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Role of Pregnane X Receptor in Obesity and Glucose Homeostasis in Male Mice

机译:孕烷X受体在男性小鼠肥胖和葡萄糖稳态中的作用

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摘要

Clinical obesity is a complex metabolic disorder affecting one in three adults. Recent reports suggest that pregnane X receptor (PXR), a xenobiotic nuclear receptor important for defense against toxic agents and for eliminating drugs and other xenobiotics, may be involved in obesity. Noting differences in ligand specificities between human and mouse PXRs, the role of PXR in high fat diet (HFD)-induced obesity was examined using male PXR-humanized (hPXR) transgenic and PXR-knock-out (PXR-KO) mice in comparison to wild-type (WT) mice. After 16 weeks on either a control diet or HFD, WT mice showed greater weight gain, whereas PXR-KO mice gained less weight due to their resistance to HFD-induced decreases in adipose tissue peroxisome proliferator-activated receptor α and induction of hepatic carnitine palmitoyltransferase 1, suggesting increased energy metabolism. Interestingly, control-fed PXR-KO mice exhibited hepatomegaly, hyperinsulinemia, and hyperleptinemia but hypoadiponectinemia and lower adiponectin receptor R2 mRNA levels relative to WT mice. Evaluation of these biologic indicators in hPXR mice fed a control diet or HFD revealed further differences between the mouse and human receptors. Importantly, although HFD-fed hPXR mice were resistant to HFD-induced obesity, both PXR-KO and hPXR mice exhibited impaired induction of glucokinase involved in glucose utilization and displayed elevated fasting glucose levels and severely impaired glucose tolerance. Moreover, the basal hepatic levels of the gluconeogenic enzyme phosphoenolpyruvate carboxykinase 1 were increased in hPXR mice compared with WT mice. Altogether, although the mouse PXR promotes HFD-induced obesity, the hPXR mouse carries a genetic predisposition for type 2 diabetes and thus provides a model for exploring the role of human PXR in the metabolic syndrome.
机译:临床肥胖症是一种复杂的代谢紊乱,影响三分之一的成年人。最近的报告表明,孕烯X受体(PXR)是一种异种生物核受体,对防御有毒物质以及消除药物和其他异种生物很重要,可能与肥胖有关。注意到人类和小鼠PXR之间的配体特异性差异,比较了雄性PXR人源化(hPXR)转基因小鼠和PXR敲除(PXR-KO)小鼠,检查了PXR在高脂饮食(HFD)诱导的肥胖中的作用野生型(WT)小鼠。对照饮食或HFD饮食16周后,WT小鼠体重增加较大,而PXR-KO小鼠体重减轻,原因是它们对HFD诱导的脂肪组织过氧化物酶体增殖物激活的受体α减少和肝肉碱棕榈酰转移酶的诱导具有抗性1,提示能量代谢增加。有趣的是,与WT小鼠相比,对照喂养的PXR-KO小鼠表现出肝肿大,高胰岛素血症和高瘦素血症,但低脂联素血症和脂联素受体R2 mRNA水平较低。在喂食对照饮食或HFD的hPXR小鼠中对这些生物学指标的评估显示,小鼠和人类受体之间存在进一步的差异。重要的是,尽管由HFD喂养的hPXR小鼠对HFD诱导的肥胖具有抵抗力,但PXR-KO和hPXR小鼠均表现出参与葡萄糖利用的葡萄糖激酶诱导受损,并且空腹血糖水平升高,并且葡萄糖耐受性严重受损。此外,与WT小鼠相比,hPXR小鼠的葡糖异生酶磷酸烯醇丙酮酸羧化激酶1的基础肝水平升高。总体而言,尽管小鼠PXR促进了HFD诱导的肥胖,但hPXR小鼠具有2型糖尿病的遗传易感性,因此为探索人类PXR在代谢综合征中的作用提供了模型。

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