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活细胞中单拷贝基因内源性RNA聚合酶II磷酸化的可视化、定量分析及建模

Visualization, Quantification, and Modeling of Endogenous RNA Polymerase II Phosphorylation at a Single-copy Gene in Living Cells.

作者信息

Forero-Quintero Linda S, Raymond William, Munsky Brian, Stasevich Timothy J

机构信息

Department of Chemical and Biological Engineering, Colorado State University, Fort Collins, CO 80523, USA.

School of Biomedical Engineering, Colorado State University, Fort Collins, CO 80523, USA.

出版信息

Bio Protoc. 2022 Aug 5;12(15). doi: 10.21769/BioProtoc.4482.

Abstract

In eukaryotic cells, RNA Polymerase II (RNAP2) is the enzyme in charge of transcribing mRNA from DNA. RNAP2 possesses an extended carboxy-terminal domain (CTD) that gets dynamically phosphorylated as RNAP2 progresses through the transcription cycle, therefore regulating each step of transcription from recruitment to termination. Although RNAP2 residue-specific phosphorylation has been characterized in fixed cells by immunoprecipitation-based assays, or in live cells by using tandem gene arrays, these assays can mask heterogeneity and limit temporal and spatial resolution. Our protocol employs multi-colored complementary fluorescent antibody-based (Fab) probes to specifically detect the CTD of the RNAP2 (CTD-RNAP2), and its phosphorylated form at the serine 5 residue (Ser5ph-RNAP2) at a single-copy HIV-1 reporter gene. Together with high-resolution fluorescence microscopy, single-molecule tracking analysis, and rigorous computational modeling, our system allows us to visualize, quantify, and predict endogenous RNAP2 phosphorylation dynamics and mRNA synthesis at a single-copy gene, in living cells, and throughout the transcription cycle. Graphical abstract: Schematic of the steps for visualizing, quantifying, and predicting RNAP2 phosphorylation at a single-copy gene.

摘要

在真核细胞中,RNA聚合酶II(RNAP2)是负责将DNA转录为mRNA的酶。RNAP2具有一个延伸的羧基末端结构域(CTD),随着RNAP2在转录周期中推进,该结构域会动态磷酸化,从而调节从招募到终止的转录的每一步。尽管基于免疫沉淀的检测方法已在固定细胞中对RNAP2残基特异性磷酸化进行了表征,或者通过使用串联基因阵列在活细胞中进行了表征,但这些检测方法可能会掩盖异质性并限制时间和空间分辨率。我们的方案采用基于多色互补荧光抗体的(Fab)探针,以特异性检测单拷贝HIV-1报告基因处的RNAP2的CTD(CTD-RNAP2)及其丝氨酸5残基(Ser5ph-RNAP2)处的磷酸化形式。结合高分辨率荧光显微镜、单分子追踪分析和严格的计算模型,我们的系统使我们能够在活细胞中以及整个转录周期内,在单拷贝基因处可视化、量化和预测内源性RNAP2磷酸化动态和mRNA合成。图形摘要:在单拷贝基因处可视化、量化和预测RNAP2磷酸化步骤的示意图。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab6a/9411018/f7713c1ba14e/BioProtoc-12-15-4482-ga001.jpg

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