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雌激素在调节大鼠睾丸胰岛素样生长因子 2-H19 基因座中的潜在作用。

Potential role of estrogen in regulation of the insulin-like growth factor2-H19 locus in the rat testis.

机构信息

Division of Neuroendocrinology, National Institute for Research in Reproductive Health, Indian Council of Medical Research, JM Road, Parel, Mumbai, Maharashtra 400 012, India.

出版信息

Mol Cell Endocrinol. 2010 Jan 15;314(1):110-7. doi: 10.1016/j.mce.2009.08.005. Epub 2009 Aug 14.

Abstract

The selective estrogen receptor modulator, tamoxifen, has been shown to reduce DNA methylation at Insulin-like growth factor 2/H19 differentially methylated region (Igf2/H19 DMR) in the spermatozoa of the Holtzman rats. Since imprint at this locus is acquired during spermatogenesis in the male germ-line, we hypothesized role for estrogen signaling in the methylation dynamics in the testis. The present study was designed to identify putative estrogen response elements (ERE) at Igf2/H19 DMR and their interaction with DNA methylation pathway. Here, we demonstrate presence of functional ERE at 2637/2655 base pair on Igf2/H19 DMR in testicular germ cells, which was found to bind to estrogen receptor beta (ER beta) in the chromatin immunoprecipitation assay. Tamoxifen attenuated ER beta-ERE association thereby acting as an estrogen antagonist at this locus. Further mechanistic study involving colocalization and immunoprecipitation assay revealed interaction of ER beta and Dnmt1 in the testis. The study provides evidence for the role for estrogen in acquisition of imprint at Igf2/H19 DMR in testis and help in understanding molecular mechanism of environmental estrogens impacting male fertility.

摘要

选择性雌激素受体调节剂他莫昔芬已被证明可降低霍尔茨曼大鼠精子中胰岛素样生长因子 2/ H19 差异甲基化区域(Igf2 / H19 DMR)的 DNA 甲基化。由于该基因座的印迹是在雄性生殖系的精子发生过程中获得的,因此我们假设雌激素信号在睾丸中的甲基化动力学中起作用。本研究旨在鉴定 Igf2 / H19 DMR 上的推定雌激素反应元件(ERE)及其与 DNA 甲基化途径的相互作用。在这里,我们证明了 Igf2 / H19 DMR 上 2637/2655 碱基对处存在功能性 ERE,该 ERE 在染色质免疫沉淀测定中被发现与雌激素受体β(ERβ)结合。他莫昔芬减弱了 ERβ-ERE 结合,从而在此基因座上作为雌激素拮抗剂发挥作用。进一步的机制研究包括共定位和免疫沉淀测定表明 ERβ和 Dnmt1 在睾丸中的相互作用。该研究为雌激素在睾丸中 Igf2 / H19 DMR 印迹获得中的作用提供了证据,并有助于理解环境雌激素影响男性生育力的分子机制。

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