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Histamine inhibits the melanin-concentrating hormone system: implications for sleep and arousal

机译:组胺抑制黑色素浓缩激素系统:对睡眠和唤醒的影响

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摘要

Melanin-concentrating hormone (MCH)-producing neurons are known to regulate a wide variety of physiological functions such as feeding, metabolism, anxiety and depression, and reward. Recent studies have revealed that MCH neurons receive projections from several wake-promoting brain regions and are integral to the regulation of rapid eye movement (REM) sleep. Here, we provide evidence in both rats and mice that MCH neurons express histamine-3 receptors (H3R), but not histamine-1 (H1R) or histamine-2 (H2R) receptors. Electrophysiological recordings in brain slices from a novel line of transgenic mice that specifically express the reporter ZsGreen in MCH neurons show that histamine strongly inhibits MCH neurons, an effect which is TTX insensitive, and blocked by the intracellular presence of GDP-β-S. A specific H3R agonist, α-methylhistamine, mimicks the inhibitory effects of histamine, and a specific neutral H3R antagonist, VUF 5681, blocks this effect. Tertiapin Q (TPQ), a G protein-dependent inwardly rectifying potassium (GIRK) channel inhibitor, abolishes histaminergic inhibition of MCH neurons. These results indicate that histamine directly inhibits MCH neurons through H3R by activating GIRK channels and suggest that that inhibition of the MCH system by wake-active histaminergic neurons may be responsible for silencing MCH neurons during wakefulness and thus may be directly involved in the regulation of sleep and arousal.
机译:已知产生黑色素浓缩激素(MCH)的神经元可调节多种生理功能,例如进食,新陈代谢,焦虑和抑郁以及奖赏。最近的研究表明,MCH神经元从几个唤醒大脑的区域接受投射,并且是快速眼动(REM)睡眠调节的组成部分。在这里,我们在大鼠和小鼠中均提供了MCH神经元表达组胺3受体(H3R)而不表达组胺1(H1R)或组胺2(H2R)受体的证据。在MCH神经元中特异表达报告基因ZsGreen的新型转基因小鼠脑切片中的电生理记录显示,组胺强烈抑制MCH神经元,这种作用对TTX不敏感,并被GDP-β-S的细胞内存在所阻断。一种特定的H3R激动剂α-甲基组胺模仿了组胺的抑制作用,而一种特定的中性H3R拮抗剂VUF5681阻止了这种作用。 Tertiapin Q(TPQ)是一种G蛋白依赖性向内整流钾(GIRK)通道抑制剂,可消除MCH神经元的组胺抑制作用。这些结果表明,组胺通过激活GIRK通道直接通过H3R抑制MCH神经元,并表明唤醒活跃的组胺能神经元对MCH系统的抑制作用可能是导致清醒期间MCH神经元沉默的原因,因此可能直接参与睡眠的调节。和唤醒。

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