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Early growth response 2 in the mPFC regulates mouse social and cooperative behaviors.

Lab animal (2023-01-17)
Yanli Zhang, Weixi Feng, Ze Wang, Yingting Pang, Yuxi Jin, Sijia Chen, Shixin Ding, Tianqi Wang, Ying Zou, Peng Sun, Yan Chen, Hu Feng, Huang Huang, Chengyu Sheng, Ming Xiao
RÉSUMÉ

Adolescent social neglect impairs social performance, but the underlying molecular mechanisms remain unclear. Here we report that isolation rearing of juvenile mice caused cooperation defects that were rescued by immediate social reintroduction. We also identified the transcription factor early growth response 2 (Egr2) in the medial prefrontal cortex (mPFC) as a major target of social isolation and resocialization. Isolation rearing increased corticosteroid production, which reduced the expression of Egr2 in the mPFC, including in oligodendrocytes. Overexpressing Egr2 ubiquitously in the mPFC, but not specifically in neurons nor in oligodendroglia, protected mice from the isolation rearing-induced cooperation defect. In addition to synapse integrity, Egr2 also regulated the development of oligodendroglia, specifically the transition from undifferentiated oligodendrocyte precursor cells to premyelinating oligodendrocytes. In conclusion, this study reveals the importance of mPFC Egr2 in the cooperative behavior that is modulated by social experience, and its unexpected role in oligodendrocyte development.

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Sigma-Aldrich
Désoxyribonucléase I from bovine pancreas, Type II-S, lyophilized powder, Protein ≥80 %, ≥2,000 units/mg protein
Sigma-Aldrich
Anti-Synaptophysin Antibody, clone SY38, clone SY38, from mouse