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过氧化物酶体增殖物激活受体α(PPARα)的激活促使小鼠肝脏中Gadd45b启动子的CpG岛发生去甲基化。

PPARα activation drives demethylation of the CpG islands of the Gadd45b promoter in the mouse liver.

作者信息

Kim Jung-Hwan, Wahyudi Lilik Duwi, Kim Kee K, Gonzalez Frank J

机构信息

Department of Pharmacology, School of Medicine, Institute of Health Sciences, Gyeongsang National University, Jinju 52727, Republic of Korea.

Department of Pharmacology, School of Medicine, Institute of Health Sciences, Gyeongsang National University, Jinju 52727, Republic of Korea.

出版信息

Biochem Biophys Res Commun. 2016 Aug 5;476(4):293-298. doi: 10.1016/j.bbrc.2016.05.115. Epub 2016 May 24.

Abstract

Growth arrest and DNA damage-inducible beta (GADD45b) plays a pivotal role in many intracellular events in both cell survival- and cell death-related signaling. To date, the study of GADD35b has mainly focused on investigation of its function, as well as interacting molecules. However, studies of Gadd45b gene regulation are limited. In this study, we investigated the transcriptional regulation mechanism of Gadd45b. Since Gadd45b mRNA is highly induced by the PPARα agonist Wy-14,643 in the mouse liver, we analyzed the Gadd45b promoter using an in vivo reporter assay. Interestingly, the naked Gadd45b-luciferase construct strongly induced luciferase activity without any stimulant in our in vivo system. Therefore, we investigated the epigenetic changes in the Gadd45b promoter region using mouse liver genomic DNA, the methylation-specific restriction enzyme (HpaII), and disulfide conversion. Our results showed that two possible CpG methylation sites were methylated and demethylated by Wy-14,643 treatment. This study indicates that epigenetic change at the Gadd45b promoter is critical for Gadd45b induction.

摘要

生长停滞和DNA损伤诱导蛋白β(GADD45b)在细胞存活和细胞死亡相关信号传导的许多细胞内事件中起关键作用。迄今为止,对GADD35b的研究主要集中在其功能以及相互作用分子的研究上。然而,对Gadd45b基因调控的研究有限。在本研究中,我们研究了Gadd45b的转录调控机制。由于Gadd45b mRNA在小鼠肝脏中被PPARα激动剂Wy-14,643高度诱导,我们使用体内报告基因测定法分析了Gadd45b启动子。有趣的是,在我们的体内系统中,裸露的Gadd45b-荧光素酶构建体在没有任何刺激物的情况下强烈诱导荧光素酶活性。因此,我们使用小鼠肝脏基因组DNA、甲基化特异性限制酶(HpaII)和二硫键转化研究了Gadd45b启动子区域的表观遗传变化。我们的结果表明,两个可能的CpG甲基化位点通过Wy-14,643处理发生甲基化和去甲基化。本研究表明,Gadd45b启动子处的表观遗传变化对Gadd45b的诱导至关重要。

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