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An autoregulatory loop controlling orphan nuclear receptor DAX-1 gene expression by orphan nuclear receptor ERRγ

机译:孤核受体ERRγ调控孤核受体DAX-1基因表达的自调控环

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摘要

The estrogen receptor-related receptor gamma (ERRγ/ERR3/NR3B3) is a member of the nuclear receptor superfamily that activates transcription in the absence of ligand. However, the detailed mechanism of gene regulation by ERRγ is not fully understood. In this study we have found that the orphan nuclear receptor ERRγ activates the DAX-1 promoter, which, in turn, represses transactivation by ERRγ. Serial deletions of mouse DAX-1 (mDAX-1) gene promoter have revealed that the region responding to ERRγ is located between −129 and −121 bp and −334 and −326 bp. Gel shift assays and chromatin immunoprecipitation (ChIP) assays demonstrated that ERRγ binds directly to the mDAX-1 promoter. Site-directed mutagenesis results demonstrated that ERRE1 (−129 to −121 bp) is more important than ERRE2 (−334 to −326 bp) which is not conserved in the human DAX-1 promoter. In addition, adenovirus-mediated overexpression of ERRγ induced DAX-1 gene expression in MCF-7 breast cancer cells that co-expressed ERRγ and DAX-1. Moreover, yeast two-hybrid and glutathione S-transferase (GST)-pull down assays demonstrated that DAX-1 physically interacted with ERRγ and inhibited ERRγ transactivation, and that this interaction was dependent on the AF-2 domain of ERRγ. In addition, in vitro competition assays showed that DAX-1 inhibited PGC-1α mediated ERRγ transactivation, via competition between these two factors for the AF-2 binding domain. We thus propose a novel autoregulatory loop that controls DAX-1 gene expression by ERRγ.
机译:雌激素受体相关受体γ(ERRγ/ ERR3 / NR3B3)是核受体超家族的成员,该家族在不存在配体的情况下激活转录。但是,尚未完全了解通过ERRγ进行基因调控的详细机制。在这项研究中,我们发现孤儿核受体ERRγ激活DAX-1启动子,进而抑制ERRγ的反式激活。小鼠DAX-1(mDAX-1)基因启动子的系列删除显示,响应ERRγ的区域位于-129和-121 bp之间以及-334和-326 bp之间。凝胶位移分析和染色质免疫沉淀(ChIP)分析证明ERRγ直接与mDAX-1启动子结合。定点诱变结果表明,ERRE1(-129至-121 bp)比在人DAX-1启动子中不保守的ERRE2(-334至-326 bp)更重要。此外,腺病毒介导的ERRγ的过表达诱导了共表达ERRγ和DAX-1的MCF-7乳腺癌细胞中DAX-1基因的表达。此外,酵母双杂交和谷胱甘肽S转移酶(GST)的拉下试验表明DAX-1与ERRγ物理相互作用并抑制ERRγ反式激活,并且这种相互作用取决于ERRγ的AF-2结构域。此外,体外竞争试验表明,DAX-1通过这两个因子对AF-2结合域的竞争抑制了PGC-1α介导的ERRγ反式激活。因此,我们提出了一种新型的自动调节环,该环通过ERRγ控制DAX-1基因的表达。

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