Department of Psychiatry, The University of Texas Southwestern Medical Center, Dallas, Texas 75390-9127, USA.
J Comp Neurol. 2012 Dec 15;520(18):4168-83. doi: 10.1002/cne.23145.
The central melanocortin system regulates body energy homeostasis including the melanocortin-4 receptor (MC4R). The lateral hypothalamic area (LHA) receives dense melanocortinergic inputs from the arcuate nucleus of the hypothalamus and regulates multiple processes including food intake, reward behaviors, and autonomic function. By using a mouse line in which green fluorescent protein (GFP) is expressed under control of the MC4R gene promoter, we systemically investigated MC4R signaling in the LHA by combining double immunohistochemistry, electrophysiology, and retrograde tracing techniques. We found that LHA MC4R-GFP neurons coexpress neurotensin as well as the leptin receptor but do not coexpress other peptide neurotransmitters found in the LHA including orexin, melanin-concentrating hormone, and nesfatin-1. Furthermore, electrophysiological recording demonstrated that leptin, but not the MC4R agonist melanotan II, hyperpolarizes the majority of LHA MC4R-GFP neurons in an ATP- sensitive potassium channel-dependent manner. Retrograde tracing revealed that LHA MC4R-GFP neurons do not project to the ventral tegmental area, dorsal raphe nucleus, nucleus accumbens, and spinal cord, and only limited number of neurons project to the nucleus of the solitary tract and parabrachial nucleus. Our findings provide new insights into MC4R signaling in the LHA and its potential implications in homeostatic regulation of body energy balance.
中央黑色素皮质系统调节身体能量稳态,包括黑色素皮质素 4 受体(MC4R)。外侧下丘脑区域(LHA)接收来自下丘脑弓状核的密集黑色素皮质素能输入,并调节多种过程,包括食物摄入、奖励行为和自主功能。通过使用一种绿色荧光蛋白(GFP)在 MC4R 基因启动子控制下表达的小鼠系,我们通过结合双免疫组织化学、电生理学和逆行追踪技术,系统地研究了 LHA 中的 MC4R 信号。我们发现,LHA MC4R-GFP 神经元共表达神经降压素以及瘦素受体,但不共表达 LHA 中发现的其他肽神经递质,包括食欲素、黑色素浓缩激素和 nesfatin-1。此外,电生理记录表明,瘦素而非 MC4R 激动剂黑色素浓集素 II 以 ATP 敏感钾通道依赖性方式使大多数 LHA MC4R-GFP 神经元超极化。逆行追踪显示,LHA MC4R-GFP 神经元不投射到腹侧被盖区、中缝核、伏隔核和脊髓,只有少数神经元投射到孤束核和臂旁核。我们的发现为 LHA 中的 MC4R 信号及其在身体能量平衡的稳态调节中的潜在意义提供了新的见解。