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  5. Environmental enrichment increases transcriptional and epigenetic differentiation between mouse dorsal and ventral dentate gyrus

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Article
English
2018

Environmental enrichment increases transcriptional and epigenetic differentiation between mouse dorsal and ventral dentate gyrus

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0 Files

English
2018
Nature Communications
Vol 9 (1)
DOI: 10.1038/s41467-017-02748-x

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Richard M. Ryan
Richard M. Ryan

University of Rochester

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Tie-Yuan Zhang
Christopher L. Keown
Xianglan Wen
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Abstract

Early life experience influences stress reactivity and mental health through effects on cognitive-emotional functions that are, in part, linked to gene expression in the dorsal and ventral hippocampus. The hippocampal dentate gyrus (DG) is a major site for experience-dependent plasticity associated with sustained transcriptional alterations, potentially mediated by epigenetic modifications. Here, we report comprehensive DNA methylome, hydroxymethylome and transcriptome data sets from mouse dorsal and ventral DG. We find genome-wide transcriptional and methylation differences between dorsal and ventral DG, including at key developmental transcriptional factors. Peripubertal environmental enrichment increases hippocampal volume and enhances dorsal DG-specific differences in gene expression. Enrichment also enhances dorsal-ventral differences in DNA methylation, including at binding sites of the transcription factor NeuroD1, a regulator of adult neurogenesis. These results indicate a dorsal-ventral asymmetry in transcription and methylation that parallels well-known functional and anatomical differences, and that may be enhanced by environmental enrichment.

How to cite this publication

Tie-Yuan Zhang, Christopher L. Keown, Xianglan Wen, Junhao Li, Dulcie A. Vousden, Christoph Anacker, Urvashi Bhattacharyya, Richard M. Ryan, Josie Diorio, Nicholas O’Toole, Jason P. Lerch, Eran A. Mukamel, Michael J. Meaney (2018). Environmental enrichment increases transcriptional and epigenetic differentiation between mouse dorsal and ventral dentate gyrus. Nature Communications, 9(1), DOI: 10.1038/s41467-017-02748-x.

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Publication Details

Type

Article

Year

2018

Authors

13

Datasets

0

Total Files

0

Language

English

Journal

Nature Communications

DOI

10.1038/s41467-017-02748-x

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