Abstract
The TET enzymes convert methylcytosine to the newly discovered base hydroxymethylcytosine. While recent reports suggest that TETs may play a role in response to oxidative stress, this role remains uncertain, and results lack in vivo models. Here we show a global decrease of hydroxymethylcytosine in cells treated with buthionine sulfoximine, and in mice depleted for the major antioxidant enzymes GPx1 and 2. Furthermore, genome-wide profiling revealed differentially hydroxymethylated regions in coding genes, and intriguingly in microRNA genes, both involved in response to oxidative stress. These results thus suggest a profound effect of in vivo oxidative stress on the global hydroxymethylome.
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CITATION STYLE
Delatte, B., Jeschke, J., Defrance, M., Bachman, M., Creppe, C., Calonne, E., … Fuks, F. (2015). Genome-wide hydroxymethylcytosine pattern changes in response to oxidative stress. Scientific Reports, 5. https://doi.org/10.1038/srep12714
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