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Genetic suppression of ghrelin receptors activates brown adipocyte function and decreases fat storage in rats.

机译:生长激素释放肽受体的遗传抑制可激活褐色脂肪细胞功能并减少大鼠的脂肪存储。

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To clarify the role of ghrelin and its receptor (GHS-R) in the regulatory mechanism of energy metabolism, we analyzed transgenic (Tg) rats expressing an antisense GHS-R mRNA under the control of the tyrosine hydroxylase (TH) promoter. Tg rats showed lower visceral fat weight and higher O(2) consumption, CO(2) production, rectal temperature, dark-period locomotor activity, brown adipose tissue (BAT) weight and uncoupling protein 1 expression compared with wild-type (WT) rats on a standard diet. A high-fat diet for 14days significantly increased body weight, visceral fat weight, and the sizes of white and brown adipocytes in WT rats but not in Tg rats compared with the corresponding standard-diet groups. Antisense GHS-R mRNA was expressed and GHS-R expression was reduced in TH-expressing cells of the vagal nodose ganglion in Tg rats. Ghrelin administered intravenously suppressed noradrenaline release in the BAT of WT rats, but not in Tg rats. These results suggest that ghrelin/GHS-R plays an important role in energy storage by modifying BAT function and locomotor activity. As our previous study showed that peripheral ghrelin-induced noradrenaline release suppression in BAT is blocked by vagotomy, the present findings also suggest that vagal afferents transmit the peripheral ghrelin signal to the sympathetic nervous system innervating BAT.
机译:为了阐明ghrelin及其受体(GHS-R)在能量代谢调节机制中的作用,我们分析了在酪氨酸羟化酶(TH)启动子控制下表达反义GHS-R mRNA的转基因(Tg)大鼠。 Tg大鼠显示较低的内脏脂肪重量和较高的O(2)消耗量,CO(2)产生,直肠温度,暗周期运动活动,棕色脂肪组织(BAT)重量和解偶联蛋白1表达与野生型(WT)相比大鼠采用标准饮食。与相应的标准饮食组相比,WT大鼠高脂饮食(连续14天)显着增加了体重,内脏脂肪重量以及白色和棕色脂肪细胞的大小,而Tg大鼠则没有。在Tg大鼠迷走性结节神经节的TH表达细胞中,反义GHS-R mRNA表达降低,GHS-R表达降低。 Ghrelin静脉内给药抑制了WT大鼠的BAT中去甲肾上腺素的释放,但未抑制Tg大鼠。这些结果表明,ghrelin / GHS-R通过修饰BAT功能和运动活性在能量储存中起重要作用。正如我们先前的研究表明,迷走神经切开术可以阻断BAT中外周生长激素释放肽诱导的去甲肾上腺素释放抑制,因此本研究结果还表明迷走神经传入将外周生长激素释放肽信号传递至支配BAT的交感神经系统。

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