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促甲状腺激素释放激素基因:在下丘脑以及两个意外的下丘脑外位点——心脏和睾丸中的差异调节、表达及功能。

The thyrotropin-releasing hormone gene: differential regulation, expression, and function in hypothalamus and two unexpected extrahypothalamic loci, the heart and testis.

作者信息

Wilber J F, Feng P, Li Q L, Shi Z X

机构信息

University of Maryland School of Medicine, Department of Medicine, Baltimore, MD 21201-1595, USA.

出版信息

Trends Endocrinol Metab. 1996 Apr;7(3):93-100. doi: 10.1016/1043-2760(96)00022-7.

Abstract

Thyrotropin-releasing hormone (TRH) is the key regulator of the synthesis and secretion of TSH in animals and humans (Wilber and Yamada 1990). The biological implications of this peptide, the first releasing hormone to be characterized, has generated a large literature regarding both pituitary TSH and extrapituitary roles of TRH as a neurotransmitter and/or neuro-modulator in the central nervous system (O'Leary and O'Connor 1995, Morley 1981). In this review, new areas of TRH biology are explored, focused on the differential regulation of the TRH gene by triiodothyronine (T(3)) and other substances in the hypothalamus and two unexpected extrahypothalamic loci, the heart and testis. These new directions should enlarge our understanding concerning how hormones like T(3) regulate genes negatively and selectively with the identical receptors and DNA elements required for positive gene stimulation. In addition, regulatory studies of the TRH gene by T(3) should be relevant to other hormone receptor interactions with DNA sequences in general, as glucocorticoids, mineralocorticoids, sex steroids, vitamin D, and retinoic acid are ligands for homologous receptor proteins in the nuclear receptor superfamily.

摘要

促甲状腺激素释放激素(TRH)是动物和人类中促甲状腺激素(TSH)合成与分泌的关键调节因子(威尔伯和山田,1990年)。这种肽作为第一种被鉴定的释放激素,其生物学意义引发了大量关于垂体TSH以及TRH在中枢神经系统中作为神经递质和/或神经调节剂的垂体外作用的文献(奥利里和奥康纳,1995年;莫利,1981年)。在本综述中,我们探讨了TRH生物学的新领域,重点关注下丘脑以及两个意外的下丘脑外位点(心脏和睾丸)中三碘甲状腺原氨酸(T3)和其他物质对TRH基因的差异调节。这些新方向应能拓宽我们对于像T3这样的激素如何利用与正向基因刺激所需相同的受体和DNA元件进行负向和选择性基因调节的理解。此外,T3对TRH基因的调节研究总体上应与其他激素受体与DNA序列的相互作用相关,因为糖皮质激素、盐皮质激素、性类固醇、维生素D和视黄酸都是核受体超家族中同源受体蛋白的配体。

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