Sun Zheng, Chin Y Eugene, Zhang Donna D
Department of Pharmacology and Toxicology, University of Arizona, Tucson, AZ 85721, USA.
Mol Cell Biol. 2009 May;29(10):2658-72. doi: 10.1128/MCB.01639-08. Epub 2009 Mar 9.
To maintain intracellular redox homeostasis, genes encoding many antioxidants and detoxification enzymes are transcriptionally upregulated upon deleterious oxidative stress through the cis antioxidant responsive elements (AREs) in their promoter regions. Nrf2 is the critical transcription factor responsible for ARE-dependent transcription. We and others have previously demonstrated that Nrf2 is targeted for ubiquitin-mediated degradation by Keap1 in a redox-sensitive manner through modifications of distinct cysteine residues of Keap1. Here, we report that p300/CBP directly acetylates Nrf2 in response to arsenite-induced stress. We have identified multiple acetylated lysine residues within the Nrf2 Neh1 DNA-binding domain. Combined lysine-to-arginine mutations on the acetylation sites, with no effects on Nrf2 protein stability, compromised the DNA-binding activity of Nrf2 in a promoter-specific manner. These findings demonstrated that acetylation of Nrf2 by p300/CBP augments promoter-specific DNA binding of Nrf2 and established acetylation as a novel regulatory mechanism that functions in concert with Keap1-mediated ubiquitination in modulating the Nrf2-dependent antioxidant response.
为维持细胞内氧化还原稳态,编码多种抗氧化剂和解毒酶的基因在有害氧化应激作用下,通过其启动子区域的顺式抗氧化反应元件(AREs)在转录水平上被上调。Nrf2是负责ARE依赖性转录的关键转录因子。我们和其他人之前已经证明,Nrf2在氧化还原敏感的方式下,通过Keap1不同半胱氨酸残基的修饰,被Keap1靶向进行泛素介导的降解。在此,我们报道p300/CBP响应亚砷酸盐诱导的应激直接乙酰化Nrf2。我们已经在Nrf2 Neh1 DNA结合结构域内鉴定出多个乙酰化赖氨酸残基。乙酰化位点上赖氨酸到精氨酸的联合突变,在不影响Nrf2蛋白稳定性的情况下,以启动子特异性方式损害了Nrf2的DNA结合活性。这些发现表明p300/CBP对Nrf2的乙酰化增强了Nrf2启动子特异性的DNA结合,并确立了乙酰化作为一种新的调节机制,与Keap1介导的泛素化协同作用,调节Nrf2依赖性抗氧化反应。