首页> 美国卫生研究院文献>Endocrinology >Central Sirt1 Regulates Body Weight and Energy Expenditure Along With the POMC-Derived Peptide α-MSH and the Processing Enzyme CPE Production in Diet-Induced Obese Male Rats
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Central Sirt1 Regulates Body Weight and Energy Expenditure Along With the POMC-Derived Peptide α-MSH and the Processing Enzyme CPE Production in Diet-Induced Obese Male Rats

机译:Central Sirt1调节体重和能量消耗以及POMC衍生肽α-MSH和饮食诱导的肥胖雄性大鼠CPE的生产过程

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摘要

In the periphery, the nutrient-sensing enzyme Sirtuin 1 (silent mating type information regulation 2 homolog 1 [Sirt1]) reduces body weight in diet-induced obese (DIO) rodents. However, the role of hypothalamic Sirt1 in body weight and energy balance regulation is debated. The first studies to reveal that central Sirt1 regulates body weight came from experiments in our laboratory using Sprague-Dawley rats. Central inhibition of Sirt1 decreased body weight and food intake as a result of a forkhead box protein O1 (FoxO1)-mediated increase in the anorexigenic proopiomelanocortin (POMC) and decrease in the orexigenic Agouti-related peptide in the hypothalamic arcuate nucleus. Here, we demonstrate that central inhibition of Sirt1 in DIO decreased body weight and increased energy expenditure at higher levels as compared with the lean counterpart. Brain Sirt1 inhibition in DIO increased acetylated FoxO1, which in turn increased phosphorylated FoxO1 via improved insulin/phosphorylated AKT signaling. Elevated acetylated FoxO1 and phosphorylated FoxO1 increased POMC along with the α-melanocyte-stimulating hormone (α-MSH) maturation enzyme carboxypeptidase E, which resulted in more of the bioactive POMC product α-MSH released into the paraventricular nucleus. Increased in α-MSH led to augmented TRH levels and circulating T3 levels (triiodothyronine, thyroid hormone). These results indicate that inhibiting hypothalamic Sirt1 in DIO enhances the activity of the hypothalamic-pituitary-thyroid axis, which stimulates energy expenditure. Because we show that blocking central Sirt1 causes physiological changes that promote a negative energy balance in an obese individual, our results support brain Sirt1 as a significant target for weight loss therapeutics.
机译:在外围,养分敏感酶Sirtuin 1(沉默交配型信息调节2同源物1 [Sirt1])可降低饮食诱发的肥胖(DIO)啮齿动物的体重。然而,下丘脑Sirt1在体重和能量平衡调节中的作用尚有争议。最早揭示中枢Sirt1调节体重的研究来自我们实验室中使用Sprague-Dawley大鼠的实验。 Sirt1的中枢抑制作用是由于叉头盒蛋白O1(FoxO1)介导的厌食原黑色素皮质激素(POMC)的增加和下丘脑弓状核中食源性Agouti相关肽的减少而导致体重和食物摄入减少。在这里,我们证明,与瘦肉相比,DIO中Sirt1的集中抑制降低了体重,并增加了能量消耗。 DIO的脑Sirt1抑制作用增加了乙酰化FoxO1的含量,进而通过改善的胰岛素/磷酸化AKT信号传导增加了磷酸化FoxO1的含量。乙酰化的FoxO1和磷酸化的FoxO1升高,POMC连同α-黑素细胞刺激激素(α-MSH)成熟酶羧肽酶E一起增加,导致更多的生物活性POMC产物α-MSH释放到室旁核中。 α-MSH的增加导致TRH水平和循环T3水平(三碘甲状腺素,甲状腺激素)增加。这些结果表明,抑制DIO中的下丘脑Sirt1可增强下丘脑-垂体-甲状腺轴的活性,从而刺激能量消耗。因为我们表明阻断中枢Sirt1会导致促进肥胖个体负能量平衡的生理变化,所以我们的研究结果支持大脑Sirt1作为减肥疗法的重要目标。

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