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利用涨落分析测量活细胞中的转录动力学。

Measuring transcription dynamics in living cells using fluctuation analysis.

作者信息

Ferguson Matthew L, Larson Daniel R

机构信息

Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA.

出版信息

Methods Mol Biol. 2013;1042:47-60. doi: 10.1007/978-1-62703-526-2_4.

Abstract

Single-cell studies of gene regulation suggest that transcription dynamics play a fundamental role in determining expression heterogeneity within a population. In addition, the three-dimensional organization of the nucleus seems to both reflect and influence expression patterns in the cell. Therefore, to gain a holistic understanding of transcriptional regulation, it is necessary to develop methods for studying transcription of single genes in living cells with high spatial and temporal resolution. In this chapter, we describe a recently developed approach for visualizing and quantifying pre-mRNA synthesis at a single active gene in the nucleus. The approach is based on the high-affinity interaction between MS2/PP7 bacteriophage coat proteins and RNA hairpins which are transcribed by the gene of interest. The MS2/PP7 coat protein is fused to a fluorescent protein and binds the nascent mRNA, allowing for detection of single transcription events in the fluorescence microscope. By time-lapse fluorescence imaging and quantitative image analysis, one can generate a time trace of fluorescence intensity at the site of transcription. By temporal autocorrelation analysis, one can determine enzymatic activities of RNAP such as initiation rate and elongation rate. In this protocol, we summarize the experimental concept, design, and execution for real-time observation of transcription in living cells.

摘要

基因调控的单细胞研究表明,转录动力学在决定群体内表达异质性方面起着根本性作用。此外,细胞核的三维组织似乎既能反映又能影响细胞中的表达模式。因此,为了全面了解转录调控,有必要开发出能够在高时空分辨率下研究活细胞中单个基因转录的方法。在本章中,我们描述了一种最近开发的方法,用于可视化和量化细胞核中单个活性基因的前体mRNA合成。该方法基于MS2/PP7噬菌体外壳蛋白与由感兴趣基因转录的RNA发夹之间的高亲和力相互作用。MS2/PP7外壳蛋白与荧光蛋白融合,并与新生mRNA结合,从而能够在荧光显微镜下检测单个转录事件。通过延时荧光成像和定量图像分析,可以生成转录位点荧光强度的时间轨迹。通过时间自相关分析,可以确定RNA聚合酶(RNAP)的酶活性,如起始速率和延伸速率。在本方案中,我们总结了活细胞中转录实时观察的实验概念、设计和执行方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5395/6310616/0961c7309a3f/nihms-1000598-f0001.jpg

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What do expression dynamics tell us about the mechanism of transcription?表达动态告诉了我们关于转录机制的什么信息?
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