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首页> 外文期刊>The journal of clinical investigation >Coordination of hypothalamic and pituitary T3 production regulates TSH expression
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Coordination of hypothalamic and pituitary T3 production regulates TSH expression

机译:下丘脑和垂体T3产生的协调调节TSH表达。

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Type II deiodinase (D2) activates thyroid hormone by converting thyroxine (T4) to 3,5,3′-triiodothyronine (T3). This allows plasma T4 to signal a negative feedback loop that inhibits production of thyrotropin-releasing hormone (TRH) in the mediobasal hypothalamus (MBH) and thyroid-stimulating hormone (TSH) in the pituitary. To determine the relative contributions of these D2 pathways in the feedback loop, we developed 2 mouse strains with pituitary- and astrocyte-specific D2 knockdown (pit- D2 KO and astro- D2 KO mice, respectively). The pit- D2 KO mice had normal serum T3 and were systemically euthyroid, but exhibited an approximately 3-fold elevation in serum TSH levels and a 40% reduction in biological activity. This was the result of elevated serum T4 that increased D2-mediated T3 production in the MBH, thus decreasing Trh mRNA. That tanycytes, not astrocytes, are the cells within the MBH that mediate T4-to-T3 conversion was defined by studies using the astro- D2 KO mice. Despite near-complete loss of brain D2, tanycyte D2 was preserved in astro- D2 KO mice at levels that were sufficient to maintain both the T4-dependent negative feedback loop and thyroid economy. Taken together, these data demonstrated that the hypothalamic-thyroid axis is wired to maintain normal plasma T3 levels, which is achieved through coordination of T4-to-T3 conversion between thyrotrophs and tanycytes.
机译:II型脱碘酶(D2)通过将甲状腺素(T4)转化为3,5,3'-三碘甲腺氨酸(T3)激活甲状腺激素。这使血浆T4发出负反馈回路,从而抑制中下丘脑下丘脑(MBH)中促甲状腺激素释放激素(TRH)和垂体中促甲状腺激素(TSH)的产生。为了确定这些D2途径在反馈回路中的相对贡献,我们开发了2种具有垂体特异性和星形胶质细胞特异性D2抑制的小鼠品系(分别是Pit-D2 KO和astro-D2 KO小鼠)。 Pit-D2 KO小鼠的血清T3正常,全身甲状腺功能正常,但血清TSH水平升高了约3倍,生物学活性降低了40%。这是血清T4升高导致MBH中D2介导的T3产生增加,从而降低Trh mRNA的结果。使用astro-D2 KO小鼠的研究确定了单核细胞而不是星形胶质细胞是MBH中介导T4到T3转化的细胞。尽管脑D2几乎完全丧失,但在astro-D2 KO小鼠中,单核细胞D2的含量足以维持T4依赖性负反馈回路和甲状腺经济。综上所述,这些数据表明,下丘脑-甲状腺轴被连接以维持正常的血浆T3水平,这是通过在甲状腺营养细胞和单核细胞之间进行T4-T3转化的协调来实现的。

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