SULT2B1b Sulfotransferase: Induction by Vitamin D Receptor and Reduced Expression in Prostate Cancer

Author:

Seo Young-Kyo1,Mirkheshti Nooshin1,Song Chung S.1,Kim Soyoung1,Dodds Sherry1,Ahn Soon C.1,Christy Barbara1,Mendez-Meza Rosario2,Ittmann Michael M.3,Abboud-Werner Sherry2,Chatterjee Bandana14

Affiliation:

1. Departments of Molecular Medicine (Y.-K.S., N.M., C.S.S., S.K., S.D., S.C.A., B.C., B.C.)University of Texas Health Science Center at San Antonio, San Antonio, Texas 78245;

2. Pathology (R.M.-M., S.A.-W.), University of Texas Health Science Center at San Antonio, San Antonio, Texas 78245;

3. Department of Pathology and Immunology (M.M.I.), Baylor College of Medicine, Houston, Texas 77030;

4. South Texas Veterans Health Care System (B.C.), San Antonio, Texas 78229

Abstract

Abstract An elevated tumor tissue androgen level, which reactivates androgen receptor in recurrent prostate cancer, arises from the intratumor synthesis of 5α-dihydrotestosterone through use of the precursor steroid dehydroepiandrosterone (DHEA) and is fueled by the steroidogenic enzymes 3β-hydroxysteroid dehydrogenase (3β-HSD1), aldoketoreductase (AKR1C3), and steroid 5-alpha reductase, type 1 (SRD5A1) present in cancer tissue. Sulfotransferase 2B1b (SULT2B1b) (in short, SULT2B) is a prostate-expressed hydroxysteroid SULT that converts cholesterol, oxysterols, and DHEA to 3β-sulfates. DHEA metabolism involving sulfonation by SULT2B can potentially interfere with intraprostate androgen synthesis due to reduction of free DHEA pool and, thus, conversion of DHEA to androstenedione. Here we report that in prostatectomy specimens from treatment-naive patients, SULT2B expression is markedly reduced in malignant tissue (P < .001, Mann-Whitney U test) compared with robust expression in adjacent nonmalignant glands. SULT2B was detected in formalin-fixed specimens by immunohistochemistry on individual sections and tissue array. Immunoblotting of protein lysates of frozen cancer and matched benign tissue confirmed immunohistochemistry results. An in-house–developed rabbit polyclonal antibody against full-length human SULT2B was validated for specificity and used in the analyses. Ligand-activated vitamin D receptor induced the SULT2B1 promoter in vivo in mouse prostate and increased SULT2B mRNA and protein levels in vitro in prostate cancer cells. A vitamin D receptor/retinoid X receptor-α–bound DNA element (with a DR7 motif) mediated induction of the transfected SULT2B1 promoter in calcitriol-treated cells. SULT2B knockdown caused an increased proliferation rate of prostate cancer cells upon stimulation by DHEA. These results suggest that the tumor tissue SULT2B level may partly control prostate cancer growth, and its induction in a therapeutic setting may inhibit disease progression.

Publisher

The Endocrine Society

Subject

Endocrinology,Molecular Biology,General Medicine

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