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转导素β样蛋白1、X连锁和核受体共抑制因子协同增强甲状腺激素受体对促甲状腺激素释放激素(TRH)和促甲状腺激素β(TSHβ)基因启动子的非配体依赖性刺激。

Transducin β-like 1, X-linked and nuclear receptor co-repressor cooperatively augment the ligand-independent stimulation of TRH and TSHβ gene promoters by thyroid hormone receptors.

作者信息

Takamizawa Tetsuya, Satoh Tetsurou, Miyamoto Tomoko, Nakajima Yasuyo, Ishizuka Takahiro, Tomaru Takuya, Yoshino Satoshi, Katano-Toki Akiko, Nishikido Ayaka, Sapkota Santosh, Watanabe Takuya, Okamura Takashi, Ishida Emi, Horiguchi Kazuhiko, Matsumoto Syunichi, Ishii Sumiyasu, Ozawa Atsushi, Shibusawa Nobuyuki, Okada Shuichi, Yamada Masanobu

机构信息

Division of Endocrinology and Metabolism, Department of Internal Medicine, Gunma University Graduate School of Medicine, Maebashi, Japan.

出版信息

Endocr J. 2018 Aug 27;65(8):805-813. doi: 10.1507/endocrj.EJ17-0384. Epub 2018 May 23.

Abstract

Mutations in TBL1X, a component of the nuclear receptor co-repressor (N-CoR) and silencing mediator of retinoic acid and thyroid hormone receptor co-repressor complexes, have recently been implicated in isolated central hypothyroidism (CeH). However, the mechanisms by which TBL1X mutations affect negative feedback regulation in the hypothalamus-pituitary-thyroid axis remain unclear. N-CoR was previously reported to paradoxically enhance the ligand-independent stimulation of TRH and TSHβ gene promoters by thyroid hormone receptors (TR) in cell culture systems. We herein investigated whether TBL1X affects the unliganded TR-mediated stimulation of the promoter activities of genes negatively regulated by T3 in cooperation with N-CoR. In a hypothalamic neuronal cell line, the unliganded TR-mediated stimulation of the TRH gene promoter was significantly enhanced by co-transfected TBL1X, and the co-transfection of TBL1X with N-CoR further enhanced promoter activity. In contrast, the knockdown of endogenous Tbl1x using short interfering RNA significantly attenuated the N-CoR-mediated enhancement of promoter activity in the presence of unliganded TR. The co-transfection of N365Y or Y458C, TBL1X mutants identified in CeH patients, showed impaired co-activation with N-CoR for the ligand-independent stimulation of the TRH promoter by TR. In the absence of T3, similar or impaired enhancement of the TSHβ gene promoter by the wild type or TBL1X mutants, respectively, was observed in the presence of co-transfected TR and N-CoR in CV-1 cells. These results suggest that TBL1X is needed for the full activation of TRH and TSHβ gene promoters by unliganded TR. Mutations in TBL1X may cause CeH due to the impaired up-regulation of TRH and/or TSHβ gene transcription despite low T3 levels.

摘要

TBL1X是核受体共抑制因子(N-CoR)以及视黄酸和甲状腺激素受体共抑制复合物的沉默介质的一个组成部分,其突变最近被认为与孤立性中枢性甲状腺功能减退症(CeH)有关。然而,TBL1X突变影响下丘脑-垂体-甲状腺轴负反馈调节的机制仍不清楚。先前有报道称,在细胞培养系统中,N-CoR反常地增强了甲状腺激素受体(TR)对促甲状腺激素释放激素(TRH)和促甲状腺激素β(TSHβ)基因启动子的非配体依赖性刺激。我们在此研究了TBL1X是否与N-CoR协同作用,影响未结合配体的TR介导的对受T3负调控基因启动子活性的刺激。在下丘脑神经元细胞系中,共转染TBL1X可显著增强未结合配体的TR介导的对TRH基因启动子的刺激,而TBL1X与N-CoR共转染可进一步增强启动子活性。相反,使用短干扰RNA敲低内源性Tbl1x可显著减弱在未结合配体的TR存在时N-CoR介导的启动子活性增强。在CeH患者中鉴定出的TBL1X突变体N365Y或Y458C的共转染显示,对于TR对TRH启动子的非配体依赖性刺激,与N-CoR的共激活受损。在缺乏T3的情况下,在CV-1细胞中共转染TR和N-CoR时,分别观察到野生型或TBL1X突变体对TSHβ基因启动子的类似增强或受损增强。这些结果表明,未结合配体的TR充分激活TRH和TSHβ基因启动子需要TBL1X。尽管T3水平较低,但TBL1X突变可能由于TRH和/或TSHβ基因转录上调受损而导致CeH。

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