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泽尼克相衬冷冻电子断层扫描术对全固定冷冻细胞的观察。

Zernike phase contrast cryo-electron tomography of whole mounted frozen cells.

机构信息

Division of Nano-Structure Physiology, Okazaki Institute for Integrative Bioscience, 5-1 Higashiyama, Myodaiji, Okazaki 444-8787, Japan.

出版信息

J Struct Biol. 2012 Feb;177(2):484-9. doi: 10.1016/j.jsb.2011.11.018. Epub 2011 Nov 20.

Abstract

Cryo-electron tomography of frozen hydrated cells has provided cell biologists with an indispensable tool for delineating three-dimensional arrangements of cellular ultrastructure. To avoid the damage induced by electron irradiation, images of frozen hydrated biological specimens are generally acquired under low-dose conditions, resulting in weakly contrasted images that are difficult to interpret, and in which ultrastructural details remain ambiguous. Zernike phase contrast transmission electron microscopy can improve contrast, and can also fix a fatal problem related to the inherent low contrast of conventional electron microscopy, namely, image modulation due to the unavoidable setting of deep defocus. In this study, we applied cryo-electron tomography enhanced with a Zernike phase plate, which avoids image modulation by allowing in-focus setting. The Zernike phase contrast cryo-electron tomography has a potential to suppress grainy background generation. Due to the smoother background in comparison with defocus phase contrast cryo-electron tomography, Zernike phase contrast cryo-electron tomography could yield higher visibility for particulate or filamentous ultrastructure inside the cells, and allowed us to clearly recognize membrane protein structures.

摘要

冷冻水合细胞的冷冻电子断层成像为细胞生物学家提供了一种不可或缺的工具,用于描绘细胞超微结构的三维排列。为了避免电子辐照引起的损伤,通常在低剂量条件下获取冷冻水合生物样本的图像,这导致图像对比度较弱,难以解释,并且超微结构细节仍然模糊。泽尼克相衬透射电子显微镜可以提高对比度,并且还可以解决与传统电子显微镜固有的低对比度相关的一个致命问题,即由于不可避免的深散焦设置而导致的图像调制。在这项研究中,我们应用了泽尼克相板增强的冷冻电子断层成像,该方法通过允许聚焦设置避免了图像调制。泽尼克相衬冷冻电子断层成像具有抑制颗粒状背景产生的潜力。与离焦相衬冷冻电子断层成像相比,由于背景更平滑,泽尼克相衬冷冻电子断层成像可以为细胞内的颗粒状或丝状超微结构提供更高的可见度,并使我们能够清晰地识别膜蛋白结构。

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