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Dynamic Interplay between the Transcriptome and Methylome in Response to Oxidative and Alkylating Stress.
Deferme, Lize; Wolters, Jarno E J; Claessen, Sandra M H; Theunissen, Daniel H J; van den Beucken, Twan; Wagner, J Richard; van Breda, Simone G; Kleinjans, Jos C S; Briedé, Jacco J.
Affiliation
  • Deferme L; Department of Toxicogenomics, School of Oncology and Developmental Biology (GROW), Maastricht University , 6200 MD Maastricht, The Netherlands.
  • Wolters JE; ExxonMobil Petroleum and Chemicals , Hermeslaan 2, 1831 Machelen, Belgium.
  • Claessen SM; Department of Toxicogenomics, School of Oncology and Developmental Biology (GROW), Maastricht University , 6200 MD Maastricht, The Netherlands.
  • Theunissen DH; Department of Toxicogenomics, School of Oncology and Developmental Biology (GROW), Maastricht University , 6200 MD Maastricht, The Netherlands.
  • van den Beucken T; Department of Toxicogenomics, School of Oncology and Developmental Biology (GROW), Maastricht University , 6200 MD Maastricht, The Netherlands.
  • Wagner JR; Department of Toxicogenomics, School of Oncology and Developmental Biology (GROW), Maastricht University , 6200 MD Maastricht, The Netherlands.
  • van Breda SG; Département de médecine nucléaire et radiobiologie, Faculté de médecine et des sciences de la santé, Université de Sherbrooke , Sherbrooke, Québec, Canada J1H 5N4.
  • Kleinjans JC; Department of Toxicogenomics, School of Oncology and Developmental Biology (GROW), Maastricht University , 6200 MD Maastricht, The Netherlands.
  • Briedé JJ; Department of Toxicogenomics, School of Oncology and Developmental Biology (GROW), Maastricht University , 6200 MD Maastricht, The Netherlands.
Chem Res Toxicol ; 29(9): 1428-38, 2016 09 19.
Article in En | MEDLINE | ID: mdl-27509014
ABSTRACT
In recent years, it has been shown that free radicals not only react directly with DNA but also regulate epigenetic processes such as DNA methylation, which may be relevant within the context of, for example, tumorigenesis. However, how these free radicals impact the epigenome remains unclear. We therefore investigated whether methyl and hydroxyl radicals, formed by tert-butyl hydroperoxide (TBH), change temporal DNA methylation patterns and how this interferes with genome-wide gene expression. At three time points, TBH-induced radicals in HepG2 cells were identified by electron spin resonance spectroscopy. Total 5-methylcytosine (5mC) levels were determined by liquid chromatography and tandem mass spectrometry and genome-wide changes in 5mC and gene expression by microarrays. Induced methylome changes rather represent an adaptive response to the oxidative stress-related reactions observed in the transcriptome. More specifically, we found that methyl radicals did not induce DNA methylation directly. An initial oxidative and alkylating stress-related response of the transcriptome during the early phase of TBH treatment was followed by an epigenetic response associated with cell survival signaling. Also, we identified genes of which the expression seems directly regulated by DNA methylation. This work suggests an important role of the methylome in counter-regulating primary oxidative and alkylating stress responses in the transcriptome to restore normal cell function. Altogether, the methylome may play an important role in counter-regulating primary oxidative and alkylating stress responses in the transcriptome presumably to restore normal cell function.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Stress, Physiological / Oxidative Stress / DNA Methylation / Transcriptome Limits: Humans Language: En Journal: Chem Res Toxicol Journal subject: TOXICOLOGIA Year: 2016 Document type: Article Affiliation country: Netherlands

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Stress, Physiological / Oxidative Stress / DNA Methylation / Transcriptome Limits: Humans Language: En Journal: Chem Res Toxicol Journal subject: TOXICOLOGIA Year: 2016 Document type: Article Affiliation country: Netherlands