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PNAS Plus: Single-nucleotide resolution dynamic repair maps of UV damage in Saccharomyces cerevisiae genome

机译:PNAS Plus:酿酒酵母基因组中紫外线损伤的单核苷酸分辨率动态修复图

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摘要

We have adapted the eXcision Repair-sequencing (XR-seq) method to generate single-nucleotide resolution dynamic repair maps of UV-induced cyclobutane pyrimidine dimers and (6-4) pyrimidine–pyrimidone photoproducts in the Saccharomyces cerevisiae genome. We find that these photoproducts are removed from the genome primarily by incisions 13–18 nucleotides 5′ and 6–7 nucleotides 3′ to the UV damage that generate 21- to 27-nt-long excision products. Analyses of the excision repair kinetics both in single genes and at the genome-wide level reveal strong transcription-coupled repair of the transcribed strand at early time points followed by predominantly nontranscribed strand repair at later stages. We have also characterized the excision repair level as a function of the transcription level. The availability of high-resolution and dynamic repair maps should aid in future repair and mutagenesis studies in this model organism.
机译:我们采用了电子修复修复测序(XR-seq)方法,以在酿酒酵母基因组中生成UV诱导的环丁烷嘧啶二聚体和(6-4)嘧啶-嘧啶酮光产物的单核苷酸分辨率动态修复图。我们发现这些光产物主要是通过切割13-18个核苷酸的5'和6-7个核苷酸的3'对UV损伤而从基因组中去除的,这些损伤产生21至27 nt长的切除产物。对单个基因和全基因组水平的切除修复动力学的分析显示,转录链在早期的时间点具有很强的转录偶联修复,随后在后期主要是非转录的链修复。我们还表征了切除修复水平作为转录水平的函数。高分辨率和动态修复图的可用性应有助于将来对该模型生物进行修复和诱变研究。

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