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Synergistic activation of the human orphan nuclear receptor SHP gene promoter by basic helix–loop–helix protein E2A and orphan nuclear receptor SF-1

机译:基本螺旋-环-螺旋蛋白E2A和孤儿核受体SF-1对人类孤儿核受体SHP基因启动子的协同激活

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摘要

The orphan nuclear receptor small heterodimer partner (SHP; NR0B2) is an unusual orphan nuclear receptor that lacks a conventional DNA-binding domain and acts as a modulator of transcriptional activities of a number of nuclear receptors. We have previously reported that the orphan nuclear receptor ERR activates the SHP promoter. In this study, we have found that basic helix–loop–helix (bHLH) transcription factors, the E2A proteins (E47, E12 and E2/5), activated the human but not the mouse SHP promoter. In contrast, the tissue-specific E47 heterodimer partner BETA2 repressed the E47- mediated transactivation of the human SHP (hSHP) promoter. Using serial deletions and E-box mutant constructs of the hSHP promoter, we identified two E-boxes (E6 and E7) as E47-responsive E-boxes, which are not conserved in the mouse SHP promoter. Moreover, gel shift, chromatin immunoprecipitation (ChIP) and northern blot assays demonstrated that E47 directly binds to the hSHP promoter in vivo and in vitro and that Id proteins inhibited E47 binding to the hSHP promoter. Finally, we found that E47 and steroidogenic factor 1 (SF-1), a regulator of the SHP promoter, synergistically activate the human but not the mouse SHP promoter. Our findings suggest that the E2A proteins differentially regulate the human and mouse SHP promoters and cooperate with orphan nuclear receptor SF-1 for transcriptional activation of the hSHP promoter.
机译:孤儿核受体小异二聚体伴侣(SHP; NR0B2)是一种不常见的孤儿核受体,它缺乏常规的DNA结合结构域,并充当许多核受体转录活性的调节剂。我们以前曾报道孤儿核受体ERR激活SHP启动子。在这项研究中,我们发现基本的螺旋-环-螺旋(bHLH)转录因子E2A蛋白(E47,E12和E2 / 5)激活了人,但没有激活小鼠SHP启动子。相反,组织特异性E47异二聚体伴侣BETA2抑制了人SHP(hSHP)启动子的E47介导的反式激活。使用序列删除和hSHP启动子的E-box突变体构建体,我们确定了两个E-box(E6和E7)作为E47-响应性E-box,在小鼠SHP启动子中不保守。此外,凝胶迁移,染色质免疫沉淀(ChIP)和Northern blot分析表明,E47在体内和体外直接与hSHP启动子结合,Id蛋白抑制E47与hSHP启动子结合。最后,我们发现E47和类固醇生成因子1(SF-1)(SHP启动子的调节剂)协同激活了人,而不是小鼠SHP启动子。我们的发现表明,E2A蛋白可差异调节人类和小鼠SHP启动子,并与孤儿核受体SF-1协同激活hSHP启动子。

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