卡彭
焦虑症
生物
抗焦虑药
药理学
神经科学
受体
生物化学
计算机科学
电信
波束赋形
作者
Li‐Juan Zhu,Tingyou Li,Chun‐Xia Luo,Nan Jiang,Lei Chang,Yu‐Hui Lin,Hai-Hui Zhou,Chen Chen,Yu Zhang,Wei Lü,Liyan Gao,Yu Ma,Li‐Juan Zhu,Qin Hu,Xiao Hu,Qian Zhang,Hai‐Yin Wu,Dong‐Ya Zhu
出处
期刊:Nature Medicine
[Springer Nature]
日期:2014-08-17
卷期号:20 (9): 1050-1054
被引量:86
摘要
Anxiety disorders are highly prevalent psychiatric diseases. There is need for a deeper understanding of anxiety control mechanisms in the mammalian brain and for development of new anxiolytic agents. Here we report that the coupling between neuronal nitric oxide synthase (nNOS) and its carboxy-terminal PDZ ligand (CAPON) can serve as a target for developing new anxiolytic agents. Augmenting nNOS-CAPON interaction in the hippocampus of mice by overexpressing full-length CAPON gave rise to anxiogenic-like behaviors, whereas dissociating CAPON from nNOS by overexpressing CAPON-125C or CAPON-20C (the C-terminal 125 or 20 amino acids of CAPON) or delivering Tat-CAPON-12C (a peptide comprising Tat and the 12 C-terminal amino acids of CAPON) in the hippocampus of mice produced anxiolytic-like effects. Mice subjected to chronic mild stress (CMS) displayed a substantial increase in nNOS-CAPON coupling in the hippocampus and a consequent anxiogenic-like phenotype. Disrupting nNOS-CAPON coupling reversed the CMS-induced anxiogenic-like behaviors. Moreover, small-molecule blockers of nNOS-CAPON binding rapidly produced anxiolytic-like effects. Dexamethasone-induced ras protein 1 (Dexras1)-extracellular signal-regulated kinase (ERK) signaling was involved in the behavioral effects of nNOS-CAPON association. Thus, nNOS-CAPON association contributes to the modulation of anxiety-related behaviors via regulating Dexras1-ERK signaling and can serve as a target for developing potential anxiolytics.
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