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Interference by atrazine and bisphenol-A with progestin binding to the ovarian progestin membrane receptor and induction of oocyte maturation in Atlantic croaker

机译:阿特拉津和双酚A干扰孕激素与卵巢孕激素膜受体的结合,并诱导大西洋黄花鱼卵母细胞成熟

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摘要

Recent studies have shown that several environmental chemicals which disrupt classical genomic steroid actions can also interfere with nongenomic steroid actions initiated at the cell surface. The effects of bisphenol-A and atrazine on the nongenomic actions of a progestin, 17,20β,21-trihydroxy-4-pregnen-3-one (20β-S), on oocyte maturation (OM) were investigated an in vitro Atlantic croaker (Micropogonias undulatus) oocyte bioassay. Treatment of croaker follicle-enclosed oocytes with either bisphenol-A or atrazine blocked OM in response to 20β-S in a concentration-dependent manner at 10-25 μM (2.2-5.7 ppm) and higher concentrations. These compounds were also effective competitors at concentrations of 10~(-6)-10~(-5) M of [~3H]-20β-S binding to the ovarian progestin membrane receptor that mediates the OM response to 20β-S. The results suggest that diverse classes of environmental chemicals can disrupt nongenomic progestin actions via receptor-mediated mechanisms.
机译:最近的研究表明,几种破坏经典基因组类固醇作用的环境化学物质也会干扰细胞表面引发的非基因组类固醇作用。在体外大西洋黄花鱼中研究了双酚A和and去津对孕激素17,20β,21-三羟基-4-孕-3-酮(20β-S)对卵母细胞成熟(OM)的非基因组作用的影响。 (Micropogonias undulatus)卵母细胞生物测定。在10-25μM(2.2-5.7 ppm)和更高浓度下,用双酚A或阿特拉津处理黄花鱼卵囊化的卵母细胞以浓度依赖的方式阻断了响应20β-S的OM。这些化合物在浓度为10〜(-6)-10〜(-5)M的[〜3H]-20β-S与卵巢孕激素膜受体结合时也是有效的竞争者,后者介导OM对20β-S的反应。结果表明,不同类别的环境化学物质可以通过受体介导的机制破坏非基因组孕激素的作用。

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