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PCCl3 甲状腺细胞中甲状腺转录因子-1 的功能失活。

Functional inactivation of thyroid transcription factor-1 in PCCl3 thyroid cells.

机构信息

Institut de Recherche Interdisciplinaire en Biologie Humaine et Moléculaire, Université Libre de Bruxelles, IBMM, Biopark Charleroi Brussels South, B-6041 Gosselies, Belgium.

出版信息

Mol Cell Endocrinol. 2012 Jul 6;358(1):36-45. doi: 10.1016/j.mce.2012.02.013. Epub 2012 Feb 19.

Abstract

Thyroid transcription factor-1 (TTF-1) is a key regulator of thyroid development and function. In order to identify the genes whose expression depends on TTF-1 transcriptional activity within the thyrocyte we analyzed the consequence of the functional inactivation of this factor in PCCl3 cells. The expression of a fusion protein composed of the DNA binding domain of TTF-1 and of the strong repressive domain of the engrailed protein resulted in a dramatic loss of epithelial cell morphology and in proliferation arrest. These changes were reversed when the inhibition of endogenous TTF-1 was relieved. No change was observed when a similar fusion protein containing point mutations abolishing DNA binding activity was produced in the cells. Besides the expected down-regulation of expression of the main genes linked to the differentiated thyroid function, we observed a decreased expression of the transcription factors Hhex, Pax 8 and TTF-2 and of E-cadherin. By contrast, both ThOX-1 and DUOXA-1 genes were up-regulated, as well as the ones encoding vimentin and several proteins involved in cell cycle arrest. Our data thus extend the known roles of TTF-1 in thyroid development and in the expression of differentiated function in the adult organ to the control of epithelial morphology and of cell division in mature thyrocytes.

摘要

甲状腺转录因子-1(TTF-1)是甲状腺发育和功能的关键调节因子。为了确定在甲状腺细胞中依赖于 TTF-1 转录活性表达的基因,我们分析了该因子在 PCCl3 细胞中功能失活的结果。由 TTF-1 的 DNA 结合域和 engrailed 蛋白的强抑制域组成的融合蛋白的表达导致上皮细胞形态的显著丧失和增殖停滞。当抑制内源性 TTF-1 被解除时,这些变化得到逆转。当在细胞中产生具有使 DNA 结合活性丧失的点突变的类似融合蛋白时,未观察到变化。除了预期的与分化的甲状腺功能相关的主要基因的下调表达外,我们还观察到转录因子 Hhex、Pax 8 和 TTF-2 以及 E-钙粘蛋白的表达降低。相比之下,ThOX-1 和 DUOXA-1 基因均上调,编码波形蛋白和几种参与细胞周期阻滞的蛋白质的基因也上调。因此,我们的数据将 TTF-1 在甲状腺发育和成年器官中分化功能表达中的已知作用扩展到成熟甲状腺细胞中上皮形态和细胞分裂的控制。

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