OGG1 is essential in oxidative stress induced DNA demethylation
DNA demethylation is an essential cellular activity to regulate gene expression; however, the mechanism that triggers DNA demethylation remains unknown. Furthermore, DNA demethylation was recently demonstrated to be induced by oxidative stress without a clear molecular mechanism. In this manuscript,...
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Veröffentlicht in: | Cellular signalling 2016-09, Vol.28 (9), p.1163-1171 |
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Sprache: | eng |
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Zusammenfassung: | DNA demethylation is an essential cellular activity to regulate gene expression; however, the mechanism that triggers DNA demethylation remains unknown. Furthermore, DNA demethylation was recently demonstrated to be induced by oxidative stress without a clear molecular mechanism. In this manuscript, we demonstrated that 8-oxoguanine DNA glycosylase-1 (OGG1) is the essential protein involved in oxidative stress-induced DNA demethylation. Oxidative stress induced the formation of 8-oxoguanine (8-oxoG). We found that OGG1, the 8-oxoG binding protein, promotes DNA demethylation by interacting and recruiting TET1 to the 8-oxoG lesion. Downregulation of OGG1 makes cells resistant to oxidative stress-induced DNA demethylation, while over-expression of OGG1 renders cells susceptible to DNA demethylation by oxidative stress. These data not only illustrate the importance of base excision repair (BER) in DNA demethylation but also reveal how the DNA demethylation signal is transferred to downstream DNA demethylation enzymes.
•OGG1 is involved in oxidative stress induced DNA demethylation.•OGG1 binds and recruits TET1 to the 8-oxodG adjacent 5mC site.•This manuscript illustrates the important roles of BER in DNA demethylation. |
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ISSN: | 0898-6568 1873-3913 |
DOI: | 10.1016/j.cellsig.2016.05.021 |