Estrogen receptor 1 expression and methylation of Esr1 promoter in mouse fetal prostate mesenchymal cells induced by gestational exposure to bisphenol A or ethinylestradiol

Author:

Bhandari Ramji K123,Taylor Julia A2,Sommerfeld-Sager Jennifer2,Tillitt Donald E3,Ricke William A4,vom Saal Frederick S2

Affiliation:

1. Department of Biology, University of North Carolina at Greensboro, Greensboro, NC, USA

2. Division of Biological Sciences, University of Missouri, Columbia, MO, USA

3. United States Geological Survey Columbia Environmental Research Center, Columbia, MO, USA

4. Department of Urology, Molecular Environmental Toxicology Program, George M. O’Brien Center of Research Excellence, University of Wisconsin, Madison, WI, USA

Abstract

Abstract Fetal/neonatal environmental estrogen exposures alter developmental programing of the prostate gland causing onset of diseases later in life. We have previously shown in vitro that exposures to 17β-estradiol (E2) and the endocrine disrupting chemical bisphenol A, at concentrations relevant to human exposure, cause an elevation of estrogen receptor α (Esr1) mRNA in primary cultures of fetal mouse prostate mesenchymal cells; a similar result was observed in the fetal rat urogenital sinus. Effects of these chemicals on prostate mesenchyme in vivo are not well understood. Here we show effects in mice of fetal exposure to the estrogenic drug in mixed oral contraceptives, 17α-ethinylestradiol (EE2), at a concentration of EE2 encountered by human embryos/fetuses whose mothers become pregnant while on EE2-containing oral contraceptives, or bisphenol A at a concentration relevant to exposures observed in human fetuses in vivo. Expression of Esr1 was elevated by bisphenol A or EE2 exposures, which decreased the global expression of DNA methyltransferase 3A (Dnmt3a), while methylation of Esr1 promoter was significantly increased. These results show that exposures to the environmental estrogen bisphenol A and drug EE2 cause transcriptional and epigenetic alterations to expression of estrogen receptors in developing prostate mesenchyme in vivo.

Funder

National Institute of Environmental Health Sciences

Publisher

Oxford University Press (OUP)

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