Das Aditi, Boldogh Istvan, Lee Jae Wan, Harrigan Jeanine A, Hegde Muralidhar L, Piotrowski Jason, de Souza Pinto Nadja, Ramos William, Greenberg Marc M, Hazra Tapas K, Mitra Sankar, Bohr Vilhelm A
Department of Biochemistry and Molecular Biology and Department of Microbiology and Immunology, University of Texas Medical Branch, Galveston, Texas 77555, USA.
J Biol Chem. 2007 Sep 7;282(36):26591-602. doi: 10.1074/jbc.M703343200. Epub 2007 Jul 3.
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.
哺乳动物DNA糖基化酶NEIL1通过碱基切除修复途径特异性修复基因组中氧化损伤的碱基,它被活性氧激活并防止辐射导致的毒性。我们在此表明,Werner综合征蛋白(WRN)是DNA解旋酶RecQ家族的成员,在碱基切除修复的早期损伤感知步骤中与NEIL1相互作用。WRN在从泡状DNA底物中切除氧化损伤时刺激NEIL1。NEIL1与WRN之间的二元相互作用(K(D)=60 nM)涉及NEIL1的C端残基288-349和WRN的RecQ C端(RQC)区域,且独立于WRN的解旋酶活性。暴露于氧化应激会增强NEIL-WRN的相互作用以及它们在细胞核中的强烈共定位。WRN缺失的细胞会积累一些典型的氧化碱基(如8-氧代鸟嘌呤、FapyG和FapyA),这表明WRN在哺乳动物基因组氧化损伤修复中具有生理功能。有趣的是,WRN缺陷对NEIL1敲低细胞中的体内损伤积累没有累加效应,这表明WRN与NEIL1参与相同的修复途径。