Neuronal Activity–Induced Gadd45b Promotes Epigenetic DNA Demethylation and Adult Neurogenesis
Neuronal Activity–Induced Gadd45b Promotes Epigenetic DNA Demethylation and Adult Neurogenesis
The mammalian brain exhibits diverse types of neural plasticity, including activity-dependent neurogenesis in the adult hippocampus. How transient activation of mature neurons leads to long-lasting modulation of adult neurogenesis is unknown. Here we identify Gadd45b as a neural activity–induced immediate early gene in mature hippocampal neurons. Mice with Gadd45b deletion exhibit specific deficits in neural activity–induced proliferation of neural progenitors and dendritic growth of newborn neurons in the adult hippocampus. Mechanistically, Gadd45b is required for activity-induced DNA demethylation of specific promoters and expression of corresponding genes critical for adult neurogenesis, including brain-derived neurotrophic factor and fibroblast growth factor. Thus, Gadd45b links neuronal circuit activity to epigenetic DNA modification and expression of secreted factors in mature neurons for extrinsic modulation of neurogenesis in the adult brain.
- Johns Hopkins Medicine United States
- Johns Hopkins University Sch of Medicine United States
- Johns Hopkins University School of Medicine United States
- Yale University United States
- School of Medicine Yale University United States
Mice, Knockout, Neurons, Electroshock, Brain-Derived Neurotrophic Factor, Gene Expression Profiling, Neurogenesis, Physical Exertion, DNA, Dendrites, DNA Methylation, Antigens, Differentiation, Hippocampus, Epigenesis, Genetic, Mice, Dentate Gyrus, Animals, Fibroblast Growth Factor 1, Genes, Immediate-Early, Cells, Cultured, Cell Proliferation
Mice, Knockout, Neurons, Electroshock, Brain-Derived Neurotrophic Factor, Gene Expression Profiling, Neurogenesis, Physical Exertion, DNA, Dendrites, DNA Methylation, Antigens, Differentiation, Hippocampus, Epigenesis, Genetic, Mice, Dentate Gyrus, Animals, Fibroblast Growth Factor 1, Genes, Immediate-Early, Cells, Cultured, Cell Proliferation
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