Department of Pharmacology &Physiology, Saint Louis University, Saint Louis, MO 63104, USA.
Departments of Metabolism and Aging and Neuroscience, The Scripps Research Institute, Jupiter, FL 33458, USA.
Sci Rep. 2017 Mar 15;7:44444. doi: 10.1038/srep44444.
Melanocortin-3 receptors (MC3R) have a contextual role in appetite control that is amplified with hypocaloric conditioning. C57BL/6J (B6) mice subjected to hypocaloric feeding schedules (HFS) exhibit compulsive behavioral responses involving food anticipatory activity (FAA) and caloric loading following food access. These homeostatic responses to calorie-poor environs are attenuated in B6 mice in which Mc3r transcription is suppressed by a lox-stop-lox sequence in the 5'UTR (Mc3r). Here, we report that optimization of caloric loading in B6 mice subject to HFS, characterized by increased meal size and duration, is not observed in Mc3r mice. Analysis of hypothalamic and neuroendocrine responses to HFS throughout the light-dark cycle suggests uncoupling of hypothalamic responses involving appetite-stimulating fasting-responsive hypothalamic neurons expressing agouti-related peptide (AgRP) and neuropeptide Y (Npy). Rescuing Mc3rs expression in Nkx2.1(+ve) neurons is sufficient to restore normal hypothalamic responses to negative energy balance. In addition, Mc3rs expressed in Nkx2.1(+ve) neurons are also sufficient to restore FAA and caloric loading of B6 mice subjected to HFS. In summary, MC3Rs expressed in Nkx2.1(+ve) neurons are sufficient to coordinate hypothalamic response and expression of compulsive behavioral responses involving meal anticipation and consumption of large meals during situations of prolonged negative energy balance.
黑素皮质素 3 受体 (MC3R) 在食欲控制中具有语境作用,在低热量条件下会被放大。接受低热量喂养方案 (HFS) 的 C57BL/6J (B6) 小鼠表现出强迫性行为反应,涉及食物预期活动 (FAA) 和食物摄入后的热量摄入。这些对低热量环境的生理反应在 Mc3r 转录被 5'UTR 中的 lox-stop-lox 序列抑制的 B6 小鼠中减弱(Mc3r)。在这里,我们报告说,在接受 HFS 的 B6 小鼠中,通过增加进餐量和持续时间来优化热量摄入的优化并未在 Mc3r 小鼠中观察到。对整个光暗周期中 HFS 的下丘脑和神经内分泌反应的分析表明,涉及食欲刺激的禁食反应性下丘脑神经元表达的 agouti 相关肽 (AgRP) 和神经肽 Y (Npy) 的下丘脑反应被解耦。在 Nkx2.1(+ve) 神经元中恢复 Mc3rs 表达足以恢复对负能平衡的正常下丘脑反应。此外,在 Nkx2.1(+ve) 神经元中表达的 Mc3rs 也足以恢复 FAA 和接受 HFS 的 B6 小鼠的热量摄入。总之,在 Nkx2.1(+ve) 神经元中表达的 MC3Rs 足以协调下丘脑反应和涉及长时间负能平衡期间食物预期和大量进食的强迫性行为反应的表达。