Novel role for conceptus signals in mRNA expression regulation by DNA methylation in porcine endometrium during early pregnancy

DNA甲基化 生物 概念 子宫内膜 甲基化 DNMT1型 发情周期 CpG站点 男科 甲基转移酶 表观遗传学 DNA甲基转移酶 卵泡期 怀孕 内分泌学 基因表达 内科学 胎儿 基因 医学 遗传学
作者
Piotr Kaczynski,Vera Weijden,Ewelina Goryszewska-Szczurek,Monika Baryla,Susanne E Ulbrich,Agnieszka Waclawik
出处
期刊:Biology of Reproduction [Oxford University Press]
标识
DOI:10.1093/biolre/ioac193
摘要

Abstract During early pregnancy, porcine conceptuses (the embryos with associated membranes) secrete estradiol-17β (E2)—their major signal for maternal recognition of pregnancy—and prostaglandin E2 (PGE2). Both hormones induce prominent changes of the endometrial transcriptome in vivo. Studies on endometrial pathologies have shown that E2 affects gene expression by epigenetic mechanisms related to DNA methylation. Herein, we determined the effects of E2 and PGE2 alone, and a combined E2 + PGE2 treatment administered into the uterine lumen in vivo on the expression and activity of DNA-methyltransferases (DNMT) and on CpG methylation patterns of selected genes in porcine endometrium. To compare the effect of treatment with the physiological effect of pregnancy, endometria from day 12 pregnant/cyclic gilts were included. Both E2 and PGE2 significantly reduced the expression of DNMTs. Likewise, the expressions of DNMT1 and DNMT3A were decreased on day 12 of pregnancy compared to the estrous cycle. DNMT activity increased in endometrial samples following E2 treatment and in gilts on day 12 of pregnancy. Treatment with E2 alone and/or simultaneously with PGE2 altered endometrial DNA methylation of CpG sites of ADAMTS20, ADH1C, BGN, PSAT1 and WNT5A. Different CpG methylation patterns of ADAMTS20, BGN, DMBT1, RASSF1 and WNT5A were found in the endometrium on day 12 of pregnancy compared to day 12 of the estrous cycle. Significant correlations were detected between CpG methylation and gene expression for ADAMTS20, ADH1C, BGN, DMBT1, PSAT1 and WNT5A. Our results indicate that CpG methylation induced by embryonic signals may contribute to regulating endometrial gene expression during pregnancy establishment.
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