Activators of the farnesoid X receptor negatively regulate androgen glucuronidation in human prostate cancer LNCAP cells

Author:

Kaeding Jenny12,Bouchaert Emmanuel3,Bélanger Julie12,Caron Patrick12,Chouinard Sarah14,Verreault Mélanie12,Larouche Olivier14,Pelletier Georges14,Staels Bart3,Bélanger Alain14,Barbier Olivier12

Affiliation:

1. Molecular Endocrinology and Oncology Research Center, CHUL Research Center, Quebec, QC, Canada G1V 4G2

2. Faculty of Pharmacy, Laval University, QC, Canada G1K 7P4

3. Unité 545 INSERM, Lille, Département d'athérosclérose, Institut Pasteur de Lille and Faculté de Pharmacie, Université Lille II, Lille F-59019, France

4. Faculty of Medicine, Laval University, QC, Canada G1K 7P4

Abstract

Androgens are major regulators of prostate cell growth and physiology. In the human prostate, androgens are inactivated in the form of hydrophilic glucuronide conjugates. These metabolites are formed by the two human UGT2B15 [UGT (UDP-glucuronosyltransferase) 2B15] and UGT2B17 enzymes. The FXR (farnesoid X receptor) is a bile acid sensor controlling hepatic and/or intestinal cholesterol, lipid and glucose metabolism. In the present study, we report the expression of FXR in normal and cancer prostate epithelial cells, and we demonstrate that its activation by chenodeoxycholic acid or GW4064 negatively interferes with the levels of UGT2B15 and UGT2B17 mRNA and protein in prostate cancer LNCaP cells. FXR activation also causes a drastic reduction of androgen glucuronidation in these cells. These results point out activators of FXR as negative regulators of androgen-conjugating UGT expression in the prostate. Finally, the androgen metabolite androsterone, which is also an activator of FXR, dose-dependently reduces the glucuronidation of androgens catalysed by UGT2B15 and UGT2B17 in an FXR-dependent manner in LNCaP cells. In conclusion, the present study identifies for the first time the activators of FXR as important regulators of androgen metabolism in human prostate cancer cells.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

Reference57 articles.

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2. Inactivation of androgens by UDP-glucuronosyltransferase enzymes in humans;Bélanger;Trends Endocrinol. Metab.,2003

3. Metabolic inactivation of estrogens in breast tissue by UDP-glucuronosyltransferase enzymes: an overview;Guillemette;Breast Cancer Res.,2004

4. The cynomolgus monkey (Macaca fascicularis) is the best animal model for the study of steroid glucuronidation;Barbier;J. Steroid Biochem. Mol. Biol.,2003

5. Cellular localization of uridine diphosphoglucuronosyltransferase 2B enzymes in the human prostate by in situ hybridization and immunohistochemistry;Barbier;J. Clin. Endocrinol. Metab.,2000

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