DNA
染色质
化学
尿嘧啶DNA糖基化酶
计算生物学
DNA测序
DNA糖基化酶
基因组DNA
DNA损伤
DNA连接酶
结扎测序
病变
分子生物学
基因组学
基因
细胞生物学
DNA修复
尿嘧啶
A-DNA
高分辨率
人类基因组
分辨率(逻辑)
基因组
内生
作者
Neng‐Bin Xie,Tong‐Tong Ji,Yong Zhu,Yao-Hua Gu,Xia Guo,Fang‐Yin Gang,Zhiyuan Hu,Yibin Liu,Bi‐Feng Yuan
标识
DOI:10.1021/acs.analchem.6c04379
摘要
Abstract Upon exposure to endogenous and exogenous damaging agents, tens of thousands of DNA lesions are generated in the mammalian genome, including uracil (U), 8-oxo-7,8-dihydroguanine (8OG), and apurinic/apyrimidinic (AP) sites. It has been documented that these lesions can impair genomic integrity by inducing single-strand breaks and affecting fundamental cellular processes such as gene transcription, DNA replication, and chromatin assembly. Comprehensive and accurate genome-wide mapping of DNA lesions is therefore essential for elucidating their biological and pathological roles. Here, we introduce glycosylase-cleavage ligation-assisted sequencing (GCLA-seq), a method for genome-wide mapping of glycosylase-targeted DNA lesions at single-base resolution. The combined use of DNA glycosylases and T4 DNA ligase in GCLA-seq achieves selective enrichment and amplification of lesion-containing DNA. Using this method, we achieved single-nucleotide-resolution mapping of U, 8OG, and AP sites. Compared with previous approaches for mapping DNA lesions, GCLA-seq does not require specific antibodies or complicated chemical labeling. It can be applied to the localization analysis of various types of DNA lesions, thereby overcoming the limitation that a specific mapping strategy should be developed for each lesion type. Together, these results establish GCLA-seq as an enzyme-based approach for single-base-resolution glycosylase-targeted lesion detection, with genome-wide uracil mapping demonstrated in mammalian genomic DNA.
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