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首页> 外文期刊>The Journal of biological chemistry >Acetylation-Deacetylation of the Transcription Factor Nrf2 (Nuclear Factor Erythroid 2-related Factor 2) Regulates Its Transcriptional Activity and Nucleocytoplasmic Localization
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Acetylation-Deacetylation of the Transcription Factor Nrf2 (Nuclear Factor Erythroid 2-related Factor 2) Regulates Its Transcriptional Activity and Nucleocytoplasmic Localization

机译:转录因子NRF2的乙酰化 - 脱乙酰化(核因子红细胞2相关因子2)调节其转录活性和核细胞间质

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摘要

Activation of Nrf2 by covalent modifications that release it from its inhibitor protein Keap1 has been extensively documented. In contrast, covalent modifications that may regulate its action after its release from Keap1 have received little attention. Here we show that CREB-binding protein induced acetylation of Nrf2, increased binding of Nrf2 to its cognate response element in a target gene promoter, and increased Nrf2-dependent transcription from target gene promoters. Heterologous sirtuin 1 (SIRT1) decreased acetylation of Nrf2 as well as Nrf2-dependent gene transcription, and its effects were overridden by dominant negative SIRT1 (SIRT1-H355A). The SIRT1-selective inhibitors EX-527 and nicotinamide stimulated Nrf2-dependent gene transcription, whereas resveratrol, a putative activator of SIRT1, was inhibitory, mimicking the effect of SIRT1. Mutating lysine to alanine or to arginine at Lys588 and Lys591 of Nrf2 resulted in decreased Nrf2-dependent gene transcription and abrogated the transcription-activating effect of CREB-binding protein. Furthermore, SIRT1 had no effect on transcription induced by these mutants, indicating that these sites are acetylation sites. Microscope imaging of GFP-Nrf2 in HepG2 cells as well as immunoblotting for Nrf2 showed that acetylation conditions resulted in increased nuclear localization of Nrf2, whereas deacetylation conditions enhanced its cytoplasmic rather than its nuclear localization. We posit that Nrf2 in the nucleus undergoes acetylation, resulting in binding, with basic-region leucine zipper protein(s), to the antioxidant response element and consequently in gene transcription, whereas deacetylation disengages it from the antioxidant response element, thereby resulting in transcriptional termination and subsequently in its nuclear export.
机译:通过共价修饰激活NRF2,其从其抑制剂蛋白Keap1中释放出它已被广泛记录。相比之下,可以在从keap1释放后调节其动作的共价修改已经收到了很少的关注。在这里,我们表明CREB结合蛋白质诱导NRF2的乙酰化,在靶基因启动子中增加NRF2与其同源响应元件的结合,并增加来自靶基因启动子的NRF2依赖性转录。异源Sirtuin 1(SIRT1)降低了NRF2的乙酰化以及NRF2依赖性基因转录,其作用被显性阴性SIRT1(SIRT1-H355A)覆盖。 SIRT1选择性抑制剂EX-527和烟酰胺刺激了NRF2依赖性基因转录,而白藜芦醇是SIRT1推定的活化剂,是抑制作用SIRT1的效果。将赖氨酸突变为丙氨酸或在Lys588的精氨酸和NRF2的Lys591导致NRF2依赖性基因转录减少,并且废除了CREB结合蛋白的转录激活作用。此外,SIRT1对这些突变体诱导的转录没有影响,表明这些位点是乙酰化位点。对于NRF2的HEPG2细胞中GFP-NRF2的显微镜成像以及NRF2的免疫印迹表明,乙酰化条件导致NRF2的核定位增加,而脱乙酰化条件增强了其细胞质而不是其核定位。我们在核中的NRF2在抗氧化响应元件中产生乙酰化,导致碱性亮氨酸拉链蛋白质的结合,并且在基因转录中,脱乙酰化从抗氧化剂反应元素中脱离,从而导致转录导致转录终止,随后在其核出口。

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