首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Estrogen Receptor α Enhances the Rate of Oxidative DNA Damage by Targeting an Equine Estrogen Catechol Metabolite to the Nucleus
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Estrogen Receptor α Enhances the Rate of Oxidative DNA Damage by Targeting an Equine Estrogen Catechol Metabolite to the Nucleus

机译:雌激素受体α增强了DNA的氧化性DNA损伤的速率 将马雌激素邻苯二酚代谢物靶向 核

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摘要

Exposure to estrogens increases the risk of breast and endometrial cancer. It is proposed that the estrogen receptor (ER) may contribute to estrogen carcinogenesis by transduction of the hormonal signal and as a “Trojan horse” concentrating genotoxic estrogen metabolites in the nucleus to complex with DNA, enhancing DNA damage. 4-Hydroxyequilenin (4-OHEN), the major catechol metabolite of equine estrogens present in estrogen replacement formulations, autoxidizes to a redox-cycling quinone that has been shown to cause DNA damage. 4-OHEN was found to be an estrogen of nanomolar potency in cell culture using a luciferase reporter assay and, using a chromatin immunoprecipitation assay, was found to activate ERα binding to estrogen-responsive genes in MCF-7 cells. DNA damage was measured in cells by comparing ERα(+) versus ERα(-) cells and 4-OHEN versus menadione, a reactive oxygen species (ROS)-generating, but non-estrogenic, quinone. 4-OHEN selectively induced DNA damage in ERα(+) cells, whereas menadione-induced damage was not dependent on cellular ER status. The rate of 4-OHEN-induced DNA damage was significantly enhanced in ERα(+) cells, whereas ER status had no effect on the rate of menadione-induced damage. Imaging of ROS induced by 4-OHEN showed accumulation selective for the nucleus of ERα(+) cells within 5 min, whereas in ERα(-) or menadione-treated cells, no selectivity was observed. These data support ERα acting as a Trojan horse concentrating 4-OHEN in the nucleus to accelerate the rate of ROS generation and thereby amplify DNA damage. The Trojan horse mechanism may be of general importance beyond estrogen genotoxins.
机译:暴露于雌激素会增加患乳腺癌和子宫内膜癌的风险。有人提出雌激素受体(ER)可能通过激素信号的转导和作为“特洛伊木马”(Trojan horse)来浓缩细胞核中的遗传毒性雌激素代谢物与DNA形成复合物,从而增强DNA损伤,从而促进雌激素的致癌作用。 4-Hydrroxyequilenin(4-OHEN)是雌激素替代制剂中存在的马雌激素的主要儿茶酚代谢产物,可自氧化为氧化还原循环醌,已证明会导致DNA损伤。使用萤光素酶报告基因测定法,发现4-OHEN是细胞培养中纳摩尔效价的雌激素,并且使用染色质免疫沉淀测定法,发现4-OHEN可激活ERα结合MCF-7细胞中的雌激素反应性基因。通过比较ERα(+)与ERα(-)细胞和4-OHEN与甲萘醌(一种产生活性氧(ROS)但非雌激素的醌)的比值来测量细胞中的DNA损伤。 4-OHEN在ERα(+)细胞中选择性诱导DNA损伤,而甲萘醌诱导的损伤不依赖于细胞ER状态。 4-OHEN诱导的DNA损伤率在ERα(+)细胞中显着增强,而ER状态对细胞的发生率没有影响。 甲萘醌引起的损害。 4-OHEN诱导的ROS成像显示积累 在5分钟内对ERα(+)细胞核具有选择性,而在 ERα(-)或甲萘醌处理的细胞,未观察到选择性。这些 数据支持ERα充当集中了4-OHEN的特洛伊木马 核可加速ROS生成速率,从而扩增DNA 损伤。特洛伊木马机制可能超越 雌激素基因毒素。

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