Effect of Long-Term Low-Dose Arsenic Exposure on DNA Methylation and Gene Expression in Human Liver Cells

被引:5
作者
Stoesser, Sandra [1 ]
Lumpp, Tatjana [1 ]
Fischer, Franziska [1 ]
Gunesch, Sarah [1 ]
Schumacher, Paul [1 ]
Hartwig, Andrea [1 ]
机构
[1] Karlsruhe Inst Technol KIT, Dept Food Chem & Toxicol, Inst Appl Biosci IAB, D-76131 Karlsruhe, Germany
关键词
arsenic; DNA methyltransferase; gene expression profiles; hypomethylation; cytotoxicity; cell cycle; HepG2; INDUCED MALIGNANT-TRANSFORMATION; DE-NOVO METHYLATION; ZINC-FINGER; REPAIR; HYPOMETHYLATION; POLY(ADP-RIBOSYL)ATION; METABOLITES; ARREST; DNMT3A;
D O I
10.3390/ijms242015238
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Millions of people around the world are exposed to elevated levels of arsenic through food or drinking water. Epidemiological studies have linked chronic arsenic exposure to an increased risk of several cancers, cardiovascular disease, central nervous system neuropathies, and genotoxic as well as immunotoxic effects. In addition to the induction of oxidative stress and inhibition of DNA repair processes, epigenetic effects, including altered DNA methylation patterns resulting in aberrant gene expression, may contribute to carcinogenicity. However, the underlying mechanisms by which chronic micromolar concentrations of arsenite affect the methylation status of DNA are not fully understood. In this study, human HepG2 hepatocarcinoma cells were treated with 0.5-10 mu M sodium arsenite for 24 h, 10, or 20 days. During these periods, the effects on global DNA methylation, cell cycle phase distribution, and gene expression were investigated. While no impact on DNA methylation was seen after short-term exposure, global hypomethylation was observed at both long-term exposure periods, with concomitant induction of the DNA methyltransferase genes DNMT1 and DNMT3B, while DNMT3A was slightly down-regulated. Pronounced time- and concentration-dependent effects were also seen in the case of genes involved in DNA damage response and repair, inflammation, oxidative stress response, and metal homeostasis. These results suggest that chronic low-dose arsenite exposure can lead to global hypomethylation. As an underlying mechanism, the consistent down-regulation of DNA methyltransferase genes could be excluded; alternatively, interactions at the protein level could play an important role.
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页数:18
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