Stigmasterol, a soy lipid-derived phytosterol, is an antagonist of the bile acid nuclear receptor FXR

Stigmasterol, a soy lipid-derived phytosterol, is an antagonist of the bile acid nuclear receptor FXR
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DOI:
10.1203/pdr.0b013e3181256492
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发表时间:
2007-09-01
期刊:
影响因子:
3.6
通讯作者:
Karpen, Saul J.
Karpen, Saul J.
中科院分区:
医学3区
文献类型:
--
作者:
Carter, Beth A.;Taylor, Olga A.;Karpen, Saul J.

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植物甾醇。大豆衍生的脂质成分,是肠外营养相关胆汁淤积(PNAC)的加重剂。我们研究了植物甾醇是否有助于胆汁酸(BA)诱导的肝细胞损伤,通过拮抗核受体(NR)的关键参与肝保护前线胆汁淤积。FXR(法尼醇X受体,NR 1H 4)。在HepG 2细胞中,豆甾醇乙酸酯(StigAc),一种水溶性Stig衍生物,抑制参与胆汁淤积适应的FXR靶基因(即BSEP,FGF-19,OST α/β)的配体激活表达。此外,StigAc拮抗BA激活。FXR靶向FXR+/+中的基因SHP和BSEP 9。但在FXR-/-小鼠肝细胞中没有。Stig和StigAc都抑制了转染的HepG 2细胞中BA激活的FXR依赖性报告基因的表达,而脂质中最常见的植物甾醇β-谷甾醇没有抑制作用。最后,在测试的六个配体激活的NR-配体结合结构域(LBD)中,StigAc的拮抗作用仅对两个(FXR和PXR,双氢吡喃X受体,NR 112)具有特异性。我们证明,Stig,一种普遍存在于大豆衍生的PN脂质溶液中的植物甾醇,是一种有效的胆汁酸FXR的NR体外拮抗剂。
Phytosterols. components of soy-derived lipids, are among the proposed exacerbants of parenteral nutrition-associated cholestasis (PNAC). We investigated whether phytosterols contribute to bile acid (BA)-induced hepatocyte damage by antagonizing a nuclear receptor (NR) critically involved in hepatoprotection front cholestasis. FXR (farnesoid X receptor, NR1H4). In HepG2 cells, stigmasterol acetate (StigAc), a water-soluble Stig derivative, suppressed ligand-activated expression of FXR target genes involved in adaptation to cholestasis (i.e. BSEP, FGF-19, OST alpha/beta). Furthermore, StigAc antagonized BA-activated. FXR tar et genes SHP and BSEP 9 in FXR+/+. but not in FXR-/- mouse hepatocytes. Both Stig and StigAc inhibited BA-activated, FXR-dependent reporter gene expression in transfected HepG2 cells, whereas the most prevalent phytosterol in lipids, beta-sitosterol, had no inhibitory effect. Finally, among six ligand-activated NR-ligand binding domains (LBDs) tested, antagonism by StigAc was specific to only two (FXR and PXR, pregnane X receptor, NR112). We demonstrate that Stig, a phytosterol prevalent in soy-derived PN lipid solutions, is a potent in vitro antagonist of the NR for bile acids FXR.