Fernández-Méndez Celia, Santisteban Pilar
Instituto de Investigaciones Biomédicas "Alberto Sols," Consejo Superior de Investigaciones Científicas and Universidad Autónoma de Madrid (CSIC-UAM), Madrid, Spain.
Centro de Investigación Biomédica en Red de Cáncer (CIBERONC), Instituto de Salud Carlos III (ISCIII), Madrid, Spain.
Thyroid. 2022 Mar;32(3):315-325. doi: 10.1089/thy.2021.0191. Epub 2021 Dec 31.
The Hippo pathway has a fundamental role in tissue homeostasis, but little is known about how this signaling cascade is controlled in the thyroid. PAX8 is an essential driver of thyroid differentiation and is involved in the control of genes crucial for thyroid hormone biosynthesis, including the sodium/iodide symporter (NIS; ). A role for the Hippo mediator transcriptional coactivator with PDZ-binding motif (TAZ) as a coactivator of PAX8 to promote thyroglobulin expression has been previously described. Here, we studied the role of TAZ on thyroid differentiation focusing on PAX8-mediated transcription. Gene silencing and overexpression assays were performed in rat PCCl3 thyroid follicular cells (TFCs) to determine the role of TAZ in the regulation of . Transcriptional activity of the Hippo mediators was investigated by chromatin immunoprecipitation and promoter-reporter gene activity. Hippo component levels and location were analyzed in PCCl3 cells and in mouse thyroid under different treatment conditions. By suppressing the expression of PAX8 and its binding to the upstream enhancer, TAZ inhibits expression, impairing NIS membrane location and activity. Other Hippo effectors such as YAP1 and TEAD1 were not required for the repressor effect of TAZ. We also found an interplay between the Hippo, thyrotropin (TSH), and transforming growth factor β1 (TGFβ) pathways in TFCs. TSH via cyclic adenosine monophosphate activated Hippo signaling pathway and, consequently, TAZ was excluded from the nucleus. We confirmed this in hypothyroid mice, characterized by elevated TSH serum levels, which showed downregulated activation of Hippo signaling in thyroid. Conversely, TAZ nuclear retention was promoted by TGFβ, a potent NIS repressor, and TAZ silencing markedly relieved the TGFβ-induced inhibition of the symporter. We demonstrate that the effects of TAZ are promoter specific, as it functions as a corepressor of PAX8 to modulate expression in TFCs. Overall, our data place TAZ as an integrator of the different signaling pathways that control NIS expression, pointing to a role for TAZ in thyroid differentiation and identifying the Hippo pathway as a relevant target to recover NIS levels in thyroid cancer cells.
Hippo信号通路在组织稳态中起重要作用,但关于该信号级联在甲状腺中如何被调控却知之甚少。PAX8是甲状腺分化的关键驱动因子,参与调控对甲状腺激素生物合成至关重要的基因,包括钠/碘同向转运体(NIS)。此前已有研究表明,Hippo信号通路的介质——含PDZ结合基序的转录共激活因子(TAZ)作为PAX8的共激活因子促进甲状腺球蛋白的表达。在此,我们聚焦于PAX8介导的转录,研究TAZ在甲状腺分化中的作用。在大鼠PCCl3甲状腺滤泡细胞(TFCs)中进行基因沉默和过表达实验,以确定TAZ在调控中的作用。通过染色质免疫沉淀和启动子-报告基因活性研究Hippo信号通路介质的转录活性。在不同处理条件下,分析PCCl3细胞和小鼠甲状腺中Hippo信号通路成分的水平和定位。通过抑制PAX8的表达及其与上游增强子的结合,TAZ抑制表达,损害NIS的膜定位和活性。TAZ的抑制作用不需要其他Hippo效应因子如YAP1和TEAD1。我们还发现TFCs中Hippo信号通路、促甲状腺激素(TSH)和转化生长因子β1(TGFβ)信号通路之间存在相互作用。TSH通过环磷酸腺苷激活Hippo信号通路,从而使TAZ被排除在细胞核外。我们在甲状腺功能减退的小鼠中证实了这一点,这些小鼠血清TSH水平升高,甲状腺中Hippo信号通路的激活下调。相反,TGFβ(一种有效的NIS抑制因子)促进TAZ在细胞核内的保留,而TAZ沉默显著减轻了TGFβ诱导的对同向转运体的抑制作用。我们证明TAZ的作用具有启动子特异性,因为它作为PAX8的共抑制因子调节TFCs中的表达。总体而言,我们的数据表明TAZ是控制NIS表达的不同信号通路的整合因子,表明TAZ在甲状腺分化中的作用,并确定Hippo信号通路是恢复甲状腺癌细胞中NIS水平的相关靶点。