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Combined action of estrogen receptor agonists and antagonists in two-hybrid recombinant yeast in vitro

机译:雌激素受体激动剂和拮抗剂在体外双杂交重组酵母中的联合作用

摘要

Estrogen receptor (ER) antagonistic chemicals in aquatic environments are believed to influence the binding of both endogenous and exogenous estrogens to ERs in aquatic organisms. Although the combined effects of estrogenic compounds have attracted much scientific concern, little work has been done on the influence of such antiestrogens on the biological effects of estrogens. This study focused on how the presence of different amounts of antagonists affects the results of ER agonist activity tests. To achieve this, three questions were stated and answered in sequence. A two-hybrid recombinant yeast assay mediated by ER was adopted, providing a single mode of action and single target of action for this study. Mixtures created by an ER agonist and three antagonists following the fixed-ratio principle were assessed. The concentration of 17 beta-estradiol causing maximum induction was set as the fixed dose of estrogen in the antagonist activity test (question 1). When the two classes of chemicals coexisted, antiestrogens, which as a whole behaved according to the concentration addition model (question 2), decreased the response of estrogen and compressed the concentration-response curves along the y-axis in the agonist activity test (question 3). This may cause the estradiol equivalent to be underestimated and potentially mask the action of estrogenic effects in toxicity evaluation of environmental samples. (C) 2014 Elsevier Inc. All rights reserved.
机译:据信水生环境中的雌激素受体(ER)拮抗化学物质会影响水生生物中内源性和外源性雌激素与ER的结合。尽管雌激素化合物的联合作用引起了很多科学关注,但是关于这种抗雌激素对雌激素的生物学作用的影响还很少进行。这项研究的重点是不同数量的拮抗剂的存在如何影响ER激动剂活性测试的结果。为此,提出了三个问题并依次回答。采用由ER介导的双杂交重组酵母测定法,为这项研究提供了单一的作用方式和单一的作用靶标。评估了由ER激动剂和三种拮抗剂按照固定比例原理产生的混合物。在拮抗剂活性试验中,将引起最大诱导作用的17β-雌二醇的浓度设置为雌激素的固定剂量(问题1)。当两种化学物质共存时,抗雌激素总体上按照浓度增加模型表现(问题2),在激动剂活性测试中,雌激素的反应降低,沿y轴的浓度反应曲线压缩(问题3)。这可能导致雌二醇当量被低估,并可能掩盖在环境样品毒性评估中雌激素作用的作用。 (C)2014 Elsevier Inc.保留所有权利。

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