Reactive Oxygen Species-Dependent Down-Regulation of Tumor Suppressor Genes PTEN, USP28, DRAM, TIGAR, and CYLD Under Oxidative Stress

被引:1
作者
Su-Jung Kim
Hyun-Joo Jung
Chang-Jin Lim
机构
[1] Kangwon National University,Department of Biochemistry
[2] Yonsei University College of Medicine,Department of Anatomy
来源
Biochemical Genetics | 2013年 / 51卷
关键词
Tumor suppressor; Reactive oxygen species; Glutathione; Serum deprivation; Glutaredoxin;
D O I
暂无
中图分类号
学科分类号
摘要
We examined whether steady-state mRNA levels of five tumor suppressor genes are subjected to oxidative stress. Superoxide radical-generating menadione and serum deprivation diminished the steady-state mRNA levels for the genes phosphatase and tensin homolog (PTEN), ubiquitin specific peptidase 28 (USP28), damage-regulated autophagy modulator (DRAM), TP53-induced glycolysis and apoptosis regulator (TIGAR), and cylindromatosis (CYLD). Hydrogen peroxide showed suppression in steady-state mRNA levels for USP28, DRAM, TIGAR, and CYLD but not for PTEN. The steady-state mRNA levels specific for all five genes were enhanced by antioxidants, such as glutathione and N-acetylcysteine. The HepG2 stable transfectants overexpressing the mitochondrial isoform of human glutaredoxin, Grx2a, and containing a relatively low reactive oxygen species (ROS) level were assessed to contain the increased steady-state mRNA levels specific for the five tumor suppressor genes. In brief, the steady-state mRNA levels specific for these genes are negatively regulated by oxidative stress through the mediation of ROS.
引用
收藏
页码:901 / 915
页数:14
相关论文
共 265 条
[1]  
Acharya A(2010)Redox regulation in cancer: a double-edged sword with therapeutic potential Oxid Med Cell Longev 3 23-34
[2]  
Das I(2005)Cyclooxygenase inhibitors induce the expression of the tumor suppressor gene EGR-1, which results in the up-regulation of NAG-1, an antitumorigenic protein Mol Pharmacol 67 356-364
[3]  
Chandhok D(2011)SirT3 suppresses hypoxia inducible factor 1α and tumor growth by inhibiting mitochondrial ROS production Oncogene 30 2986-2996
[4]  
Saha T(2006)TIGAR, a p53-inducible regulator of glycolysis and apoptosis Cell 126 107-120
[5]  
Baek SJ(2009)Modulation of intracellular ROS levels by TIGAR controls autophagy EMBO J 28 3015-3026
[6]  
Kim JS(2008)Cellular responses to reactive oxygen species-induced DNA damage and aging Biol Chem 389 211-220
[7]  
Moore SM(2000)Identification of the familial cylindromatosis tumour-suppressor gene Nat Genet 25 160-165
[8]  
Lee SH(2003)Epigenetic regulation of a novel tumor suppressor gene (hDAB2IP) in prostate cancer cell lines J Biol Chem 278 3121-3130
[9]  
Martinez J(2008)Glutathione and apoptosis Free Radic Res 42 689-706
[10]  
Eling TE(2006)DRAM, a p53-induced modulator of autophagy, is critical for apoptosis Cell 126 121-134