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The Relevance of AgRP Neuron-Derived GABA Inputs to POMC Neurons Differs for Spontaneous and Evoked Release

机译:AgRP神经元衍生的GABA输入与POMC神经元的自发性和诱发性释放的相关性

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摘要

Hypothalamic agouti-related peptide (AgRP) neurons potently stimulate food intake, whereas proopiomelanocortin (POMC) neurons inhibit feeding. Whether AgRP neurons exert their orexigenic actions, at least in part, by inhibiting anorexigenic POMC neurons remains unclear. Here, the connectivity between GABA-releasing AgRP neurons and POMC neurons was examined in brain slices from male and female mice. GABA-mediated spontaneous IPSCs (sIPSCs) in POMC neurons were unaffected by disturbing GABA release from AgRP neurons either by cell type-specific deletion of the vesicular GABA transporter or by expression of botulinum toxin in AgRP neurons to prevent vesicle-associated membrane protein 2-dependent vesicle fusion. Additionally, there was no difference in the ability of μ-opioid receptor (MOR) agonists to inhibit sIPSCs in POMC neurons when MORs were deleted from AgRP neurons, and activation of the inhibitory designer receptor hM4Di on AgRP neurons did not affect sIPSCs recorded from POMC neurons. These approaches collectively indicate that AgRP neurons do not significantly contribute to the strong spontaneous GABA input to POMC neurons. Despite these observations, optogenetic stimulation of AgRP neurons reliably produced evoked IPSCs in POMC neurons, leading to the inhibition of POMC neuron firing. Thus, AgRP neurons can potently affect POMC neuron function without contributing a significant source of spontaneous GABA input to POMC neurons. Together, these results indicate that the relevance of GABAergic inputs from AgRP to POMC neurons is state dependent and highlight the need to consider different types of transmitter release in circuit mapping and physiologic regulation.>SIGNIFICANCE STATEMENT Agouti-related peptide (AgRP) neurons play an important role in driving food intake, while proopiomelanocortin (POMC) neurons inhibit feeding. Despite the importance of these two well characterized neuron types in maintaining metabolic homeostasis, communication between these cells remains poorly understood. To provide clarity to this circuit, we made electrophysiological recordings from mouse brain slices and found that AgRP neurons do not contribute spontaneously released GABA onto POMC neurons, although when activated with channelrhodopsin AgRP neurons inhibit POMC neurons through GABA-mediated transmission. These findings indicate that the relevance of AgRP to POMC neuron GABA connectivity depends on the state of AgRP neuron activity and suggest that different types of transmitter release should be considered when circuit mapping.
机译:下丘脑刺痛相关肽(AgRP)神经元有效刺激食物摄入,而促黑素皮质素(POMC)神经元抑制进食。尚不清楚AgRP神经元是否至少部分通过抑制厌食性POMC神经元而发挥其促呕作用。在这里,在雄性和雌性小鼠的脑切片中检查了释放GABA的AgRP神经元和POMC神经元之间的连通性。 POMC神经元中的GABA介导的自发IPSC(sIPSCs)不受以下因素的影响:通过细胞类型特异性缺失水泡GABA转运蛋白或通过AgRP神经元中肉毒杆菌毒素的表达来阻止与囊泡相关的膜蛋白2干扰AgRP神经元释放GABA。依赖性囊泡融合。此外,当从AgRP神经元中删除MORs时,μ阿片受体(MOR)激动剂抑制POMC神经元中sIPSC的能力没有差异,并且AgRP神经元上抑制性设计受体hM4Di的激活不影响POMC记录的sIPSC。神经元。这些方法共同表明,AgRP神经元对POMC神经元的强自发GABA输入没有明显贡献。尽管有这些观察结果,AgRP神经元的光遗传学刺激可靠地在POMC神经元中产生了诱发的IPSC,从而导致了POMC神经元放电的抑制。因此,AgRP神经元可以有效地影响POMC神经元功能,而不会为POMC神经元贡献大量自发GABA输入。总之,这些结果表明,AgRP与POMC神经元的GABA能量输入相关性取决于状态,并强调在电路作图和生理调节中需要考虑不同类型的递质释放。>意义声明 Agouti相关肽(AgRP)神经元在驱动食物摄取方面起重要作用,而proopiomelanocortin(POMC)神经元则抑制进食。尽管这两种具有良好特征的神经元类型在维持代谢稳态方面很重要,但这些细胞之间的通讯仍知之甚少。为了使该电路更清晰,我们从小鼠脑切片进行了电生理学记录,发现AgRP神经元虽然被通道视紫红质激活但不会通过GABA介导的传递抑制POMC神经元,但不会将其自发释放的GABA贡献到POMC神经元上。这些发现表明,AgRP与POMC神经元GABA连接性的相关性取决于AgRP神经元活动的状态,并建议在电路映射时应考虑不同类型的变送器释放。

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