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D1R 神经元中 MC4Rs 的表达调节食物摄入和可卡因引起的运动敏化。

The expression of MC4Rs in D1R neurons regulates food intake and locomotor sensitization to cocaine.

机构信息

Department of Psychiatry, The University of Texas Southwestern Medical Center, Dallas, TX, USA.

出版信息

Genes Brain Behav. 2013 Aug;12(6):658-65. doi: 10.1111/gbb.12057. Epub 2013 Jul 17.

Abstract

While it is known that mice lacking melanocortin 4 receptor (MC4R) expression develop hyperphagia resulting in early-onset obesity, the specific neural circuits that mediate this process remain unclear. Here, we report that selective restoration of MC4R expression within dopamine-1 receptor-expressing neurons [MC4R/dopamine 1 receptor (D1R) mice] partially blunts the severe obesity seen in MC4R-null mice by decreasing meal size, but not meal frequency, in the dark cycle. We also report that both acute cocaine-induced anorexia and the development of locomotor sensitization to repeated administration of cocaine are blunted in MC4R-null mice and normalized in MC4R/D1R mice. Neuronal retrograde tracing identifies the lateral hypothalamic area as the primary target of MC4R-expressing neurons in the nucleus accumbens. Biochemical studies in the ventral striatum show that phosphorylation of DARPP-32(Thr) (-34) and GluR1(Ser) (-845) is diminished in MC4R-null mice after chronic cocaine administration but rescued in MC4R/D1R mice. These findings highlight a physiological role of MC4R-mediated signaling within D1R neurons in the long-term regulation of energy balance and behavioral responses to cocaine.

摘要

虽然已知缺乏黑皮质素 4 受体 (MC4R) 表达的小鼠会出现过度进食,导致早期肥胖,但介导这一过程的特定神经回路仍不清楚。在这里,我们报告说,在表达多巴胺 1 受体的神经元中选择性地恢复 MC4R 表达[MC4R/多巴胺 1 受体 (D1R) 小鼠] 通过减少暗周期的餐量,但不减少餐数,部分缓解了 MC4R 缺失小鼠中严重肥胖的现象。我们还报告说,急性可卡因诱导的厌食症和反复给予可卡因引起的运动敏化在 MC4R 缺失小鼠中减弱,在 MC4R/D1R 小鼠中恢复正常。神经元逆行追踪确定外侧下丘脑区域是伏隔核中 MC4R 表达神经元的主要靶标。腹侧纹状体中的生化研究表明,慢性可卡因给药后,MC4R 缺失小鼠中的 DARPP-32(Thr) (-34) 和 GluR1(Ser) (-845) 磷酸化减少,但在 MC4R/D1R 小鼠中得到挽救。这些发现强调了 MC4R 介导的信号在 D1R 神经元中的生理作用,对能量平衡的长期调节和对可卡因的行为反应。

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