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Genome-Wide DNA Methylation Analysis Predicts an Epigenetic Switch for GATA Factor Expression in Endometriosis

作者:Matthew T. Dyson, Damian Roqueiro, Diana Monsivais, Cihangir Mutlu Ercan, Mary Ellen Pavone, David C. Brooks, Toshiyuki Kakinuma, Masanori Ono, Nadereh Jafari, Yang Dai, Serdar E. Bulun · 发表于:PLoS Genetics · 年份:2014 · DOI:10.1371/journal.pgen.1004158 · 被引用次数:207 · 研究领域:Endometriosis Research and Treatment、Reproductive System and Pregnancy、Endometrial and Cervical Cancer Treatments

Endometriosis is a gynecological disease defined by the extrauterine growth of endometrial-like cells that cause chronic pain and infertility. The disease is limited to primates that exhibit spontaneous decidualization, and diseased cells are characterized by significant defects in the steroid-dependent genetic pathways that typify this process. Altered DNA methylation may underlie these defects, but few regions with differential methylation have been implicated in the disease. We mapped genome-wide differences in DNA methylation between healthy human endometrial and endometriotic stromal cells and correlated this with gene expression using an interaction analysis strategy. We identified 42,248 differentially methylated CpGs in endometriosis compared to healthy cells. These extensive differences were not unidirectional, but were focused intragenically and at sites distal to classic CpG islands where methylation status was typically negatively correlated with gene expression. Significant differences in methylation were mapped to 403 genes, which included a disproportionally large number of transcription factors. Furthermore, many of these genes are implicated in the pathology of endometriosis and decidualization. Our results tremendously improve the scope and resolution of differential methylation affecting the HOX gene clusters, nuclear receptor genes, and intriguingly the GATA family of transcription factors. Functional analysis of the GATA family revealed that GATA2 regulat...