Brown Foundation Institute of Molecular Medicine, University of Texas Medical School, Houston, Texas 77030, USA.
Endocrinology. 2012 May;153(5):2223-33. doi: 10.1210/en.2011-2071. Epub 2012 Feb 14.
It is well established that leptin regulates energy balance largely through isoform B leptin receptor-expressing neurons (LepR neurons) in the brain and that leptin activates one subset of LepR neurons (leptin-excited neurons) while inhibiting the other (leptin-inhibited neurons). However, the neurotransmitters released from LepR neurons that mediate leptin action in the brain are not well understood. Previous results demonstrate that leptin mainly acts on γ-aminobutyric acid (GABA)ergic neurons to reduce body weight, and that leptin activates proopiomelanocortin neuron activity by reducing GABA release onto these neurons, suggesting a body weight-promoting role for GABA released from leptin-inhibited neurons. To directly examine the role of GABA release from LepR neurons in body weight regulation, mice with disruption of GABA release specifically from LepR neurons were generated by deletion of vesicular GABA transporter in LepR neurons. Interestingly, these mice developed mild obesity on chow diet and were sensitive to diet-induced obesity, which were associated with higher food intake and lower energy expenditure. Moreover, these mice showed blunted responses in both food intake and body weight to acute leptin administration. These results demonstrate that GABA plays an important role in mediating leptin action. In combination with the previous studies that leptin reduces GABA release onto proopiomelanocortin neurons through leptin-inhibited neurons and that disruption of GABA release from agouti gene-related protein neurons, one subset of LepR-inhibited neurons, leads to a lean phenotype, our results suggest that, under our experimental conditions, GABA release from leptin-excited neuron dominates over leptin-inhibited ones.
已经证实,瘦素主要通过大脑中表达型 B 瘦素受体(LepR 神经元)调节能量平衡,瘦素激活 LepR 神经元的一部分(瘦素兴奋神经元),同时抑制另一部分(瘦素抑制神经元)。然而,介导瘦素在大脑中作用的 LepR 神经元释放的神经递质尚不清楚。先前的结果表明,瘦素主要作用于γ-氨基丁酸(GABA)能神经元以减轻体重,并且瘦素通过减少 GABA 对这些神经元的释放来激活前阿黑皮素原神经元的活性,这表明从瘦素抑制神经元释放的 GABA 具有促进体重的作用。为了直接研究 LepR 神经元中 GABA 释放对体重调节的作用,通过在 LepR 神经元中缺失囊泡 GABA 转运体,生成了 LepR 神经元中 GABA 释放特异性缺失的小鼠。有趣的是,这些小鼠在正常饮食时表现出轻度肥胖,并且对饮食诱导的肥胖敏感,这与更高的食物摄入量和更低的能量消耗有关。此外,这些小鼠在急性给予瘦素时,在食物摄入量和体重方面的反应均减弱。这些结果表明 GABA 在介导瘦素作用中发挥重要作用。结合先前的研究结果,即瘦素通过瘦素抑制神经元减少 GABA 对前阿黑皮素原神经元的释放,以及破坏 agouti 基因相关蛋白神经元(LepR 抑制神经元的一部分)中 GABA 的释放导致瘦体型,我们的结果表明,在我们的实验条件下,从瘦素兴奋神经元释放的 GABA 超过了从瘦素抑制神经元释放的 GABA。