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甲状腺激素激活增加伴随发育中的鸡下丘脑甲状腺激素依赖性负反馈的形成。

Increased Thyroid Hormone Activation Accompanies the Formation of Thyroid Hormone-Dependent Negative Feedback in Developing Chicken Hypothalamus.

作者信息

Mohácsik P, Füzesi T, Doleschall M, Szilvásy-Szabó A, Vancamp P, Hadadi É, Darras V M, Fekete C, Gereben B

机构信息

Department of Endocrine Neurobiology (P.M., T.F., M.D., A.S.S., É.H., C.F., B.G.), Institute of Experimental Medicine, Hungarian Academy of Sciences, H-1083 Budapest, Hungary; János Szentágothai PhD School of Neurosciences (P.M., A.S.S.), Semmelweis University, H-1085 Budapest, Hungary; Laboratory of Comparative Endocrinology (P.V., V.M.D.), Department of Biology, Division of Animal Physiology and Neurobiology, KU Leuven, B-3001 Leuven, Belgium; and Department of Medicine (C.F.), Division of Endocrinology, Diabetes, and Metabolism, Tupper Research Institute, Tufts Medical Center, Boston, Massachusetts 02111.

出版信息

Endocrinology. 2016 Mar;157(3):1211-21. doi: 10.1210/en.2015-1496. Epub 2016 Jan 18.

Abstract

The hypothalamic-pituitary-thyroid axis is governed by hypophysiotropic TRH-synthesizing neurons located in the hypothalamic paraventricular nucleus under control of the negative feedback of thyroid hormones. The mechanisms underlying the ontogeny of this phenomenon are poorly understood. We aimed to determine the onset of thyroid hormone-mediated hypothalamic-negative feedback and studied how local hypothalamic metabolism of thyroid hormones could contribute to this process in developing chicken. In situ hybridization revealed that whereas exogenous T4 did not induce a statistically significant inhibition of TRH expression in the paraventricular nucleus at embryonic day (E)19, T4 treatment was effective at 2 days after hatching (P2). In contrast, TRH expression responded to T3 treatment in both age groups. TSHβ mRNA expression in the pituitary responded to T4 in a similar age-dependent manner. Type 2 deiodinase (D2) was expressed from E13 in tanycytes of the mediobasal hypothalamus, and its activity increased between E15 and P2 both in the mediobasal hypothalamus and in tanycyte-lacking hypothalamic regions. Nkx2.1 was coexpressed with D2 in E13 and P2 tanycytes and transcription of the cdio2 gene responded to Nkx2.1 in U87 glioma cells, indicating its potential role in the developmental regulation of D2 activity. The T3-degrading D3 enzyme was also detected in tanycytes, but its level was not markedly changed before and after the period of negative feedback acquisition. These findings suggest that increasing the D2-mediated T3 generation during E18-P2 could provide the sufficient local T3 concentration required for the onset of T3-dependent negative feedback in the developing chicken hypothalamus.

摘要

下丘脑 - 垂体 - 甲状腺轴由位于下丘脑室旁核的促垂体甲状腺释放激素(TRH)合成神经元所调控,该调控受甲状腺激素负反馈的控制。目前对这一现象个体发生的潜在机制了解甚少。我们旨在确定甲状腺激素介导的下丘脑负反馈的起始时间,并研究甲状腺激素在下丘脑局部的代谢如何在发育中的鸡体内促成这一过程。原位杂交显示,外源性甲状腺素(T4)在胚胎第19天(E19)时并未对室旁核中TRH的表达产生统计学上显著的抑制作用,但在孵化后2天(P2)时T4处理则有效。相比之下,两个年龄组的TRH表达对三碘甲状腺原氨酸(T3)处理均有反应。垂体中促甲状腺激素β(TSHβ)mRNA的表达对T4的反应也呈现出类似的年龄依赖性方式。2型脱碘酶(D2)从E13开始在中基底下丘脑的伸长细胞中表达,其活性在E15至P2期间在中基底下丘脑和缺乏伸长细胞的下丘脑区域均有所增加。Nkx2.1在E13和P2的伸长细胞中与D2共表达,并且在U87胶质瘤细胞中cdio2基因的转录对Nkx2.1有反应,表明其在D2活性的发育调控中具有潜在作用。在伸长细胞中也检测到了降解T3的D3酶,但其水平在负反馈获得期前后没有明显变化。这些发现表明,在E18 - P2期间增加D2介导的T3生成可以为发育中的鸡下丘脑启动T3依赖性负反馈提供所需的足够局部T3浓度。

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