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Genome-wide mapping of nucleotide excision repair with XR-seq

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Hu, Jinchuan and Li, Wentao and Adebali, Ogün and Yang, Yanyan and Öztaş, Onur and Selby, Christopher P. and Sancar, Aziz (2019) Genome-wide mapping of nucleotide excision repair with XR-seq. Nature Protocols, 14 (1). pp. 248-282. ISSN 1754-2189 (Print) 1750-2799 (Online)

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Official URL: http://dx.doi.org/10.1038/s41596-018-0093-7

Abstract

Nucleotide excision repair is a versatile mechanism to repair a variety of bulky DNA adducts. We developed excision repair sequencing (XR-seq) to study nucleotide excision repair of DNA adducts in humans, mice, Arabidopsis thaliana, yeast and Escherichia coli. In this protocol, the excised oligomers, generated in the nucleotide excision repair reaction, are isolated by cell lysis and fractionation, followed by immunoprecipitation with damage-or repair factor-specific antibodies from the non-chromatin fraction. The single-stranded excised oligomers are ligated to adapters and reimmunoprecipitated with damage-specific antibodies. The DNA damage in the excised oligomers is then reversed by enzymatic or chemical reactions before being converted into a sequencing library by PCR amplification. Alternatively, the excised oligomers containing DNA damage, especially those containing irreversible DNA damage such as benzo[a] pyrene-induced DNA adducts, can be converted to a double-stranded DNA (dsDNA) form by using appropriate translesion DNA synthesis (TLS) polymerases and then can be amplified by PCR. The current genome-wide approaches for studying repair measure the loss of damage signal with time, which limits their resolution. By contrast, an advantage of XR-seq is that the repair signal is directly detected above a background of zero. An XR-seq library using the protocol described here can be obtained in 7-9 d.

Item Type:Article
Subjects:Q Science > Q Science (General)
ID Code:36863
Deposited By:Ogün Adebali
Deposited On:01 Mar 2019 15:57
Last Modified:22 May 2019 14:13

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