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Reduced Fat Mass in Mice Lacking Orphan Nuclear Receptor Estrogen-Related Receptor α

机译:缺乏孤儿核受体雌激素相关受体α的小鼠脂肪减少

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摘要

The estrogen-related receptor α (ERRα) is an orphan member of the superfamily of nuclear hormone receptors expressed in tissues that preferentially metabolize fatty acids. Despite the molecular characterization of ERRα and identification of target genes, determination of its physiological function has been hampered by the lack of a natural ligand. To further understand the in vivo function of ERRα, we generated and analyzed Estrra-null (ERRα−/−) mutant mice. Here we show that ERRα−/− mice are viable, fertile and display no gross anatomical alterations, with the exception of reduced body weight and peripheral fat deposits. No significant changes in food consumption and energy expenditure or serum biochemistry parameters were observed in the mutant animals. However, the mutant animals are resistant to a high-fat diet-induced obesity. Importantly, DNA microarray analysis of gene expression in adipose tissue demonstrates altered regulation of several enzymes involved in lipid, eicosanoid, and steroid synthesis, suggesting that the loss of ERRα might interfere with other nuclear receptor signaling pathways. In addition, the microarray study shows alteration in the expression of genes regulating adipogenesis as well as energy metabolism. In agreement with these findings, metabolic studies showed reduced lipogenesis in adipose tissues. This study suggests that ERRα functions as a metabolic regulator and that the ERRα−/− mice provide a novel model for the investigation of metabolic regulation by nuclear receptors.
机译:雌激素相关受体α(ERRα)是组织中表达的优先代谢脂肪酸的核激素受体超家族的一个孤儿。尽管ERRα的分子特征和目标基因的鉴定,其生理功能的确定已受到缺乏天然配体的阻碍。为了进一步了解ERRα的体内功能,我们生成并分析了Estrra-null(ERRα-// )突变小鼠。在这里,我们证明了ERRα-/-小鼠是可行的,可育的,并且除了体重减轻和周围脂肪沉积减少外,没有显示出明显的解剖学改变。在突变动物中未观察到食物消耗和能量消耗或血清生化参数的显着变化。但是,突变动物对高脂饮食诱导的肥胖具有抵抗力。重要的是,对脂肪组织中基因表达的DNA微阵列分析表明,参与脂质,类花生酸和类固醇合成的几种酶的调控发生了变化,这表明ERRα的丢失可能会干扰其他核受体信号通路。此外,微阵列研究显示调节脂肪形成以及能量代谢的基因表达发生变化。与这些发现一致的是,代谢研究显示脂肪组织中的脂肪生成减少。这项研究表明,ERRα发挥代谢调节剂的作用,并且ERRα-/-小鼠为研究核受体的代谢调节提供了新的模型。

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