The nuclear receptor for bile acids, FXR, transactivates human organic solute transporter-α and -β genes
- 1 March 2006
- journal article
- Published by American Physiological Society in American Journal of Physiology-Gastrointestinal and Liver Physiology
- Vol. 290 (3) , G476-G485
- https://doi.org/10.1152/ajpgi.00430.2005
Abstract
Bile acids are synthesized from cholesterol in the liver and are excreted into bile via the hepatocyte canalicular bile salt export pump. After their passage into the intestine, bile acids are reabsorbed in the ileum by sodium-dependent uptake across the apical membrane of enterocytes. At the basolateral domain of ileal enterocytes, bile acids are extruded into portal blood by the heterodimeric organic solute transporter OSTα/OSTβ. Although the transport function of OSTα/OSTβ has been characterized, little is known about the regulation of its expression. We show here that human OSTα/OSTβ expression is induced by bile acids through ligand-dependent transactivation of both OST genes by the nuclear bile acid receptor/farnesoid X receptor (FXR). FXR agonists induced endogenous mRNA levels of OSTα and OSTβ in cultured cells, an effect that was not discernible upon inhibition of FXR expression by small interfering RNAs. Furthermore, OST mRNAs were induced in human ileal biopsies exposed to the bile acid chenodeoxycholic acid. Reporter constructs containing OST α or OST β promoters were transactivated by FXR in the presence of its ligand. Two functional FXR binding motifs were identified in the OST α gene and one in the OST β gene. Targeted mutation of these elements led to reduced inducibility of both OST promoters by FXR. In conclusion, the genes encoding the human OSTα/OSTβ complex are induced by bile acids and FXR. By coordinated control of OSTα/OSTβ expression, bile acids may adjust the rate of their own efflux from enterocytes in response to changes in intracellular bile acid levels.Keywords
This publication has 33 references indexed in Scilit:
- Analysis of the In Vivo Functions of Mrp3Molecular Pharmacology, 2005
- Molecular Regulation of Hepatobiliary Transport SystemsJournal of Clinical Gastroenterology, 2005
- Bile acid-induced negative feedback regulation of the human ileal bile acid transporterHepatology, 2004
- Functional Complementation between a Novel Mammalian Polygenic Transport Complex and an Evolutionarily Ancient Organic Solute Transporter, OSTα-OSTβPublished by Elsevier ,2003
- NUBIScan, an in Silico Approach for Prediction of Nuclear Receptor Response ElementsMolecular Endocrinology, 2002
- Farnesoid X receptor and bile salts are involved in transcriptional regulation of the gene encoding the human bile salt export pumpHepatology, 2002
- Regulation of Multidrug Resistance-associated Protein 2 (ABCC2) by the Nuclear Receptors Pregnane X Receptor, Farnesoid X-activated Receptor, and Constitutive Androstane ReceptorJournal of Biological Chemistry, 2002
- Identification of the DNA Binding Specificity and Potential Target Genes for the Farnesoid X-activated ReceptorJournal of Biological Chemistry, 2000
- The RXR heterodimers and orphan receptorsPublished by Elsevier ,1995
- Cloning and molecular characterization of the ontogeny of a rat ileal sodium-dependent bile acid transporter.Journal of Clinical Investigation, 1995