The human Werner syndrome protein stimulates repair of oxidative DNA base damage by the DNA glycosylase NEIL1

被引:92
作者
Das, Aditi
Boldogh, Istvan
Lee, Jae Wan
Harrigan, Jeanine A.
Hegde, Muralidhar L.
Piotrowski, Jason
Pinto, Nadja de Souza
Ramos, William
Greenberg, Marc M.
Hazra, Tapas K.
Mitra, Sankar
Bohr, Vilhelm A.
机构
[1] NIH, NIA, LAb Mol Gerontol, Baltimore, MD 21224 USA
[2] Johns Hopkins Univ, Dept Chem, Baltimore, MD 21224 USA
[3] Univ Texas, Med Branch, Dept Biochem & Mol Biol, Galveston, TX 77555 USA
[4] Univ Texas, Med Branch, Dept Microbiol & Immunol, Galveston, TX 77555 USA
关键词
D O I
10.1074/jbc.M703343200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The mammalian DNA glycosylase, NEIL1, specific for repair of oxidatively damaged bases in the genome via the base excision repair pathway, is activated by reactive oxygen species and prevents toxicity due to radiation. We show here that the Werner syndrome protein (WRN), a member of the RecQ family of DNA helicases, associates with NEIL1 in the early damage-sensing step of base excision repair. WRN stimulates NEIL1 in excision of oxidative lesions from bubble DNA substrates. The binary interaction between NEIL1 and WRN (K-D = 60 nM) involves C-terminal residues 288-349 of NEIL1 and the RecQ C-terminal (RQC) region of WRN, and is independent of the helicase activity WRN. Exposure to oxidative stress enhances the NEIL-WRN association concomitant with their strong nuclear co-localization. WRN-depleted cells accumulate some prototypical oxidized bases (e. g. 8-oxoguanine, FapyG, and FapyA) indicating a physiological function of WRN in oxidative damage repair in mammalian genomes. Interestingly, WRN deficiency does not have an additive effect on in vivo damage accumulation in NEIL1 knockdown cells suggesting that WRN participates in the same repair pathway as NEIL1.
引用
收藏
页码:26591 / 26602
页数:12
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