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Hepatic Farnesoid X-Receptor Isoforms α2 and α4 Differentially Modulate Bile Salt and Lipoprotein Metabolism in Mice

机译:肝法呢素X受体亚型α2和α4差异性调节小鼠胆汁盐和脂蛋白代谢

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摘要

The nuclear receptor FXR acts as an intracellular bile salt sensor that regulates synthesis and transport of bile salts within their enterohepatic circulation. In addition, FXR is involved in control of a variety of crucial metabolic pathways. Four FXR splice variants are known, i.e. FXRα1-4. Although these isoforms show differences in spatial and temporal expression patterns as well as in transcriptional activity, the physiological relevance hereof has remained elusive. We have evaluated specific roles of hepatic FXRα2 and FXRα4 by stably expressing these isoforms using liver-specific self-complementary adeno-associated viral vectors in total body FXR knock-out mice. The hepatic gene expression profile of the FXR knock-out mice was largely normalized by both isoforms. Yet, differential effects were also apparent; FXRα2 was more effective in reducing elevated HDL levels and transrepressed hepatic expression of Cyp8b1, the regulator of cholate synthesis. The latter coincided with a switch in hydrophobicity of the bile salt pool. Furthermore, FXRα2-transduction caused an increased neutral sterol excretion compared to FXRα4 without affecting intestinal cholesterol absorption. Our data show, for the first time, that hepatic FXRα2 and FXRα4 differentially modulate bile salt and lipoprotein metabolism in mice.
机译:核受体FXR充当细胞内胆盐传感器,调节胆盐在其肠肝循环中的合成和运输。此外,FXR还参与多种关键代谢途径的控制。已知四个FXR剪接变体,即FXRα1-4。尽管这些同工型在空间和时间表达模式以及转录活性上显示出差异,但是其生理相关性仍然难以捉摸。我们已经通过在全身FXR基因敲除小鼠中使用肝脏特异性自身互补腺相关病毒载体稳定表达这些同工型,评估了肝FXRα2和FXRα4的特定作用。 FXR敲除小鼠的肝基因表达谱在很大程度上被这两种同工型标准化。然而,差异效应也很明显。 FXRα2在降低高密度脂蛋白水平和反式抑制胆酸盐合成调节因子Cyp8b1的肝表达方面更有效。后者与胆汁盐池疏水性的改变相吻合。此外,与FXRα4相比,FXRα2转导导致中性固醇排泄增加,而不会影响肠道胆固醇的吸收。我们的数据首次显示,肝FXRα2和FXRα4差异性调节小鼠的胆汁盐和脂蛋白代谢。

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