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  • Menin Deficiency Leads to D...
    Leng, Lige; Zhuang, Kai; Liu, Zeyue; Huang, Changquan; Gao, Yuehong; Chen, Guimiao; Lin, Hui; Hu, Yu; Wu, Di; Shi, Meng; Xie, Wenting; Sun, Hao; Shao, Zhicheng; Li, Huifang; Zhang, Kunkun; Mo, Wei; Huang, Timothy Y.; Xue, Maoqiang; Yuan, Zengqiang; Zhang, Xia; Bu, Guojun; Xu, Huaxi; Xu, Qi; Zhang, Jie

    Neuron (Cambridge, Mass.), 11/2018, Letnik: 100, Številka: 3
    Journal Article

    Astrocyte dysfunction and inflammation are associated with the pathogenesis of major depressive disorder (MDD). However, the mechanisms underlying these effects remain largely unknown. Here, we found that multiple endocrine neoplasia type 1 (Men1; protein: menin) expression is attenuated in the brain of mice exposed to CUMS (chronic unpredictable mild stress) or lipopolysaccharide. Astrocyte-specific reduction of Men1 (GcKO) led to depressive-like behaviors in mice. We observed enhanced NF-κB activation and IL-1β production with menin deficiency in astrocytes, where depressive-like behaviors in GcKO mice were restored by NF-κB inhibitor or IL-1β receptor antagonist. Importantly, we identified a SNP, rs375804228, in human MEN1, where G503D substitution is associated with a higher risk of MDD onset. G503D substitution abolished menin-p65 interactions, thereby enhancing NF-κB activation and IL-1β production. Our results reveal a distinct astroglial role for menin in regulating neuroinflammation in depression, indicating that menin may be an attractive therapeutic target in MDD. •Astroglia menin deficiency leads to depressive-like behaviors in mice•Menin reduction in astrocytes promotes IL-1β generation through NF-κB activation•NF-κB and IL-1β inhibitors attenuate the depressive-like phenotypes•A MEN1 SNP associated with MDD risk leads to aberrant NF-κB activation Mechanisms underlying astrocyte-mediated neuroinflammation in depression remain unclear. Menin regulates NF-κB activity in astrocytes to promote neuroinflammation. Clinically, a MEN1 SNP is associated with the onset of depression. This study reveals a distinct role for menin in neuroinflammation and depression.