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首页> 外文期刊>Aquatic Toxicology >Effects of low concentrations of the antiprogestin mifepristone (RU486) in adults and embryos of zebrafish (Danio rerio): 2. Gene expression analysis and in vitro activity.
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Effects of low concentrations of the antiprogestin mifepristone (RU486) in adults and embryos of zebrafish (Danio rerio): 2. Gene expression analysis and in vitro activity.

机译:低浓度抗孕激素米非司酮(RU486)在成年和斑马鱼(Danio rerio)胚胎中的作用:2.基因表达分析和体外活性。

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Here, we analyzed the transcriptional effects of the antiprogestin mifepristone (MIF, RU486) and progesterone (P4) in zebrafish as well as their in vitro activities in yeast-based reporter gene assays. This study is associated with the reproduction study in adult zebrafish and embryos exposed for 21 days to 5, 39, 77 ng/L MIF, and 25 ng/L P4 (Bluthgen et al., 2013a). The in vitro activities of MIF and P4 were investigated using a series of recombinant yeast-based assays (YES, YAS, YPS) and compared to transcriptional alterations obtained in fish tissues and embryos from the exposure study. MIF elicited antiestrogenic, androgenic and progestogenic activities in recombinant yeast, similar to P4, and no antiprogestogenic activity in vitro. The transcriptional alterations of steroid hormone receptors were similar in adult males and females, and more pronounced in embryos. MIF tended to transcriptionally down-regulate the androgen (ar), progesterone (pgr) and glucocorticoid (gr) receptors in adult fish and embryos. Transcripts of the estrogen receptor (esr1) and vitellogenin (vtg1) were not significantly altered. A trend for down-regulation was observed for transcripts of genes belonging to steroidogenic enzymes including 17 beta -hydroxysteroid dehydrogenase type 3 (hsd17b3), 3 beta -hydroxysteroid dehydrogenase (hsd3b), P450 aromatase A (cyp19a) and 11 beta -hydroxylase (cyp11b). P4 resulted in similar transcriptional alterations as MIF. The data indicate that gene expression changes (here and later gene expression is taken as synonym to gene transcription) and in vitro activities match only in part including the lack of antiprogestogenic activity of MIF. Additionally, effects on reproduction and gonad histology described in the associated report (Bluthgen et al., 2013a) can only partly be explained by gene expression data presented here.
机译:在这里,我们分析了抗孕激素米非司酮(MIF,RU486)和孕酮(P4)在斑马鱼中的转录作用,以及它们在基于酵母的报告基因检测中的体外活性。该研究与成年斑马鱼和暴露于5、39、77 ng / L MIF和25 ng / L P4的胚胎共21天的繁殖研究有关(Bluthgen et al。,2013a)。使用一系列基于重组酵母的分析方法(YES,YAS,YPS)研究了MIF和P4的体外活性,并将其与从暴露研究中在鱼类组织和胚胎中获得的转录改变进行了比较。 MIF在重组酵母中引起抗雌激素,雄激素和孕激素的活性,类似于P4,在体外没有抗孕激素的活性。成年雄性和雌性中类固醇激素受体的转录变化相似,在胚胎中更为明显。 MIF倾向于转录下调成年鱼和胚胎中的雄激素(ar),孕酮(pgr)和糖皮质激素(gr)受体。雌激素受体(esr1)和卵黄蛋白原(vtg1)的转录本没有明显改变。观察到属于类固醇生成酶的基因的转录本有下调的趋势,这些基因包括17型β-羟类固醇脱氢酶3(hsd17b3),3种β-羟基类固醇脱氢酶(hsd3b),P450芳香化酶A(cyp19a)和11种β-羟化酶(cyp11b) )。 P4导致与MIF相似的转录改变。数据表明基因表达发生变化(此处和以后的基因表达均被视为基因转录的同义词),并且体外活性仅部分匹配,包括缺少MIF的抗孕激素活性。此外,相关报告(Bluthgen等,2013a)中描述的对生殖和性腺组织学的影响只能部分通过此处提供的基因表达数据来解释。

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