» Articles » PMID: 34337766

De Novo DNA Methylation Controls Neuronal Maturation During Adult Hippocampal Neurogenesis

Abstract

Adult neurogenesis enables the life-long addition of functional neurons to the hippocampus and is regulated by both cell-intrinsic molecular programs and behavioral activity. De novo DNA methylation is crucial for embryonic brain development, but its role during adult hippocampal neurogenesis has remained unknown. Here, we show that de novo DNA methylation is critical for maturation and functional integration of adult-born neurons in the mouse hippocampus. Bisulfite sequencing revealed that de novo DNA methyltransferases target neuronal enhancers and gene bodies during adult hippocampal neural stem cell differentiation, to establish neuronal methylomes and facilitate transcriptional up-regulation of neuronal genes. Inducible deletion of both de novo DNA methyltransferases Dnmt3a and Dnmt3b in adult neural stem cells did not affect proliferation or fate specification, but specifically impaired dendritic outgrowth and synaptogenesis of newborn neurons, thereby hampering their functional maturation. Consequently, abolishing de novo DNA methylation modulated activation patterns in the hippocampal circuitry and caused specific deficits in hippocampus-dependent learning and memory. Our results demonstrate that proper establishment of neuronal methylomes during adult neurogenesis is fundamental for hippocampal function.

Citing Articles

Multimodal insights into adult neurogenesis: An integrative review of multi-omics approaches.

Li J, Huang L, Xiao W, Kong J, Hu M, Pan A Heliyon. 2025; 11(4):e42668.

PMID: 40051854 PMC: 11883395. DOI: 10.1016/j.heliyon.2025.e42668.


Tissue-specific roles of de novo DNA methyltransferases.

Toth D, Szeri F, Ashaber M, Muazu M, Szekvolgyi L, Aranyi T Epigenetics Chromatin. 2025; 18(1):5.

PMID: 39819598 PMC: 11740433. DOI: 10.1186/s13072-024-00566-2.


Traversing the epigenetic landscape: DNA methylation from retina to brain in development and disease.

Xu C, Fu X, Qin H, Yao K Front Cell Neurosci. 2024; 18:1499719.

PMID: 39678047 PMC: 11637887. DOI: 10.3389/fncel.2024.1499719.


Decoding the Epigenetic Landscape: Insights into 5mC and 5hmC Patterns in Mouse Cortical Cell Types.

Wei X, Li J, Cheng Z, Wei S, Yu G, Olsen M bioRxiv. 2024; .

PMID: 39026756 PMC: 11257419. DOI: 10.1101/2024.07.06.602342.


Targeting neuronal epigenomes for brain rejuvenation.

Zocher S EMBO J. 2024; 43(16):3312-3326.

PMID: 39009672 PMC: 11329789. DOI: 10.1038/s44318-024-00148-8.


References
1.
Han L, Aghajani M, Clark S, Chan R, Hattab M, Shabalin A . Epigenetic Aging in Major Depressive Disorder. Am J Psychiatry. 2018; 175(8):774-782. PMC: 6094380. DOI: 10.1176/appi.ajp.2018.17060595. View

2.
Oliveira A, Hemstedt T, Bading H . Rescue of aging-associated decline in Dnmt3a2 expression restores cognitive abilities. Nat Neurosci. 2012; 15(8):1111-3. DOI: 10.1038/nn.3151. View

3.
Noguchi H, Kimura A, Murao N, Matsuda T, Namihira M, Nakashima K . Expression of DNMT1 in neural stem/precursor cells is critical for survival of newly generated neurons in the adult hippocampus. Neurosci Res. 2015; 95:1-11. DOI: 10.1016/j.neures.2015.01.014. View

4.
Potzsch A, Zocher S, Bernas S, Leiter O, Runker A, Kempermann G . L-lactate exerts a pro-proliferative effect on adult hippocampal precursor cells . iScience. 2021; 24(2):102126. PMC: 7895751. DOI: 10.1016/j.isci.2021.102126. View

5.
Wu H, Coskun V, Tao J, Xie W, Ge W, Yoshikawa K . Dnmt3a-dependent nonpromoter DNA methylation facilitates transcription of neurogenic genes. Science. 2010; 329(5990):444-8. PMC: 3539760. DOI: 10.1126/science.1190485. View