首页> 外文OA文献 >Expression of sodium-iodide symporter mRNA in the thyroid gland of Xenopus laevis tadpoles: developmental expression, effects of antithyroidal compounds, and regulation by TSH.
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Expression of sodium-iodide symporter mRNA in the thyroid gland of Xenopus laevis tadpoles: developmental expression, effects of antithyroidal compounds, and regulation by TSH.

机译:爪蟾ad甲状腺中碘化钠同向转运体mRNA的表达:发育表达,抗甲状腺化合物的作用以及TSH的调控。

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摘要

The uptake of iodide represents the first step in thyroid hormone synthesis by thyroid follicular cells and is mediated by the sodium-iodide symporter (NIS). In mammals, expression of NIS is stimulated by TSH and transcription of the NIS gene involves regulation by the thyroid-specific transcription factors Pax8 and Nkx2.1. In this study, we examined the mRNA expression of NIS, Pax8 and Nkx2.1 in the thyroid gland of Xenopus laevis tadpoles by semi-quantitative reverse transcriptase (RT)-PCR. During spontaneous metamorphosis, NIS mRNA expression was low in premetamorphic tadpoles, increased throughout prometamorphosis, and peaked at climax stage 60. Analysis of TSH beta-subunit (TSHbeta) mRNA in the pituitary of the same tadpoles revealed a close temporal relationship in the expression of the two genes during metamorphosis, suggesting a regulatory role of TSH in the developmental expression of NIS. Treatment of tadpoles with goitrogenic compounds (sodium perchlorate and ethylenethiourea) increased TSHbeta mRNA expression (approximately twofold) and caused thyroid gland hyperplasia, confirming that feedback along the pituitary-thyroid axis was operative. Analysis of gene expression in the thyroid gland revealed that goitrogen treatment was correlated with increased expression of NIS mRNA (approximately 20-fold). In the thyroid gland organ culture experiments, bovine TSH (bTSH; 1 mU/ml) strongly induced NIS mRNA expression. This effect was mimicked by co-culture of thyroid glands with pituitaries from stage 58 tadpoles and by agents that increase intracellular cAMP (forskolin, dibutyryl-cAMP). In addition, it could be shown that thyroid glands of X. laevis tadpoles express Pax8 and Nkx2.1 mRNA in a developmentally regulated manner and that ex vivo treatment of thyroid glands with bTSH, forskolin, and cAMP analogs increased the expression of Pax8 and Nkx2.1 mRNA. This is the first report on developmental profiles and hormonal regulation of thyroid gland gene expression in amphibian tadpoles and, together, results reveal a critical role of TSH in the regulation of NIS mRNA expression in the thyroid gland of X. laevis tadpoles.
机译:碘的摄取代表甲状腺滤泡细胞合成甲状腺激素的第一步,并由碘碘钠转运蛋白(NIS)介导。在哺乳动物中,TSH刺激NIS的表达,NIS基因的转录涉及甲状腺特异性转录因子Pax8和Nkx2.1的调控。在这项研究中,我们通过半定量逆转录酶(RT)-PCR检查了非洲爪蟾t甲状腺中NIS,Pax8和Nkx2.1的mRNA表达。在自发性变态过程中,前变态in中的NIS mRNA表达低,整个前变态过程中NIS mRNA表达增加,并在高潮阶段60达到峰值。对同一t垂体中TSHβ-亚基(TSHbeta)mRNA的分析表明,of的垂体表达与时间密切相关。这两个基因在变态过程中,提示TSH在NIS的发育表达中起调节作用。用促甲状腺激素化合物(高氯酸钠和亚乙基硫脲)处理t会增加TSHbeta mRNA表达(大约两倍)并引起甲状腺增生,证实沿垂体-甲状腺轴的反馈是有效的。对甲状腺中基因表达的分析表明,甲状腺激素治疗与NIS mRNA表达增加(约20倍)相关。在甲状腺器官培养实验中,牛TSH(bTSH; 1 mU / ml)强烈诱导NIS mRNA表达。通过共培养来自58期t的垂体和甲状腺以及增加细胞内cAMP的药物(毛喉素,二丁酰cAMP)来模仿这种效果。此外,可以证明X. laevis t的甲状腺以发育受调控的方式表达Pax8和Nkx2.1 mRNA,并且用bTSH,forskolin和cAMP类似物离体治疗甲状腺可增加Pax8和Nkx2的表达。 .1 mRNA。这是关于两栖动物t中甲状腺基因表达的发育概况和激素调节的第一份报告,并且结果一起揭示了TSH在X.laevis ad甲状腺中NIS mRNA表达调节中的关键作用。

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