Shah Bhavik P, Vong Linh, Olson David P, Koda Shuichi, Krashes Michael J, Ye Chianping, Yang Zongfang, Fuller Patrick M, Elmquist Joel K, Lowell Bradford B
Division of Endocrinology, Diabetes and Metabolism, Department of Medicine.
Department of Neurology, Beth Israel Deaconess Medical Center, and.
Proc Natl Acad Sci U S A. 2014 Sep 9;111(36):13193-8. doi: 10.1073/pnas.1407843111. Epub 2014 Aug 25.
Activation of melanocortin-4 receptors (MC4Rs) restrains feeding and prevents obesity; however, the identity, location, and axonal projections of the neurons bearing MC4Rs that control feeding remain unknown. Reexpression of MC4Rs on single-minded 1 (SIM1)(+) neurons in mice otherwise lacking MC4Rs is sufficient to abolish hyperphagia. Thus, MC4Rs on SIM1(+) neurons, possibly in the paraventricular hypothalamus (PVH) and/or amygdala, regulate food intake. It is unknown, however, whether they are also necessary, a distinction required for excluding redundant sites of action. Hence, the location and nature of obesity-preventing MC4R-expressing neurons are unknown. Here, by deleting and reexpressing MC4Rs from cre-expressing neurons, establishing both necessity and sufficiency, we demonstrate that the MC4R-expressing neurons regulating feeding are SIM1(+), located in the PVH, glutamatergic and not GABAergic, and do not express oxytocin, corticotropin-releasing hormone, vasopressin, or prodynorphin. Importantly, these excitatory MC4R-expressing PVH neurons are synaptically connected to neurons in the parabrachial nucleus, which relays visceral information to the forebrain. This suggests a basis for the feeding-regulating effects of MC4Rs.
黑皮质素-4受体(MC4Rs)的激活可抑制进食并预防肥胖;然而,控制进食的表达MC4Rs的神经元的身份、位置和轴突投射仍不清楚。在原本缺乏MC4Rs的小鼠的单 minded 1(SIM1)(+)神经元上重新表达MC4Rs足以消除食欲亢进。因此,SIM1(+)神经元上的MC4Rs,可能位于室旁下丘脑(PVH)和/或杏仁核中,调节食物摄入。然而,尚不清楚它们是否也是必需的,这是排除冗余作用位点所必需的区分。因此,表达预防肥胖的MC4R的神经元的位置和性质尚不清楚。在这里,通过从表达cre的神经元中删除和重新表达MC4Rs,确立必要性和充分性,我们证明调节进食的表达MC4R的神经元是SIM1(+),位于PVH,是谷氨酸能而非GABA能的,并且不表达催产素、促肾上腺皮质激素释放激素、血管加压素或前强啡肽。重要的是,这些表达兴奋性MC4R的PVH神经元与臂旁核中的神经元形成突触连接,臂旁核将内脏信息传递到前脑。这为MC4Rs的进食调节作用提供了一个基础。