Menin Reduces Parvalbumin Expression and is Required for the Anti-Depressant Function of Ketamine

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Abstract

Dysfunction of parvalbumin (PV) neurons is closely involved in depression, however, the detailed mechanism remains unclear. Based on the previous finding that multiple endocrine neoplasia type 1 (Protein: Menin; Gene: Men1) mutation (G503D) is associated with a higher risk of depression, a Menin-G503D mouse model is generated that exhibits heritable depressive-like phenotypes and increases PV expression in brain. This study generates and screens a serial of neuronal specific Men1 deletion mice, and found that PV interneuron Men1 deletion mice (PcKO) exhibit increased cortical PV levels and depressive-like behaviors. Restoration of Menin, knockdown PV expression or inhibition of PV neuronal activity in PV neurons all can ameliorate the depressive-like behaviors of PcKO mice. This study next found that ketamine stabilizes Menin by inhibiting protein kinase A (PKA) activity, which mediates the anti-depressant function of ketamine. These results demonstrate a critical role for Menin in depression, and prove that Menin is key to the antidepressant function of ketamine.

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APA

Leng, L., Zhuang, K., Lin, H., Ding, J., Yang, S., Yuan, Z., … Zhang, J. (2024). Menin Reduces Parvalbumin Expression and is Required for the Anti-Depressant Function of Ketamine. Advanced Science, 11(5). https://doi.org/10.1002/advs.202305659

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