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首页> 外文期刊>Toxicological sciences: An official journal of the Society of Toxicology >Control of Transcriptional Repression of the Vitellogenin Receptor Gene in Largemouth Bass (Micropterus Salmoides) by Select Estrogen Receptors Isotypes
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Control of Transcriptional Repression of the Vitellogenin Receptor Gene in Largemouth Bass (Micropterus Salmoides) by Select Estrogen Receptors Isotypes

机译:选择雌激素受体同种型对大口黑鲈(Micropterus salmoides)中卵黄蛋白原受体基因转录抑制的控制。

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The vitellogenin receptor (Vtgr) plays an important role in fish reproduction. This receptor functions to incorporate vitellogenin (Vtg), a macromolecule synthesized and released from the liver in the bloodstream, into oocytes where it is processed into yolk. Although studies have focused on the functional role of Vtgr in fish, the mechanistic control of this gene is still unexplored. Here we report the identification and analysis of the first piscine 5' regulatory region of the vtgrgene which was cloned from largemouth bass (Micropterus salmoides). Using this putative promoter sequence, we investigated a role for hormones, including insulin and 17β-estradiol (E2), in transcriptional regulation through cell-based reporter assays. No effect of insulin was observed, however, E2 was able to repress transcriptional activity of the vtgr promoter through select estrogen receptor subtypes, Esr1 and Esr2a but not Esr2b. Electrophoretic mobility shift assay demonstrated that Esr1 likely interacts with the vtgr promoter region through half ERE and/or SP1 sites, in part. Finally we also show that ethinylestradiol (EE2), but not bisphenol-A (BPA), represses promoter activity similarly to E2. These results reveal for the first time that the Esr1 isoform may play an inhibitory role in the expression of LMB vtgr mRNA under the influence of E2, and potent estrogens such as EE2. In addition, this new evidence suggests that vtgr may be a target of select endocrine disrupting compounds through environmental exposures.
机译:卵黄蛋白原受体(Vtgr)在鱼类繁殖中起重要作用。该受体的功能是将卵黄蛋白原(Vtg)(一种从血管中从肝脏中合成并释放出来的大分子)整合到卵母细胞中,然后被加工成卵黄。尽管研究集中于Vtgr在鱼类中的功能,但该基因的机械控制仍未探索。在这里,我们报告的鉴定和分析的vtgrgene的第一个鱼5'调节区域是从大嘴鲈(Micropterus salmoides)克隆的。使用这种推定的启动子序列,我们通过基于细胞的报告基因检测研究了激素(包括胰岛素和17β-雌二醇(E2))在转录调控中的作用。没有观察到胰岛素的作用,但是,E2能够通过选择的雌激素受体亚型Esr1和Esr2a抑制Esr2b抑制vtgr启动子的转录活性。电泳迁移率变动分析表明,Esr1可能部分通过一半ERE和/或SP1位点与vtgr启动子区域相互作用。最后,我们还表明,炔雌醇(EE2)而不是双酚A(BPA)抑制启动子活性类似于E2。这些结果首次揭示,Esr1亚型可能在E2和强效雌激素(例如EE2)的影响下对LMB vtgr mRNA的表达起抑制作用。此外,这一新证据表明vtgr可能是通过环境暴露而选择性破坏内分泌的化合物的靶标。

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