增强子
生物
转录组
发起人
基因
遗传学
抄写(语言学)
核糖核酸
爆裂
基因表达
分子生物学
语言学
哲学
神经科学
作者
Anton J. M. Larsson,Per Johnsson,Michael Hagemann-Jensen,Leonard Hartmanis,Omid R. Faridani,Björn Reinius,Åsa Segerstolpe,Chloe M. Rivera,Bing Ren,Rickard Sandberg
出处
期刊:Nature
[Springer Nature]
日期:2019-01-01
卷期号:565 (7738): 251-254
被引量:457
标识
DOI:10.1038/s41586-018-0836-1
摘要
Mammalian gene expression is inherently stochastic1,2, and results in discrete bursts of RNA molecules that are synthesized from each allele3–7. Although transcription is known to be regulated by promoters and enhancers, it is unclear how cis-regulatory sequences encode transcriptional burst kinetics. Characterization of transcriptional bursting, including the burst size and frequency, has mainly relied on live-cell4,6,8 or single-molecule RNA fluorescence in situ hybridization3,5,8,9 recordings of selected loci. Here we determine transcriptome-wide burst frequencies and sizes for endogenous mouse and human genes using allele-sensitive single-cell RNA sequencing. We show that core promoter elements affect burst size and uncover synergistic effects between TATA and initiator elements, which were masked at mean expression levels. Notably, we provide transcriptome-wide evidence that enhancers control burst frequencies, and demonstrate that cell-type-specific gene expression is primarily shaped by changes in burst frequencies. Together, our data show that burst frequency is primarily encoded in enhancers and burst size in core promoters, and that allelic single-cell RNA sequencing is a powerful model for investigating transcriptional kinetics. Allele-specific single-cell RNA sequencing provides insights into transcription kinetics, with data indicating that core promoter sequences affect burst size, whereas enhancers mainly affect burst frequency.
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