体来研究碳夹层制备方法对样品充电的影响。我们发现,与采用传统单碳支撑膜技术制备的样品所拍摄的图像相比,如果将晶体置于两片碳膜之间,则有更多图像显示出垂直于倾斜轴的清晰衍射斑点。我们的结果表明,可重复的碳夹层制备技术克服了严重的样品充电问题,因此有可能显著加快电子晶体学的结构分析速度。

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