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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Genome-wide analysis of human global and transcription-coupled excision repair of UV damage at single-nucleotide resolution
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Genome-wide analysis of human global and transcription-coupled excision repair of UV damage at single-nucleotide resolution

机译:全基因组范围的人类全局和转录偶联切除修复单核苷酸分辨率的紫外线损伤

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摘要

We developed a method for genome-wide mapping of DNA excision repair named XR-seq (excision repair sequencing). Human nucleotide excision repair generates two incisions surrounding the site of damage, creating an similar to 30-mer. In XR-seq, this fragment is isolated and subjected to high-throughput sequencing. We used XR-seq to produce stranded, nucleotide-resolution maps of repair of two UV-induced DNA damages in human cells: cyclobutane pyrimidine dimers (CPDs) and (6-4) pyrimidine-pyrimidone photoproducts [(6-4) PPs]. In wild-type cells, CPD repair was highly associated with transcription, specifically with the template strand. Experiments in cells defective in either transcription-coupled excision repair or general excision repair isolated the contribution of each pathway to the overall repair pattern and showed that transcription-coupled repair of both photoproducts occurs exclusively on the template strand. XR-seq maps capture transcription-coupled repair at sites of divergent gene promoters and bidirectional enhancer RNA (eRNA) production at enhancers. XR-seq data also uncovered the repair characteristics and novel sequence preferences of CPDs and (6-4) PPs. XR-seq and the resulting repair maps will facilitate studies of the effects of genomic location, chromatin context, transcription, and replication on DNA repair in human cells.
机译:我们开发了一种用于DNA切除修复的全基因组图谱绘制方法,称为XR-seq(切除修复测序)。人类核苷酸切除修复在受损部位周围产生两个切口,形成类似于30-mer的切口。在XR-seq中,该片段被分离并进行了高通量测序。我们使用XR-seq生成了修复人类细胞中两个UV诱导的DNA损伤的绞合核苷酸分辨率图:环丁烷嘧啶二聚体(CPD)和(6-4)嘧啶-嘧啶光产物[(6-4)PP] 。在野生型细胞中,CPD修复与转录高度相关,特别是与模板链高度相关。在转录偶联切除修复或普通切除修复中有缺陷的细胞中进行的实验分离出了每种途径对整体修复模式的贡献,并表明两种光产物的转录偶联修复仅在模板链上发生。 XR-seq图捕获了不同基因启动子位点的转录偶联修复以及增强子上双向增强子RNA(eRNA)的产生。 XR-seq数据还揭示了CPD和(6-4)PP的修复特征和新颖的序列偏好。 XR-seq和产生的修复图谱将有助于研究基因组位置,染色质背景,转录和复制对人细胞DNA修复的影响。

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