Lee Hans, Zhang Yanqiao, Lee Florence Y, Nelson Stanley F, Gonzalez Frank J, Edwards Peter A
Department of Biological Chemistry, University of California, Los Angeles, Los Angeles, CA 90095, USA.
J Lipid Res. 2006 Jan;47(1):201-14. doi: 10.1194/jlr.M500417-JLR200. Epub 2005 Oct 26.
Expression of the farnesoid X receptor (FXR; NR1H4) is limited to the liver, intestine, kidney, and adrenal gland. However, the role of FXR in the latter two organs is unknown. In the current study, we performed microarray analysis using RNA from H295R cells infected with constitutively active FXR. Several putative FXR target genes were identified, including the organic solute transporters alpha and beta (OSTalpha and OSTbeta). Electromobility shift assays and promoter-reporter studies identified functional farnesoid X receptor response elements (FXREs) in the promoters of both human genes. These FXREs are conserved in both mouse genes. Treatment of wild-type mice with 3-(2,6-dichlorophenyl)-4-(3'-carboxy-2-chloro-stilben-4-yl)-oxymethyl-5-isopropyl-isoxazole (GW4064), a synthetic FXR agonist, induced OSTalpha and OSTbeta mRNAs in the intestine and kidney. Both mRNAs were also induced when wild-type, but not FXR-deficient (FXR-/-), adrenals were cultured in the presence of GW4064. OSTalpha and OSTbeta mRNA levels were also induced in the adrenals and kidneys of wild-type, but not FXR-/-, mice after the increase of plasma bile acids in response to the hepatotoxin alpha-naphthylisothiocyanate. Finally, overexpression of human OSTalpha and OSTbeta facilitated the uptake of conjugated chenodeoxycholate and the activation of FXR target genes. These results demonstrate that OSTalpha and OSTbeta are novel FXR target genes that are expressed in the adrenal gland, kidney, and intestine.
法尼酯X受体(FXR;NR1H4)的表达仅限于肝脏、肠道、肾脏和肾上腺。然而,FXR在肾脏和肾上腺这两个器官中的作用尚不清楚。在本研究中,我们使用来自组成型激活FXR感染的H295R细胞的RNA进行了微阵列分析。鉴定出了几个假定的FXR靶基因,包括有机溶质转运体α和β(OSTα和OSTβ)。电泳迁移率变动分析和启动子报告基因研究确定了两个人类基因启动子中的功能性法尼酯X受体反应元件(FXREs)。这些FXREs在小鼠基因中也保守。用合成FXR激动剂3-(2,6-二氯苯基)-4-(3'-羧基-2-氯-芪-4-基)-氧甲基-5-异丙基异恶唑(GW4064)处理野生型小鼠,可诱导肠道和肾脏中的OSTα和OSTβ mRNA。当野生型肾上腺(而非FXR缺陷型(FXR-/-)肾上腺)在GW4064存在下培养时,这两种mRNA也会被诱导。在野生型小鼠而非FXR-/-小鼠中,给予肝毒素α-萘基异硫氰酸酯后血浆胆汁酸升高,肾上腺和肾脏中的OSTα和OSTβ mRNA水平也会被诱导。最后,人OSTα和OSTβ的过表达促进了结合型鹅去氧胆酸的摄取以及FXR靶基因的激活。这些结果表明,OSTα和OSTβ是在肾上腺、肾脏和肠道中表达的新型FXR靶基因。