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Molecular characterization and developmental expression patterns of thyroid hormone receptors (TRs) and their responsiveness to TR agonist and antagonist in Rana nigromaculata

机译:黑蛙(Rana nigromaculata)甲状腺激素受体(TRs)的分子表征和发育表达模式及其对TR激动剂和拮抗剂的响应

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摘要

Considering some advantages of Rana nigromaculata as an experimental species, we propose that this species, like Xenopus laevis, could be used to assay thyroid hormone (TH) signaling disrupting actions. To validate the utilizability of R. nigromaculata, we investigated the responsiveness of R. nigromaculata to a TH receptor (TR) agonist (T3) and antagonist (amiodarone) by analyzing expression, based on characterizing TR cDNA and developmental expression patterns. With high levels of identity with the corresponding genes in X. laevis, both TRα and TRβ in R. nigromaculata exhibited roughly similar developmental expression patterns to those of X. laevis, in spite of some species-specific differences. Both TRα and TRβ expression had greater changes in the liver and intestine than in the tail and brain during metamorphosis. T3 exposure for 2 days induced more dramatic increases of TRβ expression in stage 27 than in stage 34 tadpoles but not in stage 42 tadpoles, showing that the responsiveness of R. nigromaculata to TH decreased with development and disappeared at the onset of metamorphic climax. Corresponding to greater changes of TRβ expression in the liver and intestine than in the tail and brain during metamorphosis, the liver and intestine had higher responsiveness to exogenous T3 than the tail and brain. Amiodarone inhibited T3-induced TRβ expression. Our results show that R. nigromaculata can be used as a model species for assaying TH signaling disrupting actions by analyzing TRβ expression, and intestine tissues at stage 27 are ideal test materials due to high responsiveness and easy accessibility.
机译:考虑到黑蛙(Rana nigromaculata)作为实验物种的某些优势,我们建议像Xenopus laevis这样的物种可用于测定甲状腺激素(TH)信号传导干扰作用。为了验证黑麦草的可利用性,我们在表征TR cDNA和发育表达模式的基础上,通过分析表达,研究了黑麦草对TH受体(TR)激动剂(T3)和拮抗剂(胺碘酮)的响应性。尽管与X. laevis中的相应基因具有高度同一性,但尽管存在某些物种特异性差异,但黑纹R. nigromaculata中的TRα和TRβ均表现出与X. laevis大致相似的发育表达模式。在变态过程中,TRα和TRβ在肝脏和肠道中的表达均比在尾巴和大脑中的表达大。暴露2天的T3诱导,第27阶段的TRβ表达比第34阶段的more更具戏剧性的增加,但在第42阶段的not中没有,表明黑麦草对TH的反应性随发育而降低,并在变态高潮开始时消失。与变态过程中肝脏和肠道中TRβ表达的变化相比,尾巴和大脑中TRβ表达的变化更大,肝脏和肠道对外源T3的反应性高于尾巴和大脑。胺碘酮抑制T3诱导的TRβ表达。我们的研究结果表明,黑麦草可作为模型物种,通过分析TRβ的表达来测定TH信号的破坏作用,并且由于高响应性和易于接近性,第27阶段的肠道组织是理想的测试材料。

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