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Direct Activation of Xenopus Iodotyrosine Deiodinase by Thyroid Hormone Receptor in the Remodeling Intestine during Amphibian Metamorphosis

机译:两栖类变态期间重塑肠道中的甲状腺激素受体直接激活非洲爪蟾碘酪氨酸去碘酶。

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摘要

Thyroid hormone (TH) plays critical roles during vertebrate postembryonic development. TH production in the thyroid involves incorporating inorganic iodide into thyroglobulin. The expression of iodotyrosine deiodinase (IYD; also known as iodotyrosine dehalogenase 1) in the thyroid gland ensures efficient recycling of iodine from the byproducts of TH biosynthesis: 3′-monoiodotyrosine and 3′, 5′-diiodotyrosine. Interestingly, IYD is known to be expressed in other organs in adult mammals, suggesting iodine recycling outside the thyroid. On the other hand, the developmental role of iodine recycling has yet to be investigated. Here, using intestinal metamorphosis as a model, we discovered that the Xenopus tropicalis IYD gene is strongly up-regulated by TH during metamorphosis in the intestine but not the tail. We further demonstrated that this induction was one of the earliest events during intestinal metamorphosis, with IYD being activated directly through the binding of liganded TH receptors to a TH response element in the IYD promoter region. Because iodide is mainly taken up from the diet in the intestine and the tadpole stops feeding during metamorphosis when the intestine is being remodeled, our findings suggest that IYD transcription is activated by liganded TH receptors early during intestinal remodeling to ensure efficient iodine recycling at the climax of metamorphosis when highest levels of TH are needed for the proper transformations of different organs.
机译:甲状腺激素(TH)在脊椎动物胚胎后发育过程中起关键作用。甲状腺的TH产生涉及将无机碘化物掺入甲状腺球蛋白中。碘酪氨酸脱碘酶(IYD;也称为碘酪氨酸脱卤酶1)在甲状腺中的表达确保了TH生物合成副产物3'-单碘酪氨酸和3',5'-二碘酪氨酸的碘有效回收。有趣的是,已知IYD在成年哺乳动物的其他器官中表达,表明碘在甲状腺外循环。另一方面,碘回收的发展作用尚待研究。在这里,我们以肠道变态为模型,发现热带爪蟾IYD基因在肠道变态过程中被TH强烈上调,但尾巴却没有。我们进一步证明,这种诱导是肠变态过程中最早的事件之一,其中IYD通过配体TH受体与IYD启动子区域中TH反应元件的结合直接激活。由于碘主要从肠道饮食中摄取,并且在重塑肠时变态期间the停止进食,因此我们的研究结果表明,在肠重塑过程中,配体TH受体会激活IYD转录,以确保高潮时碘的有效回收。当需要最高水平的TH才能正确转化不同器官时,会发生变态。

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