Literature DB >> 22109888

Neonatal exposure to estradiol/bisphenol A alters promoter methylation and expression of Nsbp1 and Hpcal1 genes and transcriptional programs of Dnmt3a/b and Mbd2/4 in the rat prostate gland throughout life.

Wan-yee Tang1, Lisa M Morey, Yuk Yin Cheung, Lynn Birch, Gail S Prins, Shuk-mei Ho.   

Abstract

Evidence supporting an early origin of prostate cancer is growing. We demonstrated previously that brief exposure of neonatal rats to estradiol or bisphenol A elevated their risk of developing precancerous lesions in the prostate upon androgen-supported treatment with estradiol as adults. Epigenetic reprogramming may be a mechanism underlying this inductive event in early life, because we observed overexpression of phosphodiesterase 4D variant 4 (Pde4d4) through induction of hypomethylation of its promoter. This epigenetic mark was invisible in early life (postnatal d 10), becoming apparent only after sexual maturation. Here, we asked whether other estrogen-reprogrammable epigenetic marks have similar or different patterns in gene methylation changes throughout life. We found that hypomethylation of the promoter of nucleosome binding protein-1 (Nsbp1), unlike Pde4d4, is an early and permanent epigenetic mark of neonatal exposure to estradiol/bisphenol A that persists throughout life, unaffected by events during adulthood. In contrast, hippocalcin-like 1 (Hpcal1) is a highly plastic epigenetic mark whose hypermethylation depends on both type of early-life exposure and adult-life events. Four of the eight genes involved in DNA methylation/demethylation showed early and persistent overexpression that was not a function of DNA methylation at their promoters, including genes encoding de novo DNA methyltransferases (Dnmt3a/b) and methyl-CpG binding domain proteins (Mbd2/4) that have demethylating activities. Their lifelong aberrant expression implicates them in early-life reprogramming and prostate carcinogenesis during adulthood. We speculate that the distinctly different fate of early-life epigenetic marks during adulthood reflects the complex nature of lifelong editing of early-life epigenetic reprogramming.

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Year:  2011        PMID: 22109888      PMCID: PMC3249669          DOI: 10.1210/en.2011-1308

Source DB:  PubMed          Journal:  Endocrinology        ISSN: 0013-7227            Impact factor:   4.736


  61 in total

1.  A prospective investigation of height and prostate cancer risk.

Authors:  Jacqueline S P Sequoia; Margaret E Wright; Peter McCarron; Pirjo Pietinen; Philip R Taylor; Jarmo Virtamo; Demetrius Albanes
Journal:  Cancer Epidemiol Biomarkers Prev       Date:  2006-11       Impact factor: 4.254

Review 2.  Prostate cancer and race.

Authors:  Otis W Brawley; Ashesh B Jani; Veraj Master
Journal:  Curr Probl Cancer       Date:  2007 May-Jun       Impact factor: 3.187

3.  Two variants on chromosome 17 confer prostate cancer risk, and the one in TCF2 protects against type 2 diabetes.

Authors:  Julius Gudmundsson; Patrick Sulem; Valgerdur Steinthorsdottir; Jon T Bergthorsson; Gudmar Thorleifsson; Andrei Manolescu; Thorunn Rafnar; Daniel Gudbjartsson; Bjarni A Agnarsson; Adam Baker; Asgeir Sigurdsson; Kristrun R Benediktsdottir; Margret Jakobsdottir; Thorarinn Blondal; Simon N Stacey; Agnar Helgason; Steinunn Gunnarsdottir; Adalheidur Olafsdottir; Kari T Kristinsson; Birgitta Birgisdottir; Shyamali Ghosh; Steinunn Thorlacius; Dana Magnusdottir; Gerdur Stefansdottir; Kristleifur Kristjansson; Yu Bagger; Robert L Wilensky; Muredach P Reilly; Andrew D Morris; Charlotte H Kimber; Adebowale Adeyemo; Yuanxiu Chen; Jie Zhou; Wing-Yee So; Peter C Y Tong; Maggie C Y Ng; Torben Hansen; Gitte Andersen; Knut Borch-Johnsen; Torben Jorgensen; Alejandro Tres; Fernando Fuertes; Manuel Ruiz-Echarri; Laura Asin; Berta Saez; Erica van Boven; Siem Klaver; Dorine W Swinkels; Katja K Aben; Theresa Graif; John Cashy; Brian K Suarez; Onco van Vierssen Trip; Michael L Frigge; Carole Ober; Marten H Hofker; Cisca Wijmenga; Claus Christiansen; Daniel J Rader; Colin N A Palmer; Charles Rotimi; Juliana C N Chan; Oluf Pedersen; Gunnar Sigurdsson; Rafn Benediktsson; Eirikur Jonsson; Gudmundur V Einarsson; Jose I Mayordomo; William J Catalona; Lambertus A Kiemeney; Rosa B Barkardottir; Jeffrey R Gulcher; Unnur Thorsteinsdottir; Augustine Kong; Kari Stefansson
Journal:  Nat Genet       Date:  2007-07-01       Impact factor: 38.330

Review 4.  Epigenetic reprogramming and imprinting in origins of disease.

