4.5 Article

DNA methylome changes by estradiol benzoate and bisphenol A links early-life environmental exposures to prostate cancer risk

Journal

EPIGENETICS
Volume 11, Issue 9, Pages 674-689

Publisher

TAYLOR & FRANCIS INC
DOI: 10.1080/15592294.2016.1208891

Keywords

Developmental origin of health and disease (DOHaD); early-life reprogramming; endocrine-disrupting chemicals (EDCs); epigenetics; Ingenuity (R); Pathway Analysis (IPA (R)); methylated-CpG island recovery assay (MIRA); NimbleGen rat DNA methylation promoter array; Sprague Dawley rats; stem cell pluripotency; The Cancer Genome Atlas (TCGA)

Funding

  1. National Institutes of Environmental Health Sciences [R01CA015776, R01ES015584, RC2ES018758, RC2ES018789, U01ES019480, U01ES020988, CA172220, P30ES006096]
  2. United States Department of Veterans Affairs [I01BX000675]
  3. Department of Defense Prostate Cancer Research Program [W81XWH-06-1-0373, W81XWH-15-1-0496]
  4. NATIONAL CANCER INSTITUTE [R01CA015776, R01CA172220] Funding Source: NIH RePORTER
  5. NATIONAL INSTITUTE OF ENVIRONMENTAL HEALTH SCIENCES [RC2ES018758, R01ES015584, U01ES019480, RC2ES018789, U01ES020988, P30ES006096] Funding Source: NIH RePORTER

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Developmental exposure to endocrine-disrupting chemicals (EDCs), 17-estradiol-3-benzoate (EB) and bisphenol A (BPA), increases susceptibility to prostate cancer (PCa) in rodent models. Here, we used the methylated-CpG island recovery assay (MIRA)-assisted genomic tiling and CpG island arrays to identify treatment-associated methylome changes in the postnatal day (PND)90 dorsal prostate tissues of Sprague-Dawley rats neonatally (PND1, 3, and 5) treated with 25 mu g/pup or 2,500 mu g EB/kg body weight (BW) or 0.1 mu g BPA/pup or 10 mu g BPA/kg BW. We identified 111 EB-associated and 86 BPA-associated genes, with 20 in common, that have significant differentially methylated regions. Pathway analysis revealed cancer as the top common disease pathway. Bisulfite sequencing validated the differential methylation patterns observed by array analysis in 15 identified candidate genes. The methylation status of 7 (Pitx3, Wnt10b, Paqr4, Sox2, Chst14, Tpd52, Creb3l4) of these 15 genes exhibited an inverse correlation with gene expression in tissue samples. Cell-based assays, using 5-aza-cytidine-treated normal (NbE-1) and cancerous (AIT) rat prostate cells, added evidence of DNA methylation-mediated gene expression of 6 genes (exception: Paqr4). Functional connectivity of these genes was linked to embryonic stem cell pluripotency. Furthermore, clustering analyses using the dataset from The Cancer Genome Atlas revealed that expression of this set of 7 genes was associated with recurrence-free survival of PCa patients. In conclusion, our study reveals that gene-specific promoter methylation changes, resulting from early-life EDC exposure in the rat, may serve as predictive epigenetic biomarkers of PCa recurrence, and raises the possibility that such exposure may impact human disease.

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