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Multinodal regulation of the arcuate/paraventricular nucleus circuit by leptin

机译:瘦素对弓形/心室旁核回路的多结点调节

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Melanocortin-4 receptor (MC4R) is critical for energy homeostasis, and the paraventricular nucleus of the hypothalamus (PVN) is a key site of MC4R action. Most studies suggest that leptin regulates PVN neurons indirectly, by binding to receptors in the arcuate nucleus or ventromedial hypothalamus and regulating release of products like α-melanocyte-stimulating hormone (α-MSH), neuropeptide Y (NPY), glutamate, and GABA from first-order neurons onto the MC4R PVN cells. Here, we investigate mechanisms underlying regulation of activity of these neurons under various metabolic states by using hypothalamic slices from a transgenic MC4R-GFP mouse to record directly from MC4R neurons. First, we show that in vivo leptin levels regulate the tonic firing rate of second-order MC4R PVN neurons, with fasting increasing firing frequency in a leptin-dependent manner. We also show that, although leptin inhibits these neurons directly at the postsynaptic membrane, a-MSH and NPY potently stimulate and inhibit the cells, respectively. Thus, in contrast with the conventional model of leptin action, the primary control of MC4R PVN neurons is unlikely to be mediated by leptin action on arcuate NPY/agouti-related protein and proopiomelanocortin neurons. We also show that the activity of MC4R PVN neurons is controlled by the constitutive activity of the MC4R and that expression of the receptor mRNA and a-MSH sensitivity are both stimulated by leptin. Thus, leptin acts multinodally on arcuate nucleus/PVN circuits to regulate energy homeostasis, with prominent mechanisms involving direct control of both membrane conductances and gene expression in the MC4R PVN neuron.
机译:黑皮质素4受体(MC4R)对于能量稳态至关重要,下丘脑室旁核(PVN)是MC4R作用的关键部位。大多数研究表明,瘦素通过与弓形核或腹膜下丘脑中的受体结合并调节α-黑素细胞刺激激素(α-MSH),神经肽Y(NPY),谷氨酸和来自GABA的产物的释放而间接调节PVN神经元。一阶神经元进入MC4R PVN细胞。在这里,我们通过使用来自转基因MC4R-GFP小鼠的下丘脑片直接从MC4R神经元记录下来,研究了在各种代谢状态下调节这些神经元活性的潜在机制。首先,我们表明体内瘦素水平调节二阶MC4R PVN神经元的强直放电速率,并且以瘦素依赖性方式空腹提高放电频率。我们还显示,尽管瘦素直接在突触后膜上抑制这些神经元,但a-MSH和NPY分别有效刺激和抑制细胞。因此,与瘦素作用的常规模型相反,MC4R PVN神经元的主要控制不太可能由对弓形NPY / agouti相关蛋白和原黑皮皮质素神经元的瘦素作用介导。我们还显示,MC4R PVN神经元的活性受MC4R的组成型活性控制,并且受体mRNA的表达和a-MSH敏感性均受瘦素刺激。因此,瘦素在弓形核/ PVN回路上多结点地起作用,以调节能量稳态,其显着机制涉及直接控制膜电导和MC4R PVN神经元中的基因表达。

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