Fujino Tomofumi, Une Mizuho, Imanaka Tsuneo, Inoue Kazuhide, Nishimaki-Mogami Tomoko
Division of Biosignaling, National Institute of Health Sciences, Tokyo, Japan.
J Lipid Res. 2004 Jan;45(1):132-8. doi: 10.1194/jlr.M300215-JLR200. Epub 2003 Sep 16.
The farnesoid X receptor (FXR) is a bile acid-activated nuclear receptor that plays a major role in bile acid and cholesterol metabolism. To obtain an insight into the structure-activity relationships of FXR ligands, we investigated the functional roles of structural elements in the physiological ligands chenodeoxycholic acid [CDCA; (3alpha,7alpha)], cholic acid [CA; (3alpha,7alpha,12alpha)], deoxycholic acid [DCA; (3alpha,12alpha)], and lithocholic acid (3alpha) in regard to FXR activation in a cell-based FXR response element-driven luciferase assay and an in vitro coactivator association assay. Conversion of the carboxyl group of CDCA or CA to an alcohol did not greatly diminish their ability to activate FXR. In contrast, the 7beta-epimers of the alcohols were inactive, indicating that the bile alcohols retained the ligand properties of the original bile acids and that the 7beta-hydroxyl group diminished their FXR-activating effect. Similarly, hydroxyl epimers of DCA exhibited decreased activity compared with DCA, indicating a negative effect of 3beta- or 12beta-hydroxyl groups. Introduction of an alkyl group at the 7beta- or 3beta-position of CDCA resulted in diminished FXR activation in the following order of alkyl groups: 7-ethyl=7-propyl>3-methyl>7-methyl. These results indicate that bulky substituents, whether hydroxyl groups or alkyl residues, at the beta-position of cholanoids decrease their ability to activate FXR.
法尼酯X受体(FXR)是一种胆汁酸激活的核受体,在胆汁酸和胆固醇代谢中起主要作用。为深入了解FXR配体的构效关系,我们在基于细胞的FXR反应元件驱动的荧光素酶测定和体外共激活剂结合测定中,研究了生理配体鹅去氧胆酸[CDCA;(3α,7α)]、胆酸[CA;(3α,7α,12α)]、脱氧胆酸[DCA;(3α,12α)]和石胆酸(3α)的结构元件对FXR激活的功能作用。将CDCA或CA的羧基转化为醇并不会大大降低它们激活FXR的能力。相反,醇的7β-差向异构体无活性,这表明胆汁醇保留了原始胆汁酸的配体特性,且7β-羟基降低了它们的FXR激活作用。同样,与DCA相比,DCA的羟基差向异构体活性降低,表明3β-或12β-羟基有负面影响。在CDCA的7β-或3β-位引入烷基会导致FXR激活作用减弱,烷基的影响顺序为:7-乙基 = 7-丙基 > 3-甲基 > 7-甲基。这些结果表明,类固醇类化合物β位上的大体积取代基,无论是羟基还是烷基残基,都会降低它们激活FXR的能力。