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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Agouti-related peptide and MC3/4 receptor agonists both inhibit excitatory hypothalamic ventromedial nucleus neurons.
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Agouti-related peptide and MC3/4 receptor agonists both inhibit excitatory hypothalamic ventromedial nucleus neurons.

机译:刺痛相关肽和MC3 / 4受体激动剂均抑制兴奋性下丘脑腹膜后核神经元。

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摘要

Anorexigenic melanocortins decrease food intake by activating MC3/MC4 receptors (MC3/4R); the prevailing view is that the orexigenic neuropeptide agouti-related peptide (AgRP) exerts the opposite action by acting as an antagonist at MC3/MC4 receptors. A total of 370 hypothalamic ventromedial nucleus (VMH) glutamatergic neurons was studied using whole-cell recording in hypothalamic slices from a novel mouse expressing green fluorescent protein (GFP) under control of the vesicular glutamate transporter 2 (vGluT2) promoter. Massive numbers of GFP-expressing VMH dendrites extended out of the core of the nucleus into the surrounding cell-poor shell. VMH dendrites received frequent appositions from AgRP-immunoreactive axons in the shell of the nucleus, but not the core, suggesting that AgRP may influence target VMH neurons. alpha-MSH, melanotan II (MTII), and selective MC3R or MC4R agonists were all inhibitory, reducing the spontaneous firing rate and hyperpolarizing vGluT2 neurons. The MC3/4R antagonist SHU9119 was excitatory. Unexpectedly, AgRP did not attenuate MTII actions on these neurons; instead, these two compounds showed an additive inhibitory effect. In the absence of synaptic activity, no hyperpolarization or change in input resistance was evoked by either MTII or AgRP, suggesting indirect actions. Consistent with this view, MTII increased the frequency of spontaneous and miniature IPSCs. In contrast, the mechanism of AgRP inhibition was dependent on presynaptic inhibition of EPSCs mediated by G(i)/G(o)-proteins, and was attenuated by pertussis toxin and NF023, inconsistent with mediation by G(s)-proteins associated with MC receptors. Together, our data suggest that the mechanism of AgRP actions on these excitatory VMH cells appears to be independent of the actions of melanocortins on MC receptors.
机译:引起厌食的黑皮质素通过激活MC3 / MC4受体(MC3 / 4R)减少食物摄入。普遍的看法是,致食性神经肽刺骨相关肽(AgRP)通过充当MC3 / MC4受体的拮抗剂发挥相反的作用。使用全细胞记录研究了在表达囊泡谷氨酸转运蛋白2(vGluT2)启动子控制下表达绿色荧光蛋白(GFP)的新型小鼠的下丘脑片中的总共370个下丘脑腹膜能神经元(VMH)的谷氨酸能神经元。大量表达GFP的VMH树突从核的核心延伸到周围缺乏细胞的外壳中。 VMH树突经常从核壳中的AgRP免疫反应性轴突处并发,但不是核心,这表明AgRP可能影响目标VMH神经元。 alpha-MSH,melanotan II(MTII)和选择性MC3R或MC4R激动剂均具有抑制作用,从而降低了自发放电速度并使vGluT2神经元超极化。 MC3 / 4R拮抗剂SHU9119具有兴奋性。出乎意料的是,AgRP并未减弱MTII对这些神经元的作用。相反,这两种化合物显示出累加抑制作用。在没有突触活动的情况下,MTII或AgRP均不会引起超极化或输入阻力的改变,提示是间接作用。与这种观点一致,MTII增加了自发和微型IPSC的频率。相比之下,AgRP抑制的机制取决于G(i)/ G(o)-蛋白介导的EPSC的突触前抑制,并被百日咳毒素和NF023减弱,这与G(s)/ G(o)-蛋白相关的介导不一致MC受体。总之,我们的数据表明,AgRP对这些兴奋性VMH细胞的作用机制似乎与黑皮质素对MC受体的作用无关。

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