We propose to study epigenetic changes in normal breast epithelial cells responding to physiological stimulation and environmentally perturbation. Integrative omic approaches will be used to determine global chromatin profiles in estrogen receptor (ER)1-positive cells stimulated with ligands. Complex regulatory networks of ER1 signaling are activated with concomitant alterations of chromatin in responsive genes. The expression of these genes then returns to the basal level. Chromatin is in a semi-open state, poised to receive transcription factors or repressors when signaling is activated by the next cycle of ligand. The homeostasis of chromatin dynamics is perturbed when epithelial progenitor cells are continually exposed to estrogenic plasticizers like bisphenol A (BPA). We hypothesize that a subset of responsive genes is reprogrammed to undergo permanent silencing. Step-wise acquisition of repressive histone marks, polycomb repressors, and DNA methyltransferases may take place in these genes. This injury information can be heritably transmitted to the differentiated progeny, and DNA methylation is progressively accumulated in target CpG islands. Epigenomic mapping of these CpG islands may identify potential biomarkers that are used as environmental sensors for monitoring human exposures to environmental estrogens. Public Health Relevance: It remains to be conclusively determined if exposure to low-dose bisphenol A (BPA), an estrogenic plasticizer, is harmful to human health. The purpose of this study is to show that epithelial progenitors in the human breast are sensitive to BPA exposure. This injury memory is maintained by an epigenetic mechanism, leading to aberrant proliferation of differentiated progeny and increased risk of breast neoplasm. The cytology assay developed in the proposed study can be used to screen environmental agents for potential estrogenic effects in human cells. Furthermore, the identified epigenetic markers may be used to identify breast cancer patients with a prior history of exposure to BPA or other environmental estrogens. It is our hope that the result of this study supports an inclusion of the epigenetic effects of estrogenic plasticizers, like BPA, into risk assessment implemented by regulatory agencies.

Public Health Relevance

It remains to be conclusively determined if exposure to low-dose bisphenol A (BPA), an estrogenic plasticizer, is harmful to human health. The purpose of this study is to show that epithelial progenitors in the human breast are sensitive to BPA exposure. This injury memory is maintained by an epigenetic mechanism, leading to aberrant proliferation of differentiated progeny and increased risk of breast neoplasm. The cytology assay developed in the proposed study can be used to screen environmental agents for potential estrogenic effects in human cells. Furthermore, the identified epigenetic markers may be used to identify breast cancer patients with a prior history of exposure to BPA or other environmental estrogens. It is our hope that the result of this study supports an inclusion of the epigenetic effects of estrogenic plasticizers, like BPA, into risk assessment implemented by regulatory agencies.

Agency
National Institute of Health (NIH)
Institute
National Institute of Environmental Health Sciences (NIEHS)
Type
Research Project (R01)
Project #
1R01ES017594-01
Application #
7714035
Study Section
Special Emphasis Panel (ZRG1-GGG-M (53))
Program Officer
Heindel, Jerrold
Project Start
2009-09-01
Project End
2014-06-30
Budget Start
2009-09-01
Budget End
2010-06-30
Support Year
1
Fiscal Year
2009
Total Cost
$375,000
Indirect Cost
Name
Ohio State University
Department
Microbiology/Immun/Virology
Type
Schools of Medicine
DUNS #
832127323
City
Columbus
State
OH
Country
United States
Zip Code
43210
Hsu, P-Y; Hsu, H-K; Hsiao, T-H et al. (2016) Spatiotemporal control of estrogen-responsive transcription in ER?-positive breast cancer cells. Oncogene 35:2379-89
Wang, Li-Shu; Burke, Carol A; Hasson, Henrietta et al. (2014) A phase Ib study of the effects of black raspberries on rectal polyps in patients with familial adenomatous polyposis. Cancer Prev Res (Phila) 7:666-74
Hsu, Pei-Yin; Hsu, Hang-Kai; Lan, Xun et al. (2013) Amplification of distant estrogen response elements deregulates target genes associated with tamoxifen resistance in breast cancer. Cancer Cell 24:197-212
Huang, Tze-Ta; Gonzales, Cara B; Gu, Fei et al. (2013) Epigenetic deregulation of the anaplastic lymphoma kinase gene modulates mesenchymal characteristics of oral squamous cell carcinomas. Carcinogenesis 34:1717-27
Wang, Junbai; Lan, Xun; Hsu, Pei-Yin et al. (2013) Genome-wide analysis uncovers high frequency, strong differential chromosomal interactions and their associated epigenetic patterns in E2-mediated gene regulation. BMC Genomics 14:70
Wang, Li-Shu; Kuo, Chieh-Ti; Huang, Tim H-M et al. (2013) Black raspberries protectively regulate methylation of Wnt pathway genes in precancerous colon tissue. Cancer Prev Res (Phila) 6:1317-27
Gu, Fei; Doderer, Mark S; Huang, Yi-Wen et al. (2013) CMS: a web-based system for visualization and analysis of genome-wide methylation data of human cancers. PLoS One 8:e60980
Wu, Heng-Yi; Zheng, Pengyue; Jiang, Guanglong et al. (2012) A modulator based regulatory network for ERýý signaling pathway. BMC Genomics 13 Suppl 6:S6
de Assis, Sonia; Warri, Anni; Cruz, M Idalia et al. (2012) High-fat or ethinyl-oestradiol intake during pregnancy increases mammary cancer risk in several generations of offspring. Nat Commun 3:1053
Tang, Binhua; Hsu, Hang-Kai; Hsu, Pei-Yin et al. (2012) Hierarchical modularity in ER? transcriptional network is associated with distinct functions and implicates clinical outcomes. Sci Rep 2:875

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