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单细胞新生 RNA 测序揭示了协调的全局转录。

Single-cell nascent RNA sequencing unveils coordinated global transcription.

机构信息

Koch Institute for Integrative Cancer Research and Department of Biology, Massachusetts Institute of Technology, Cambridge, MA, USA.

Broad Institute of MIT and Harvard, Cambridge, MA, USA.

出版信息

Nature. 2024 Jul;631(8019):216-223. doi: 10.1038/s41586-024-07517-7. Epub 2024 Jun 5.

Abstract

Transcription is the primary regulatory step in gene expression. Divergent transcription initiation from promoters and enhancers produces stable RNAs from genes and unstable RNAs from enhancers. Nascent RNA capture and sequencing assays simultaneously measure gene and enhancer activity in cell populations. However, fundamental questions about the temporal regulation of transcription and enhancer-gene coordination remain unanswered, primarily because of the absence of a single-cell perspective on active transcription. In this study, we present scGRO-seq-a new single-cell nascent RNA sequencing assay that uses click chemistry-and unveil coordinated transcription throughout the genome. We demonstrate the episodic nature of transcription and the co-transcription of functionally related genes. scGRO-seq can estimate burst size and frequency by directly quantifying transcribing RNA polymerases in individual cells and can leverage replication-dependent non-polyadenylated histone gene transcription to elucidate cell cycle dynamics. The single-nucleotide spatial and temporal resolution of scGRO-seq enables the identification of networks of enhancers and genes. Our results suggest that the bursting of transcription at super-enhancers precedes bursting from associated genes. By imparting insights into the dynamic nature of global transcription and the origin and propagation of transcription signals, we demonstrate the ability of scGRO-seq to investigate the mechanisms of transcription regulation and the role of enhancers in gene expression.

摘要

转录是基因表达的主要调控步骤。从启动子和增强子发散转录产生基因的稳定 RNA 和增强子的不稳定 RNA。新生 RNA 捕获和测序测定法同时测量细胞群体中基因和增强子的活性。然而,关于转录的时间调节和增强子-基因协调的基本问题仍然没有得到解答,主要是因为缺乏对活跃转录的单细胞视角。在这项研究中,我们提出了 scGRO-seq——一种新的单细胞新生 RNA 测序测定法,它使用点击化学,并揭示了整个基因组中的协调转录。我们证明了转录的间歇性和功能相关基因的共转录。scGRO-seq 可以通过直接在单个细胞中定量转录 RNA 聚合酶来估计爆发大小和频率,并可以利用依赖复制的非多聚腺苷酸化组蛋白基因转录来阐明细胞周期动态。scGRO-seq 的单核苷酸空间和时间分辨率使能够识别增强子和基因的网络。我们的结果表明,超级增强子处转录的爆发先于相关基因的爆发。通过深入了解全局转录的动态性质以及转录信号的起源和传播,我们展示了 scGRO-seq 调查转录调控机制和增强子在基因表达中的作用的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90a4/11222150/14cdc735993a/41586_2024_7517_Fig1_HTML.jpg

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