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Neocortical Tet3-mediated accumulation of 5-hydroxymethylcytosine promotes rapid behavioral adaptation

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2014

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Proceedings of the National Academy of Sciences
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Li, X., W. Wei, Q.-Y. Zhao, J. Widagdo, D. Baker-Andresen, C. R. Flavell, A. D’Alessio, Y. Zhang, and T. W. Bredy. 2014. “Neocortical Tet3-Mediated Accumulation of 5-Hydroxymethylcytosine Promotes Rapid Behavioral Adaptation.” Proceedings of the National Academy of Sciences 111 (19) (May 13): 7120–7125.

Abstract

5-hydroxymethylcytosine (5-hmC) is a novel DNA modification that is highly enriched in the adult brain and dynamically regulated by neural activity. 5-hmC accumulates across the lifespan; however, the functional relevance of this change in 5-hmC and whether it is necessary for behavioral adaptation have not been fully elucidated. Moreover, although the ten-eleven translocation (Tet) family of enzymes is known to be essential for converting methylated DNA to 5-hmC, the role of individual Tet proteins in the adult cortex remains unclear. Using 5-hmC capture together with high-throughput DNA sequencing on individual mice, we show that fear extinction, an important form of reversal learning, leads to a dramatic genome-wide redistribution of 5-hmC within the infralimbic prefrontal cortex. Moreover, extinction learning-induced Tet3-mediated accumulation of 5-hmC is associated with the establishment of epigenetic states that promote gene expression and rapid behavioral adaptation.

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