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qDSB-Seq is a general method for genome-wide quantification of DNA double-strand breaks using sequencing

机译:qDSB-Seq是使用测序对全基因组DNA双链断裂进行定量的通用方法

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摘要

DNA double-strand breaks (DSBs) are among the most lethal types of DNA damage and frequently cause genome instability. Sequencing-based methods for mapping DSBs have been developed but they allow measurement only of relative frequencies of DSBs between loci, which limits our understanding of the physiological relevance of detected DSBs. Here we propose quantitative DSB sequencing (qDSB-Seq), a method providing both DSB frequencies per cell and their precise genomic coordinates. We induce spike-in DSBs by a site-specific endonuclease and use them to quantify detected DSBs (labeled, e.g., using i-BLESS). Utilizing qDSB-Seq, we determine numbers of DSBs induced by a radiomimetic drug and replication stress, and reveal two orders of magnitude differences in DSB frequencies. We also measure absolute frequencies of Top1-dependent DSBs at natural replication fork barriers. qDSB-Seq is compatible with various DSB labeling methods in different organisms and allows accurate comparisons of absolute DSB frequencies across samples.
机译:DNA双链断裂(DSB)是最致命的DNA损伤类型之一,经常导致基因组不稳定。已经开发了基于序列的映射DSB的方法,但是它们仅允许测量基因座之间DSB的相对频率,这限制了我们对检测到的DSB的生理相关性的理解。在这里,我们提出了定量DSB测序(qDSB-Seq),一种同时提供每个细胞DSB频率及其精确基因组坐标的方法。我们通过位点特异性核酸内切酶诱导刺入型DSB,并使用它们来量化检测到的DSB(标记为例如使用i-BLESS)。利用qDSB-Seq,我们可以确定由放射模拟药物诱导的DSB数量和复制压力,并揭示DSB频率的两个数量级差异。我们还测量了自然复制叉壁垒中依赖于Top1的DSB的绝对频率。 qDSB-Seq与不同生物体中的各种DSB标记方法兼容,并允许在样品之间准确比较绝对DSB频率。

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