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活细胞中的原位杂交:RNA分子的检测

In situ hybridization in living cells: detection of RNA molecules.

作者信息

Paillasson S, Van De Corput M, Dirks R W, Tanke H J, Robert-Nicoud M, Ronot X

机构信息

UPR-ES EA 2021, INSERM U 309, Université Joseph Fourier, Grenoble, France.

出版信息

Exp Cell Res. 1997 Feb 25;231(1):226-33. doi: 10.1006/excr.1996.3464.

Abstract

Fluorescence hybridization is a widely used technique in cell biology and pathology for detecting specific nucleic acid (DNA and RNA) sequences in fixed cells. This technique does not, however, provide dynamic information on the intracellular behavior of the targeted molecules. The aim of this work was to investigate possibilities of labeled DNA probes for RNA detection in cells that are maintained alive. Such techniques will provide useful tools for studying dynamic cellular processes such as RNA distribution and transport from transcription sites to translation sites by means of fluorescence microscopy. First a reversible, nonperturbing cell permeabilization procedure was developed using streptolysin O. This procedure was used to introduce oligodeoxynucleotides and fluorochrome-labeled DNA probes specific for 28S ribosomal RNA (2.1 kb) into living cells, which were then analyzed by fluorescence microscopy. The results showed that: (i) no increased cell death or growth perturbation was observed after permeabilization, (ii) introduction of a 28S RNA-specific probe (plasmid and oligonucleotides) into living cells led to bright nucleoli and a low cytoplasmic signal, and (iii) negative control probes did not lead to any fluorescent staining. These results indicate that specific hybridization of labeled nucleic acid probes takes place while cells are maintained under normal physiological conditions.

摘要

荧光杂交是细胞生物学和病理学中广泛使用的技术,用于检测固定细胞中的特定核酸(DNA和RNA)序列。然而,该技术无法提供靶向分子细胞内行为的动态信息。这项工作的目的是研究在活细胞中用于RNA检测的标记DNA探针的可能性。此类技术将为借助荧光显微镜研究动态细胞过程(如RNA分布以及从转录位点到翻译位点的转运)提供有用工具。首先,利用链球菌溶血素O开发了一种可逆、无干扰的细胞通透化程序。该程序用于将针对28S核糖体RNA(2.1 kb)的寡脱氧核苷酸和荧光染料标记的DNA探针引入活细胞,然后通过荧光显微镜进行分析。结果表明:(i)通透化后未观察到细胞死亡增加或生长受到干扰;(ii)将28S RNA特异性探针(质粒和寡核苷酸)引入活细胞会导致核仁明亮且细胞质信号较低;(iii)阴性对照探针未产生任何荧光染色。这些结果表明,在细胞维持正常生理条件下,标记核酸探针会发生特异性杂交。

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