Division of Molecular Medicine and Medical Genetics, International Center for Medical Research and Treatment, Kobe University Graduate School of Medicine, Japan.
PLoS One. 2011;6(4):e18324. doi: 10.1371/journal.pone.0018324. Epub 2011 Apr 7.
Insulin and leptin intracellular signaling pathways converge and act synergistically on the hypothalamic phosphatidylinositol-3-OH kinase/3-phosphoinositide-dependent protein kinase 1 (PDK1). However, little is known about whether PDK1 in agouti-related peptide (AGRP) neurons contributes to energy homeostasis. We generated AGRP neuron-specific PDK1 knockout (AGRPPdk1(-/-)) mice and mice with selective expression of transactivation-defective Foxo1 (Δ256Foxo1(AGRP)Pdk1(-/-)). The AGRPPdk1(-/-) mice showed reductions in food intake, body length, and body weight. The Δ256Foxo1(AGRP)Pdk1(-/-) mice showed increased body weight, food intake, and reduced locomotor activity. After four weeks of calorie-restricted feeding, oxygen consumption and locomotor activity were elevated in AGRPPdk1(-/-) mice and reduced in Δ256Foxo1(AGRP)Pdk1(-/-) mice. In vitro, ghrelin-induced changes in Ca(2+) and inhibition of ghrelin by leptin were significantly attenuated in AGRPPdk1(-/-) neurons compared to control neurons. However, ghrelin-induced Ca(2+) changes and leptin inhibition were restored in Δ256Foxo1(AGRP)Pdk1(-/-) mice. These results suggested that PDK1 and Foxo1 signaling pathways play important roles in the control of energy homeostasis through AGRP-independent mechanisms.
胰岛素和瘦素的细胞内信号通路在位于下丘脑的磷酸肌醇-3-激酶/3-磷酸肌醇依赖性蛋白激酶 1(PDK1)处汇聚并协同作用。然而,对于 AGRP 神经元中的 PDK1 是否有助于能量平衡,人们知之甚少。我们生成了 AGRP 神经元特异性 PDK1 敲除(AGRPPdk1(-/-))小鼠和选择性表达转录激活缺陷型 Foxo1(Δ256Foxo1(AGRP)Pdk1(-/-))的小鼠。AGRPPdk1(-/-)小鼠表现出食物摄入、体长和体重减少。Δ256Foxo1(AGRP)Pdk1(-/-)小鼠表现出体重增加、食物摄入增加和运动活性降低。在进行了四周的热量限制喂养后,AGRPPdk1(-/-)小鼠的耗氧量和运动活性升高,而 Δ256Foxo1(AGRP)Pdk1(-/-)小鼠的耗氧量和运动活性降低。在体外,与对照神经元相比,AGRPPdk1(-/-)神经元中的胃饥饿素诱导的 Ca(2+)变化和瘦素对胃饥饿素的抑制作用明显减弱。然而,在 Δ256Foxo1(AGRP)Pdk1(-/-)小鼠中,胃饥饿素诱导的 Ca(2+)变化和瘦素抑制作用得到了恢复。这些结果表明,PDK1 和 Foxo1 信号通路通过 AGRP 非依赖性机制在能量平衡的控制中发挥重要作用。