首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >S1-DRIP-seq identifies high expression and polyA tracts as major contributors to R-loop formation
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S1-DRIP-seq identifies high expression and polyA tracts as major contributors to R-loop formation

机译:S1-DRIP-seq确定高表达和polyA片段是R环形成的主要贡献者

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摘要

R loops form when transcripts hybridize to homologous DNA on chromosomes, yielding a DNA: RNA hybrid and a displaced DNA single strand. R loops impact the genome of many organisms, regulating chromosome stability, gene expression, and DNA repair. Understanding the parameters dictating R-loop formation in vivo has been hampered by the limited quantitative and spatial resolution of current genomic strategies for mapping R loops. We report a novel whole-genome method, S1-DRIP-seq (S1 nuclease DNA: RNA immunoprecipitation with deep sequencing), for mapping hybrid-prone regions in budding yeast Saccharomyces cerevisiae. Using this methodology, we identified similar to 800 hybrid-prone regions covering 8% of the genome. Given the pervasive transcription of the yeast genome, this result suggests that R-loop formation is dictated by characteristics of the DNA, RNA, and/or chromatin. We successfully identified two features highly predictive of hybrid formation: high transcription and long homopolymeric dA:dT tracts. These accounted for >60% of the hybrid regions found in the genome. We demonstrated that these two factors play a causal role in hybrid formation by genetic manipulation. Thus, the hybrid map generated by S1-DRIP-seq led to the identification of the first global genomic features causal for R-loop formation in yeast.
机译:当转录物与染色体上的同源DNA杂交时,会形成R环,从而产生DNA:RNA杂种和置换的DNA单链。 R环影响许多生物的基因组,调节染色体稳定性,基因表达和DNA修复。当前用于映射R环的基因组策略的有限的定量和空间分辨率已经阻碍了理解指示体内R环形成的参数。我们报告了一种新型的全基因组方法,即S1-DRIP-seq(S1核酸酶DNA:具有深度测序的RNA免疫沉淀),用于在发芽酵母酿酒酵母中绘制易杂交区域。使用这种方法,我们确定了800个易杂交区域,覆盖了8%的基因组。考虑到酵母基因组的普遍转录,该结果表明R环的形成受DNA,RNA和/或染色质特性的支配。我们成功地确定了两个可高度预测杂交体形成的特征:高转录和长均聚物dA:dT片段。这些占基因组中发现的杂种区域的> 60%。我们证明了这两个因素在遗传操纵的杂交形成中起着因果作用。因此,由S1-DRIP-seq产生的杂交图谱导致鉴定了导致酵母中R环形成的第一个全球基因组特征。

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