Role for enhanced faecal excretion of bile acid in hydroxysteroid sulfotransferase-mediated protection against lithocholic acid-induced liver toxicity
- 1 July 2006
- journal article
- research article
- Published by Taylor & Francis in Xenobiotica
- Vol. 36 (7) , 631-644
- https://doi.org/10.1080/00498250600776827
Abstract
The efficient clearance of toxic bile acids such as lithocholic acid (LCA) requires drug-metabolizing enzymes. We therefore assessed the influence of pregnenolone 16α-carbonitrile (PCN) treatment on LCA-induced hepatotoxicity and disposition of LCA metabolites using female farnesoid X receptor (FXR)-null and wild-type mice. Marked decreases in serum aspartate aminotransferase (AST) and alanine aminotransferase (ALT) activities, and hepatic tauroLCA (TLCA) concentrations were found in LCA-fed wild-type mice co-treated with PCN. Whereas induction of Cyp3a and hydroxysteroid sulfotransferase (Sult2a) proteins was observed in FXR-null and wild-type mice, clear increases in biliary 3α-sulfated TLCA but not total 6α-hydroxy LCA (taurohyodeoxycholic acid and hyodeoxycholic acid) were only observed in PCN-treated wild-type mice. Biliary 3α-sulfated TLCA output rate was increased 7.2-fold, but accounts for only 4.2% of total bile acid output rate in LCA and PCN-co-treated wild-type mice. Total 3α-sulfated LCA (LCA and TLCA) was, however, the most abundant bile acid component in faeces suggesting that efficient faecal excretion of biliary 3α-sulfated TLCA through escape from enterohepatic circulation. FXR-null mice, which have constitutively high levels of the Sult2a protein, were fed a diet supplemented with 1% LCA and 0.4% dehydroepiandrosterone (DHEA), a typical Sult2a substrate/inhibitor. The faecal total 3α-sulfated bile acid excretion was reduced to 62% of FXR-null mice fed only the LCA diet. Hepatic TLCA concentration and serum AST activity were significantly higher in FXR-null mice fed DHEA and LCA diet than in FXR-null mice fed the LCA diet or DHEA diet. These results suggest that hepatic formation of 3α-sulfated TLCA is a crucial factor for protection against LCA-induced hepatotoxicity.Keywords
This publication has 30 references indexed in Scilit:
- CAR and PXR agonists stimulate hepatic bile acid and bilirubin detoxification and elimination pathways in mice†Hepatology, 2005
- Regulation of Human Hepatic Hydroxysteroid Sulfotransferase Gene Expression by the Peroxisome Proliferator-Activated Receptor α Transcription FactorMolecular Pharmacology, 2005
- Role of Farnesoid X Receptor in the Enhancement of Canalicular Bile Acid Output and Excretion of Unconjugated Bile Acids: A Mechanism for Protection against Cholic Acid-Induced Liver ToxicityThe Journal of Pharmacology and Experimental Therapeutics, 2005
- Combined loss of orphan receptors PXR and CAR heightens sensitivity to toxic bile acids in miceHepatology, 2004
- The Constitutive Androstane Receptor and Pregnane X Receptor Function Coordinately to Prevent Bile Acid-induced HepatotoxicityJournal of Biological Chemistry, 2004
- Gene regulation for the senescence marker protein DHEA-sulfotransferase by the xenobiotic-activated nuclear pregnane X receptor (PXR)Mechanisms of Ageing and Development, 2004
- A Novel Constitutive Androstane Receptor-Mediated and CYP3A-Independent Pathway of Bile Acid DetoxificationMolecular Pharmacology, 2004
- Transcellular Transport of Organic Anions Across a Double-transfected Madin-Darby Canine Kidney II Cell Monolayer Expressing Both Human Organic Anion-transporting Polypeptide (OATP2/SLC21A6) and Multidrug Resistance-associated Protein 2 (MRP2/ABCC2)Published by Elsevier ,2002
- Hepatic levels of bile acids in end-stage chronic cholestatic liver diseaseClinica Chimica Acta; International Journal of Clinical Chemistry, 1996
- Purification and Properties of Bile Acid Sulfate Sulfatase fromPseudomonas testosteroniBioscience, Biotechnology, and Biochemistry, 1994