TET enzymes, TDG and the dynamics of DNA demethylation.

TitleTET enzymes, TDG and the dynamics of DNA demethylation.
Publication TypeJournal Article
AuthorsKohli, Rahul M., and Yi Zhang
PubMed ID24153300
PubMed Central IDPMC4046508
Grant ListGM068804 / GM / NIGMS NIH HHS / United States
K08 AI089242 / AI / NIAID NIH HHS / United States
K08-AI089242 / AI / NIAID NIH HHS / United States
R01 GM068804 / GM / NIGMS NIH HHS / United States
U01 DK089565 / DK / NIDDK NIH HHS / United States
U01DK089565 / DK / NIDDK NIH HHS / United States
/ / Howard Hughes Medical Institute / United States

DNA methylation has a profound impact on genome stability, transcription and development. Although enzymes that catalyse DNA methylation have been well characterized, those that are involved in methyl group removal have remained elusive, until recently. The transformative discovery that ten-eleven translocation (TET) family enzymes can oxidize 5-methylcytosine has greatly advanced our understanding of DNA demethylation. 5-Hydroxymethylcytosine is a key nexus in demethylation that can either be passively depleted through DNA replication or actively reverted to cytosine through iterative oxidation and thymine DNA glycosylase (TDG)-mediated base excision repair. Methylation, oxidation and repair now offer a model for a complete cycle of dynamic cytosine modification, with mounting evidence for its significance in the biological processes known to involve active demethylation.

Title TET enzymes, TDG and the dynamics of DNA demethylation.
Publication Title Nature
Publication Type Journal Article
Published Year 2013
Authors R.M. Kohli; Y. Zhang
ISSN Number 1476-4687
PubMed ID 24153300
PubMed Central ID PMC4046508
Grant List
GM068804 GM NIGMS NIH HHS United States
K08 AI089242 AI NIAID NIH HHS United States
K08-AI089242 AI NIAID NIH HHS United States
R01 GM068804 GM NIGMS NIH HHS United States
U01 DK089565 DK NIDDK NIH HHS United States
U01DK089565 DK NIDDK NIH HHS United States

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