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荧光波动光谱技术可实现活细胞中单分子 mRNA 的定量成像。

Fluorescence fluctuation spectroscopy enables quantitative imaging of single mRNAs in living cells.

机构信息

Department of Anatomy and Structural Biology, Albert Einstein College of Medicine, Bronx, New York, USA.

出版信息

Biophys J. 2012 Jun 20;102(12):2936-44. doi: 10.1016/j.bpj.2012.05.017. Epub 2012 Jun 19.

Abstract

Imaging mRNA with single-molecule sensitivity in live cells has become an indispensable tool for quantitatively studying RNA biology. The MS2 system has been extensively used due to its unique simplicity and sensitivity. However, the levels of the coat protein needed for consistent labeling of mRNAs limits the sensitivity and quantitation of this technology. Here, we applied fluorescence fluctuation spectroscopy to quantitatively characterize and enhance the MS2 system. Surprisingly, we found that a high fluorescence background resulted from inefficient dimerization of fluorescent protein (FP)-labeled MS2 coat protein (MCP). To mitigate this problem, we used a single-chain tandem dimer of MCP (tdMCP) that significantly increased the uniformity and sensitivity of mRNA labeling. Furthermore, we characterized the PP7 coat protein and the binding to its respective RNA stem loop. We conclude that the PP7 system performs better for RNA labeling. Finally, we used these improvements to study endogenous β-actin mRNA, which has 24xMS2 binding sites inserted into the 3' untranslated region. The tdMCP-FP allowed uniform RNA labeling and provided quantitative measurements of endogenous mRNA concentration and diffusion. This work provides a foundation for quantitative spectroscopy and imaging of single mRNAs directly in live cells.

摘要

在活细胞中以单分子灵敏度对 mRNA 进行成像已成为定量研究 RNA 生物学不可或缺的工具。由于其独特的简单性和敏感性,MS2 系统得到了广泛的应用。然而,用于一致标记 mRNA 的外壳蛋白的水平限制了该技术的灵敏度和定量能力。在这里,我们应用荧光波动光谱法对 MS2 系统进行定量表征和增强。令人惊讶的是,我们发现荧光蛋白 (FP) 标记的 MS2 外壳蛋白 (MCP) 的二聚化效率低下导致了高荧光背景。为了解决这个问题,我们使用了单链串联二聚体 MCP (tdMCP),它显著提高了 mRNA 标记的均匀性和灵敏度。此外,我们还对 PP7 外壳蛋白及其与各自 RNA 茎环的结合进行了表征。我们得出结论,PP7 系统更适合用于 RNA 标记。最后,我们使用这些改进来研究内源性 β-肌动蛋白 mRNA,该 mRNA 在 3'非翻译区插入了 24 个 MS2 结合位点。tdMCP-FP 允许均匀的 RNA 标记,并提供了内源性 mRNA 浓度和扩散的定量测量。这项工作为在活细胞中直接对单个 mRNA 进行定量光谱学和成像提供了基础。

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