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Rev-Erbα(NR1D1)和核共抑制因子1(NCOR1)对Tshb基因表达的昼夜节律调节。

Circadian regulation of Tshb gene expression by Rev-Erbα (NR1D1) and nuclear corepressor 1 (NCOR1).

作者信息

Aninye Irene O, Matsumoto Shunichi, Sidhaye Aniket R, Wondisford Fredric E

机构信息

From the Division of Metabolism, Departments of Pediatrics, Physiology, and Medicine, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21287.

From the Division of Metabolism, Departments of Pediatrics, Physiology, and Medicine, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21287

出版信息

J Biol Chem. 2014 Jun 13;289(24):17070-7. doi: 10.1074/jbc.M114.569723. Epub 2014 May 2.

Abstract

Thyroid hormones (TH) are critical for development, growth, and metabolism. Circulating TH levels are tightly regulated by thyroid-stimulating hormone (TSH) secretion within the hypothalamic-pituitary-thyroid axis. Although circadian TSH secretion has been well documented, the mechanism of this observation remains unclear. Recently, the nuclear corepressor, NCOR1, has been postulated to regulate TSH expression, presumably by interacting with thyroid hormone receptors (THRs) bound to TSH subunit genes. We report herein the first in vitro study of NCOR1 regulation of TSH in a physiologically relevant cell system, the TαT1.1 mouse thyrotroph cell line. Knockdown of NCOR1 by shRNA adenovirus increased baseline Tshb mRNA levels compared with scrambled control, but surprisingly had no affect on the T3-mediated repression of this gene. Using ChIP, we show that NCOR1 enriches on the Tshb promoter at sites different from THR previously identified by our group. Furthermore, NCOR1 enrichment on Tshb is unaffected by T3 treatment. Given that NCOR1 does not target THR on Tshb, we hypothesized that NCOR1 targeted Rev-Erbα (NR1D1), an orphan nuclear receptor that is a potent repressor of gene transcription and regulator of metabolism and circadian rhythms. Using a serum shock technique, we synchronized TαT1.1 cells to study circadian gene expression. Post-synchronization, Tshb and Nr1d1 mRNA levels displayed oscillations that inversely correlated with each other. Furthermore, NR1D1 was enriched at the same locus as NCOR1 on Tshb. Therefore, we propose a model for Tshb regulation whereby NR1D1 and NCOR1 interact to regulate circadian expression of Tshb independent of TH negative regulation.

摘要

甲状腺激素(TH)对发育、生长和新陈代谢至关重要。下丘脑 - 垂体 - 甲状腺轴内促甲状腺激素(TSH)的分泌严格调控着循环中的TH水平。尽管昼夜节律性TSH分泌已有充分记录,但其机制仍不清楚。最近,有人推测核共抑制因子NCOR1通过与结合在TSH亚基基因上的甲状腺激素受体(THR)相互作用来调节TSH表达。我们在此报告了第一项在生理相关细胞系统TαT1.1小鼠促甲状腺细胞系中对NCOR1调节TSH的体外研究。与乱序对照相比,用shRNA腺病毒敲低NCOR1可增加基线Tshb mRNA水平,但令人惊讶的是,对该基因的T3介导的抑制没有影响。使用染色质免疫沉淀(ChIP)技术,我们发现NCOR1在Tshb启动子上的富集位点与我们小组先前鉴定的THR不同。此外,T3处理不影响NCOR1在Tshb上的富集。鉴于NCOR1不在Tshb上靶向THR,我们推测NCOR1靶向Rev-Erbα(NR1D1),这是一种孤儿核受体,是基因转录的有效抑制因子以及代谢和昼夜节律的调节因子。我们使用血清休克技术使TαT1.1细胞同步化以研究昼夜节律基因表达。同步化后,Tshb和Nr1d1 mRNA水平呈现出相互负相关的振荡。此外,NR1D1在Tshb上与NCOR1富集在同一位置。因此,我们提出了一种Tshb调节模型,即NR1D1和NCOR1相互作用以独立于TH负调节来调节Tshb的昼夜节律表达。

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