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用于追踪和成像冷冻固定细胞中病毒蛋白相关结构的 correlative Light Electron Microscopy(CLEM,相关光电子显微镜)。

Correlative Light Electron Microscopy (CLEM) for Tracking and Imaging Viral Protein Associated Structures in Cryo-immobilized Cells.

作者信息

Santarella-Mellwig Rachel, Haselmann Uta, Schieber Nicole L, Walther Paul, Schwab Yannick, Antony Claude, Bartenschlager Ralf, Romero-Brey Inés

机构信息

European Molecular Biology Laboratory.

Department of Infectious Diseases, Molecular Virology, Heidelberg University.

出版信息

J Vis Exp. 2018 Sep 7(139):58154. doi: 10.3791/58154.

Abstract

Due to its high resolution, electron microscopy (EM) is an indispensable tool for virologists. However, one of the main difficulties when analyzing virus-infected or transfected cells via EM are the low efficiencies of infection or transfection, hindering the examination of these cells. In order to overcome this difficulty, light microscopy (LM) can be performed first to allocate the subpopulation of infected or transfected cells. Thus, taking advantage of the use of fluorescent proteins (FPs) fused to viral proteins, LM is used here to record the positions of the "positive-transfected" cells, expressing a FP and growing on a support with an alphanumeric pattern. Subsequently, cells are further processed for EM via high pressure freezing (HPF), freeze substitution (FS) and resin embedding. The ultra-rapid freezing step ensures excellent membrane preservation of the selected cells that can then be analyzed at the ultrastructural level by transmission electron microscopy (TEM). Here, a step-by-step correlative light electron microscopy (CLEM) workflow is provided, describing sample preparation, imaging and correlation in detail. The experimental design can be also applied to address many cell biology questions.

摘要

由于其高分辨率,电子显微镜(EM)是病毒学家不可或缺的工具。然而,通过电子显微镜分析病毒感染或转染细胞时的主要困难之一是感染或转染效率低,这阻碍了对这些细胞的检查。为了克服这一困难,可以先进行光学显微镜(LM)观察,以确定感染或转染细胞的亚群。因此,利用与病毒蛋白融合的荧光蛋白(FPs),这里使用光学显微镜记录“阳性转染”细胞的位置,这些细胞表达荧光蛋白并在具有字母数字图案的支持物上生长。随后,通过高压冷冻(HPF)、冷冻置换(FS)和树脂包埋对细胞进行进一步的电子显微镜处理。超快速冷冻步骤确保了所选细胞的良好膜保存,然后可以通过透射电子显微镜(TEM)在超微结构水平上进行分析。这里提供了一个逐步的相关光电子显微镜(CLEM)工作流程,详细描述了样品制备、成像和相关性。该实验设计也可用于解决许多细胞生物学问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf37/6235138/69446c9596fb/jove-139-58154-0.jpg

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