Suppr超能文献

促甲状腺激素在垂体结节部特异性细胞中的表达不依赖于三碘甲状腺原氨酸、促甲状腺激素释放激素和垂体特异性转录因子1。

Thyrotropin expression in hypophyseal pars tuberalis-specific cells is 3,5,3'-triiodothyronine, thyrotropin-releasing hormone, and pit-1 independent.

作者信息

Bockmann J, Böckers T M, Winter C, Wittkowski W, Winterhoff H, Deufel T, Kreutz M R

机构信息

Institute of Anatomy, University of Münster, Germany.

出版信息

Endocrinology. 1997 Mar;138(3):1019-28. doi: 10.1210/endo.138.3.5007.

Abstract

The expression of TSH subunit genes (TSH alpha and -beta) in pituitary thyrotropes is primarily regulated via circulating thyroid hormone levels (T3) and the hypothalamic TRH. Hypophyseal pars tuberalis (PT)-specific cells also express both hormonal subunits of TSH, but do not resemble thyrotropes of the pars distalis (PD) with respect to their distinct morphology, secretion, and direct modulation of TSH expression by photoperiodic inputs and melatonin. To investigate whether this distinct regulation of TSH is related to a different molecular structure or different signaling cascades, we analyzed PT-specific TSH and its transcriptional regulation in ovine PT-specific cells. After construction of PT- and PD-specific complementary DNA (cDNA) libraries, the cloning and sequencing of several TSH alpha and -beta subunit clones revealed identical sizes and sequences for the translated and untranslated regions in both hypophyseal compartments. Transcription start site analysis also displayed three identical start sites for the transcription of TSH beta in PT and PD. After cloning of the ovine TRH receptor cDNA and a partial T3 receptor cDNA, in situ hybridization. Northern blot analysis, and PCR experiments showed that TRH and T3 receptors are not expressed in specific cells of the PT. The transcription factor Pit-1 that is involved in TSH expression of thyrotropes could only be detected in the PD. In additional experiments rats were treated with T4 or TRH, and subsequent in situ hybridization studies showed that TSH beta messenger RNA (mRNA) formation was not altered in the PT. In the PD, however, TSH beta mRNA was significantly reduced in the T4-treated group, but was enhanced in the TRH-treated group. We conclude that PT-specific cells of the pituitary are characterized by the transcription of TSH subunits that are identical to TSH expressed in thyrotropes of the PD. The absence of TRH, T3 receptor mRNA, and Pit-1, respectively, as well as the different reactions compared to PD thyrotropes in in vivo experiments lead to the conclusion that the expression of TSH in PT-specific cells of the pituitary is not regulated via the classical thyrotrope receptors and their intracellular pathways, but through a novel, photoperiod-dependent mechanism.

摘要

垂体促甲状腺细胞中促甲状腺激素亚基基因(TSHα和β)的表达主要受循环甲状腺激素水平(T3)和下丘脑促甲状腺激素释放激素(TRH)的调节。垂体结节部(PT)特异性细胞也表达TSH的两种激素亚基,但在形态、分泌以及光周期输入和褪黑素对TSH表达的直接调节方面,与远侧部(PD)的促甲状腺细胞不同。为了研究TSH这种独特的调节是否与不同的分子结构或不同的信号级联反应有关,我们分析了绵羊PT特异性细胞中PT特异性TSH及其转录调控。构建PT和PD特异性互补DNA(cDNA)文库后,对几个TSHα和β亚基克隆进行克隆和测序,结果显示两个垂体区室中翻译区和非翻译区的大小和序列相同。转录起始位点分析也显示PT和PD中TSHβ转录有三个相同的起始位点。克隆绵羊TRH受体cDNA和部分T3受体cDNA后,原位杂交、Northern印迹分析和PCR实验表明,TRH和T3受体在PT的特异性细胞中不表达。参与促甲状腺细胞TSH表达的转录因子Pit-1仅在PD中检测到。在额外的实验中,用T4或TRH处理大鼠,随后的原位杂交研究表明,PT中TSHβ信使核糖核酸(mRNA)的形成没有改变。然而,在PD中,T4处理组的TSHβ mRNA显著降低,而TRH处理组则升高。我们得出结论,垂体PT特异性细胞的特征是TSH亚基的转录与PD促甲状腺细胞中表达的TSH相同。TRH、T3受体mRNA和Pit-1的缺失,以及体内实验中与PD促甲状腺细胞相比的不同反应,导致这样的结论:垂体PT特异性细胞中TSH的表达不是通过经典的促甲状腺细胞受体及其细胞内途径调节的,而是通过一种新的、光周期依赖性机制调节的。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验