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通过 PADD-seq 进行全基因组范围内的蛋白质-DNA 损伤相互作用作图。

Genome-wide mapping of protein-DNA damage interaction by PADD-seq.

机构信息

Shanghai Fifth People's Hospital, Fudan University, and Shanghai Key Laboratory of Medical Epigenetics, International Co-laboratory of Medical Epigenetics and Metabolism (Ministry of Science and Technology), Institutes of Biomedical Sciences, Fudan University, Shanghai 200032, China.

Institute of Pediatrics and Department of Hematology and Oncology, Children's Hospital of Fudan University, and Shanghai Key Laboratory of Medical Epigenetics, International Co-laboratory of Medical Epigenetics and Metabolism (Ministry of Science and Technology), Institutes of Biomedical Sciences, Fudan University, Shanghai 200032, China.

出版信息

Nucleic Acids Res. 2023 Apr 11;51(6):e32. doi: 10.1093/nar/gkad008.

Abstract

Protein-DNA damage interactions are critical for understanding the mechanism of DNA repair and damage response. However, due to the relatively random distributions of UV-induced damage and other DNA bulky adducts, it is challenging to measure the interactions between proteins and these lesions across the genome. To address this issue, we developed a new method named Protein-Associated DNA Damage Sequencing (PADD-seq) that uses Damage-seq to detect damage distribution in chromatin immunoprecipitation-enriched DNA fragments. It is possible to delineate genome-wide protein-DNA damage interactions at base resolution with this strategy. Using PADD-seq, we observed that RNA polymerase II (Pol II) was blocked by UV-induced damage on template strands, and the interaction declined within 2 h in transcription-coupled repair-proficient cells. On the other hand, Pol II was clearly restrained at damage sites in the absence of the transcription-repair coupling factor CSB during the same time course. Furthermore, we used PADD-seq to examine local changes in H3 acetylation at lysine 9 (H3K9ac) around cisplatin-induced damage, demonstrating the method's broad utility. In conclusion, this new method provides a powerful tool for monitoring the dynamics of protein-DNA damage interaction at the genomic level, and it encourages comprehensive research into DNA repair and damage response.

摘要

蛋白质-DNA 损伤相互作用对于理解 DNA 修复和损伤反应的机制至关重要。然而,由于 UV 诱导的损伤和其他 DNA 加合物的分布相对随机,因此很难测量这些损伤与基因组中蛋白质之间的相互作用。为了解决这个问题,我们开发了一种名为 Protein-Associated DNA Damage Sequencing(PADD-seq)的新方法,该方法使用 Damage-seq 来检测染色质免疫沉淀富集的 DNA 片段中的损伤分布。该策略可以在碱基分辨率上描绘全基因组范围内的蛋白质-DNA 损伤相互作用。使用 PADD-seq,我们观察到 RNA 聚合酶 II(Pol II)在模板链上被 UV 诱导的损伤所阻断,并且在转录偶联修复有效的细胞中,这种相互作用在 2 小时内下降。另一方面,在没有转录修复偶联因子 CSB 的情况下,Pol II 在相同的时间过程中在损伤部位明显受到限制。此外,我们使用 PADD-seq 来检测顺铂诱导损伤周围赖氨酸 9(H3K9ac)处 H3 乙酰化的局部变化,证明了该方法的广泛适用性。总之,这种新方法为监测蛋白质-DNA 损伤相互作用在基因组水平上的动态提供了有力的工具,并鼓励对 DNA 修复和损伤反应进行全面研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91ac/10085696/8634034c3cd5/gkad008fig1.jpg

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