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Insulin-like growth factor-1 acts as a zeitgeber on hypothalamic circadian clock gene expression via glycogen synthase kinase-3β signaling

机译:胰岛素样生长因子1通过糖原合酶激酶3β信号转导下丘脑生物钟基因表达

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摘要

Brain and muscle ARNT-like protein-1 (BMAL-1) is an important component of the cellular circadian clock. Proteins such as epidermal (EGF) or nerve growth factor (NGF) affect the cellular clock via extracellular signal–regulated kinases-1/2 (ERK-1/2) in NIH3T3 or neuronal stem cells, but no such data are available for the insulin-like growth factor-1 (IGF-1). The hypothalamus expresses receptors for all three growth factors, acts as a central circadian pacemaker, and releases hormones in a circadian fashion. However, little is known about growth factor–induced modulation of clock gene activity in hypothalamic cells. Here, we investigated effects of IGF-1, EGF, or NGF on the Bmal-1 promoter in two hypothalamic cell lines. We found that only IGF-1 but not EGF or NGF enhanced activity of the Bmal-1 promoter. Inhibition of ERK-1/2 activity did not affect IGF-1–induced Bmal-1 promoter activation and all three growth factors similarly phosphorylated ERK-1/2, questioning a role for ERK-1/2 in controlling BMAL-1 promoter activity. Of note, only IGF-1 induced sustained phosphorylation of glycogen synthase kinase-3β (GSK-3β). Moreover, the GSK-3β inhibitor lithium or siRNA-mediated GSK-3β knockdown diminished the effects of IGF-1 on the Bmal-1 promoter. When IGF-1 was used in the context of temperature cycles entraining hypothalamic clock gene expression to a 24-h rhythm, it shifted the phase of Bmal-1 promoter activity, indicating that IGF-1 functions as a zeitgeber for cellular hypothalamic circadian clocks. Our results reveal that IGF-1 regulates clock gene expression and that GSK-3β but not ERK-1/2 is required for the IGF-1–mediated regulation of the Bmal-1 promoter in hypothalamic cells.
机译:脑和肌肉ARNT样蛋白1(BMAL-1)是细胞生物钟的重要组成部分。诸如表皮(EGF)或神经生长因子(NGF)之类的蛋白质会通过NIH3T3或神经元干细胞中的细胞外信号调节激酶-1/2(ERK-1 / 2)影响细胞时钟,但尚无此类数据胰岛素样生长因子-1(IGF-1)。下丘脑表达所有三个生长因子的受体,充当中枢昼夜节律起搏器,并以昼夜节律的方式释放激素。然而,关于下丘脑细胞中生长因子诱导的时钟基因活性的调控知之甚少。在这里,我们研究了IGF-1,EGF或NGF对两种下丘脑细胞系中Bmal-1启动子的影响。我们发现只有IGF-1,而不是EGF或NGF增强了Bmal-1启动子的活性。抑制ERK-1 / 2的活性不会影响IGF-1诱导的Bmal-1启动子的激活,并且所有三个生长因子都类似地磷酸化ERK-1 / 2,质疑ERK-1 / 2在控制BMAL-1启动子活性中的作用。值得注意的是,只有IGF-1诱导糖原合酶激酶3β(GSK-3β)持续磷酸化。此外,GSK-3β抑制剂锂或siRNA介导的GSK-3β敲低减弱了IGF-1对Bmal-1启动子的影响。当将IGF-1用于携带下丘脑生物钟基因表达的温度周期为24小时的节奏时,它会改变Bmal-1启动子活性的相位,表明IGF-1充当细胞的下丘脑生物钟的时代精神。我们的结果表明,IGF-1调节时钟基因的表达,IGF-1介导的下丘脑细胞Bmal-1启动子的调节需要GSK-3β而不是ERK-1 / 2。

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