PlumX Metrics
Embed PlumX Metrics

Dnmt3a knockout in excitatory neurons impairs postnatal synapse maturation and increases the repressive histone modification H3K27me3

eLife, ISSN: 2050-084X, Vol: 11
2022
  • 13
    Citations
  • 0
    Usage
  • 39
    Captures
  • 0
    Mentions
  • 34
    Social Media
Metric Options:   Counts1 Year3 Year

Metrics Details

  • Citations
    13
  • Captures
    39
  • Social Media
    34
    • Shares, Likes & Comments
      34
      • Facebook
        34

Article Description

Two epigenetic pathways of transcriptional repression, DNA methylation and Polycomb repressive complex 2 (PRC2) are known to regulate neuronal development and function. However, their respective contributions to brain maturation are unknown. We found that conditional loss of the de novo DNA methyltransferase Dnmt3a in mouse excitatory neurons altered expression of synapse-related genes, stunted synapse maturation, and impaired working memory and social interest. At the genomic level, loss of Dnmt3a abolished postnatal accumulation of CG and non-CG DNA methylation, leaving adult neurons with an unmethylated, fetal-like epigenomic pattern at ~222,000 genomic regions. The PRC2-associated histone modification, H3K27me3, increased at many of these sites. Our data support a dynamic interaction between two fundamental modes of epigenetic repression during postnatal maturation of excitatory neurons, which together confer robustness on neuronal regulation.

Bibliographic Details

Li, Junhao; Pinto-Duarte, Antonio; Zander, Mark; Cuoco, Michael S; Lai, Chi-Yu; Osteen, Julia; Fang, Linjing; Luo, Chongyuan; Lucero, Jacinta D; Gomez-Castanon, Rosa; Nery, Joseph R; Silva-Garcia, Isai; Pang, Yan; Sejnowski, Terrence J; Powell, Susan B; Ecker, Joseph R; Mukamel, Eran A; Behrens, M Margarita

eLife Sciences Publications, Ltd

Neuroscience; Biochemistry, Genetics and Molecular Biology; Immunology and Microbiology

Provide Feedback

Have ideas for a new metric? Would you like to see something else here?Let us know