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首页> 外文期刊>Endocrinology >Protection Against High-Fat Diet-Induced Obesity in Helz2-Deficient Male Mice Due to Enhanced Expression of Hepatic Leptin Receptor
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Protection Against High-Fat Diet-Induced Obesity in Helz2-Deficient Male Mice Due to Enhanced Expression of Hepatic Leptin Receptor

机译:肝瘦素受体表达增强对Helz2缺乏症雄性小鼠高脂饮食诱发的肥胖的保护作用

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Obesity arises from impaired energy balance, which is centrally coordinated by leptin through activation of the long form of leptin receptor (Leprb). Obesity causes central leptin resistance. However, whether enhanced peripheral leptin sensitivity could overcome central leptin resistance remains obscure. A peripheral metabolic organ targeted by leptin is the liver, with low Leprb expression. We here show that mice fed a high-fat diet (HFD) and obese patients with hepatosteatosis exhibit increased expression of hepatic helicase with zinc finger 2, a transcriptional coactivator (Helz2), which functions as a transcriptional coregulator of several nuclear receptors, including peroxisome proliferator-activated receptor gamma in vitro. To explore the physiological importance of Helz2, we generated Helz2-deficient mice and analyzed their metabolic phenotypes. Helz2-deficient mice showing hyperleptinemia associated with central leptin resistance were protected against HFD-induced obesity and had significantly up-regulated hepatic Leprb expression. Helz2 deficiency and adenovirus-mediated liver-specific exogenous Leprb overexpression in wild-type mice significantly stimulated hepatic AMP-activated protein kinase on HFD, whereas Helz2-deficient db/db mice lacking functional Leprb did not. Fatty acid-beta oxidation was increased in Helz2-deficeint hepatocytes, and Helz2-deficient mice revealed increased oxygen consumption and decreased respiratory quotient in calorimetry analyses. The enhanced hepatic AMP-activated protein kinase energy-sensing pathway in Helz2-deficient mice ameliorated hyperlipidemia, hepatosteatosis, and insulin resistance by reducing lipogenic gene expression and stimulating lipid-burning gene expression in the liver. These findings together demonstrate that Helz2 deficiency ameliorates HFD-induced metabolic abnormalities by stimulating endogenous hepatic Leprb expression, despite central leptin resistance. Hepatic HELZ2 might be a novel target molecule for the treatment of obesity with hepatosteatosis.
机译:肥胖是由能量平衡受损引起的,能量平衡通过瘦素受体(Leprb)的长型激活而被瘦素集中调节。肥胖会引起中央瘦素抵抗。然而,增强外周血瘦素敏感性是否能克服中心瘦素抵抗仍不清楚。瘦素靶向的外周代谢器官是肝脏,Leprb表达低。我们在这里显示,喂食高脂饮食(HFD)的小鼠和肥胖的肝硬皮病患者用锌指2(一种转录共激活因子(Helz2),其作为几种核受体,包括过氧化物酶体的转录共调节剂)发挥了肝解旋酶的表达。增殖激活受体γ体外。为了探索Helz2的生理重要性,我们生成了Helz2缺陷型小鼠并分析了它们的代谢表型。 Helz2缺陷小鼠表现出与中央瘦素抵抗相关的高瘦素血症,可预防HFD诱导的肥胖症,并显着上调肝Leprb表达。在野生型小鼠中,Helz2缺乏和腺病毒介导的肝特异性外源性Leprb过表达显着刺激了HFD上的肝AMP激活的蛋白激酶,而缺乏功能性Leprb的Helz2缺乏db / db小鼠却没有。 Helz2-deficeint肝细胞中的脂肪酸-β氧化增加,而Helz2缺乏的小鼠在量热分析中显示出增加的耗氧量和呼吸商。 Helz2缺陷型小鼠中增强的肝AMP激活的蛋白激酶能量传感途径通过减少脂肪生成基因表达并刺激肝脏中的脂质燃烧基因表达来改善高脂血症,肝脂肪变性和胰岛素抵抗。这些发现共同表明,尽管有中央瘦素抵抗,Helz2缺乏症仍可通过刺激内源性肝Leprb表达来改善HFD诱导的代谢异常。肝HELZ2可能是治疗肥胖与肝脂肪变性的新型靶分子。

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