褪黑素
NMDA受体
内科学
视交叉上核
褪黑激素受体
内分泌学
奶油
受体
神经科学
化学
生物
下丘脑
医学
生物化学
转录因子
基因
作者
Qian Wang,Dexiao Zhu,Shuo Ping,Chuangang Li,Kunkun Pang,Shaowei Zhu,Jing Zhang,Stefano Comai,Jinhao Sun
摘要
Abstract Melatonin (MLT) is widely used to treat sleep disorders although the underlying mechanism is still elusive. In mice, using wheel‐running detection, we found that exogenous MLT could completely recover the period length prolonged by N‐methyl‐D‐aspartate receptor (NMDAR) impairment due to the injection of the NMDAR antagonist MK‐801, a preclinical model of psychosis. The analysis of the possible underlying mechanisms indicated that MLT could regulate the homeostatic state in the ventrolateral preoptic nucleus (VLPO) instead of the circadian process in the suprachiasmatic nucleus (SCN). In addition, our data showed that MK‐801 decreased Ca 2+ ‐related CaMKII expression and CREB phosphorylation levels in the VLPO, and MLT could rescue these intracellular impairments but not NMDAR expression levels. Accordingly, Gcamp6 AAV virus was injected in‐vivo to further monitor intracellular Ca 2+ levels in the VLPO, and MLT demonstrated a unique ability to increase Ca 2+ fluorescence compared with MK‐801‐injected mice. Additionally, using the selective melatonin MT 2 receptor antagonist 4‐phenyl‐2‐propionamidotetralin (4P‐PDOT), we discovered that the pharmacological effects of MLT upon NMDAR impairments were mediated by melatonin MT 2 receptors. Using electroencephalography/electromyography (EEG/EMG) recordings, we observed that the latency to the first nonrapid eye movement (NREM) sleep episode was delayed by MK‐801, and MLT was able to recover this delay. In conclusion, exogenous MLT by acting upon melatonin MT 2 receptors rescues sleep phase delayed by NMDAR impairment via increasing intracellular Ca 2+ signaling in the VLPO, suggesting a regulatory role of the neurohormone on the homeostatic system.
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