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培养细胞的相关树脂内超分辨率荧光和电子显微镜技术

Correlative In-Resin Super-Resolution Fluorescence and Electron Microscopy of Cultured Cells.

作者信息

Johnson Errin, Kaufmann Rainer

机构信息

Sir William Dunn School of Pathology, University of Oxford, South Parks Road, Oxford, OX1 3RE, UK.

Division of Structural Biology, Wellcome Trust Centre for Human Genetics, University of Oxford, Roosevelt Drive, Oxford, OX3 7BN, UK.

出版信息

Methods Mol Biol. 2017;1663:163-177. doi: 10.1007/978-1-4939-7265-4_14.

Abstract

Correlative super-resolution light and electron microscopy (super-resolution CLEM) is a powerful and emerging tool in biological research. The practical realization of these two very different microscopy techniques with their individual requirements remains a challenging task. There is a broad range of approaches to choose from, each with their own advantages and limitations. Here, we present a detailed protocol for in-resin super-resolution CLEM of high-pressure frozen and freeze substituted cultured cells. The protocol makes use of a strategy to preserve the fluorescence and photo-switching capabilities of standard fluorescent proteins, such as GFP and YFP, to enable single-molecule localization microscopy (SMLM) in-resin sections followed by transmission electron microscopy (TEM) imaging. This results in a fivefold improvement in resolution in the fluorescence image and a more precise correlation of the distribution of fluorescently labeled molecules with EM ultrastructure compared with conventional CLEM.

摘要

相关超分辨率光电子显微镜(超分辨率CLEM)是生物研究中一种强大且新兴的工具。要切实实现这两种具有各自不同要求的截然不同的显微镜技术,仍然是一项具有挑战性的任务。有多种方法可供选择,每种方法都有其自身的优点和局限性。在此,我们展示了一种用于高压冷冻和冷冻置换培养细胞的树脂内超分辨率CLEM的详细方案。该方案采用一种策略来保留标准荧光蛋白(如GFP和YFP)的荧光和光开关能力,以便在树脂切片中进行单分子定位显微镜(SMLM),随后进行透射电子显微镜(TEM)成像。与传统的CLEM相比,这使得荧光图像的分辨率提高了五倍,并且荧光标记分子的分布与电子显微镜超微结构的相关性更加精确。

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