Authors:  Wan-yee Tang; Shuk-mei Ho
Journal:  Rev Endocr Metab Disord       Date:  2007-06       Impact factor: 6.514

5.  On the mechanism of demethylation of 5-methylcytosine in DNA.

Authors:  Stefan Hamm; George Just; Nathalie Lacoste; Nicolas Moitessier; Moshe Szyf; Orval Mamer
Journal:  Bioorg Med Chem Lett       Date:  2007-12-26       Impact factor: 2.823

6.  [Expression of nucleosomal binding protein 1 in normal prostate benign prostate hyperplasia, and prostate cancer and significance thereof].

Authors:  Gang Song; Li-qun Zhou; Mai Weng; Qun He; Zhi-song He; Jin-rui Hao; Bai-nian Pan; Yan-qun Na
Journal:  Zhonghua Yi Xue Za Zhi       Date:  2006-07-25

7.  Dnmt3a2 targets endogenous Dnmt3L to ES cell chromatin and induces regional DNA methylation.

Authors:  Keisuke Nimura; Chisaki Ishida; Hiroshi Koriyama; Kenichiro Hata; Shinya Yamanaka; En Li; Kiyoe Ura; Yasufumi Kaneda
Journal:  Genes Cells       Date:  2006-10       Impact factor: 1.891

Review 8.  The MBD protein family-reading an epigenetic mark?

Authors:  Archana Dhasarathy; Paul A Wade
Journal:  Mutat Res       Date:  2008-07-22       Impact factor: 2.433

Review 9.  Endocrine disruptors and prostate cancer risk.

Authors:  Gail S Prins
Journal:  Endocr Relat Cancer       Date:  2008-06-04       Impact factor: 5.678

10.  VILIP-1 downregulation in non-small cell lung carcinomas: mechanisms and prediction of survival.

Authors:  Jian Fu; Kathryn Fong; Alfonso Bellacosa; Eric Ross; Sinoula Apostolou; Daniel E Bassi; Fang Jin; Jirong Zhang; Paul Cairns; Inmaculada Ibañez de Caceres; Karl-Heinz Braunewell; Andres J Klein-Szanto
Journal:  PLoS One       Date:  2008-02-27       Impact factor: 3.240

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  66 in total

1.  Stem Cells as Hormone Targets That Lead to Increased Cancer Susceptibility.

Authors:  Gail S Prins; Esther L Calderon-Gierszal; Wen-Yang Hu
Journal:  Endocrinology       Date:  2015-08-04       Impact factor: 4.736

Review 2.  Environmental epigenetics and its implication on disease risk and health outcomes.

Authors:  Shuk-Mei Ho; Abby Johnson; Pheruza Tarapore; Vinothini Janakiram; Xiang Zhang; Yuet-Kin Leung
Journal:  ILAR J       Date:  2012

Review 3.  Linking the Epigenome with Exposure Effects and Susceptibility: The Epigenetic Seed and Soil Model.

Authors:  Emma C Bowers; Shaun D McCullough
Journal:  Toxicol Sci       Date:  2016-10-20       Impact factor: 4.849

Review 4.  DNA methylation in development and disease: an overview for prostate researchers.

Authors:  Diya B Joseph; Douglas W Strand; Chad M Vezina
Journal:  Am J Clin Exp Urol       Date:  2018-12-20

Review 5.  Developmental origins of health and disease: a paradigm for understanding disease cause and prevention.

Authors:  Jerrold J Heindel; Laura N Vandenberg
Journal:  Curr Opin Pediatr       Date:  2015-04       Impact factor: 2.856

6.  Perinatal epigenetic determinants of cognitive and metabolic disorders.

Authors:  Daniel S Lupu; Diana Tint; Mihai D Niculescu
Journal:  Aging Dis       Date:  2012-09-27       Impact factor: 6.745

7.  Bisphenol a: a model endocrine disrupting chemical with a new potential mechanism of action.

Authors:  Susan C Nagel; John J Bromfield
Journal:  Endocrinology       Date:  2013-06       Impact factor: 4.736

8.  Effects of High-Butterfat Diet on Embryo Implantation in Female Rats Exposed to Bisphenol A.

Authors:  Alan M Martinez; Ana Cheong; Jun Ying; Jingchuan Xue; Kurunthachalam Kannan; Yuet-Kin Leung; Michael A Thomas; Shuk-Mei Ho
Journal:  Biol Reprod       Date:  2015-10-28       Impact factor: 4.285

9.  DNA methylation of E-cadherin is a priming mechanism for prostate development.

Authors:  Kimberly P Keil; Lisa L Abler; Vatsal Mehta; Helene M Altmann; Jimena Laporta; Erin H Plisch; M Suresh; Laura L Hernandez; Chad M Vezina
Journal:  Dev Biol       Date:  2014-02-03       Impact factor: 3.582

10.  Perinatal bisphenol A exposure promotes dose-dependent alterations of the mouse methylome.

Authors:  Jung H Kim; Maureen A Sartor; Laura S Rozek; Christopher Faulk; Olivia S Anderson; Tamara R Jones; Muna S Nahar; Dana C Dolinoy
Journal:  BMC Genomics       Date:  2014-01-17       Impact factor: 3.969

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