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Estrogenic Activity of the Equine Estrogen Metabolite, 4-Methoxyequilenin

机译:雌激素代谢产物的雌激素活性,4-甲氧基素烯

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Oxidative metabolism of estrogens has been associated with genotoxicity. 0-methylation of catechol estrogens is considered as a protective mechanism. 4-Methoxyequilenin (4-MeOEN) is the 0-methylated product of 4-hydroxyequilenin (4-OHEN). 4-OHEN, the major catechol metabolite of the equine estrogens present in the most widely prescribed hormone replacement therapeutics, causes DNA damage via quinone formation. In this study, estrogen receptor (ERoc) binding of 4-MeOEN was compared with estradiol (E_2) and equilenin derivatives including 4-BrEN using computer modeling, estrogen response element (ERE)-luciferase induction in MCF-7 cells, and alkaline phosphatase (AP) induction in Ishikawa cells. 4-MeOEN induced AP and luciferase with nanomolar potency and displayed a similar profile of activity to E_2 Molecular modeling indicated that MeOEN could be a ligand for ERa despite no binding being observed in the ERa competitive binding assay. Methylation of 4-OHEN may not represent a detoxification pathway, since 4-MeOEN is a full estrogen agonist with nanomolar potency.
机译:雌激素的氧化代谢已与遗传毒性有关。 0-儿茶酚雌激素的甲基化被认为是一种保护机制。 4-甲氧基赤素蛋白(4-MeOen)是4-羟基赤素蛋白(4-OHEN)的0-甲基化产物。 4-OHEN,在最广泛规定的激素替代治疗剂中存在的马雌激素的主要儿茶酚代谢物导致通过醌形成导致DNA损伤。在该研究中,将4-Meoen的雌激素受体(EROC)结合与雌二醇(E_2)和Equilenin衍生物进行比较,包括使用计算机建模,雌激素响应元素(ORE) - MCF-7细胞中的雌激素响应元素(ORE)诱导和碱性磷酸酶(AP)Ishikawa细胞的诱导。具有纳米摩尔效力的4-Meoen诱导的AP和荧光素酶,并显示出与E_2分子模型类似的活性分布表明,尽管在时代竞争性结合测定中没有观察到时代,Meoen可以是ERA的配体。 4-OHEN的甲基化可能不代表排毒途径,因为4-Meoen是具有纳米摩尔效力的全雌激素激动剂。

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