首页> 美国卫生研究院文献>The Journal of Neuroscience >Noradrenergic-Specific Transcription of the Dopamine β-Hydroxylase Gene Requires Synergy of MultipleCis-Acting Elements Including at Least Two Phox2a-Binding Sites
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Noradrenergic-Specific Transcription of the Dopamine β-Hydroxylase Gene Requires Synergy of MultipleCis-Acting Elements Including at Least Two Phox2a-Binding Sites

机译:多巴胺β-羟化酶基因的去甲肾上腺素特异性转录需要包括至少两个Phox2a结合位点在内的多个Cis作用元件的协同作用。

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摘要

Dopamine β-hydroxylase (DBH) catalyzes the conversion of dopamine to noradrenaline and is selectively expressed in noradrenergic and adrenergic neurons and neuroendocrine cells. Recent data from this laboratory showed that a paired-like homeodomain (HD) protein, Phox2a, interacts with the HD-binding site residing within a composite promoter of the human DBH gene, designated domain IV, in a cell-specific manner and directly controls noradrenergic-specific DBH promoter activity. In this report, we demonstrate that three additional protein-binding sites (i.e., domains I, II, and III) between domain IV and the TATA box are critical for intact DBH promoter activity in noradrenergic cells and that they activate DBH transcription in a highly concerted manner. Transient transfection assays of mutant DBH reporter constructs indicated that domain I was active in every cell line tested, whereas domain III was preferentially active in DBH-positive cells. Remarkably, mutation of domain II was associated with inactivation of DBH promoter activity exclusively in DBH-positive cell lines, defining it as another noradrenergic-specific promoter element. The cell-specific profile of the promoter function of these sequence motifs was further supported byin vitro DNA-binding studies and Southwestern analysis. Furthermore, competition and antibody supershift assays show that transcription factors Sp1 and AP2 are the cognate nuclear factors interacting with domains I and III, respectively. Parallel evidence indicates that domain II is another Phox2a-binding site, demonstrating at least two binding sites for this factor in the upstream DBH promoter. Strikingly, four tandem copies of domain II increased the promoter activity of a minimal DBH promoter by 100- to 200-fold in DBH-positive cell lines without compromising cell specificity. Cotransfection of Phox2a-expression vector dramatically increased the activity of the multiple domain II promoter only in DBH-negative cell lines, confirming that domain II is responsive to Phox2a. Collectively, this study emphasizes a critical role of Phox2a as well as its functional synergism with other transcription factors (e.g., CREB, AP2, and Sp1) in transcriptional activation of the DBH gene.
机译:多巴胺β-羟化酶(DBH)催化多巴胺向去甲肾上腺素的转化,并在去甲肾上腺素能和肾上腺素能神经元以及神经内分泌细胞中选择性表达。该实验室的最新数据表明,成对的同源结构域(HD)蛋白Phox2a以细胞特异性方式与驻留在人DBH基因复合启动子(称为结构域IV)中的HD结合位点相互作用,并直接控制去甲肾上腺素特异性DBH启动子活性。在本报告中,我们证明了域IV和TATA框之间的三个其他蛋白质结合位点(即域I,II和III)对于去甲肾上腺素细胞中完整的DBH启动子活性至关重要,并且它们在高度激活的状态下激活DBH转录。齐心协力。突变DBH报告基因构建体的瞬时转染测定表明,结构域I在每个测试的细胞系中均具有活性,而结构域III在DBH阳性细胞中具有优先活性。值得注意的是,结构域II的突变仅与DBH阳性细胞系中DBH启动子活性的失活有关,从而将其定义为另一种去甲肾上腺素特异性启动子元件。这些序列基序的启动子功能的细胞特异性概况得到了体外DNA结合研究和Southwestern分析的进一步支持。此外,竞争和抗体超位移分析表明,转录因子Sp1和AP2是分别与域I和III相互作用的同源核因子。并行证据表明,结构域II是另一个Phox2a结合位点,在上游DBH启动子中证明了该因子的至少两个结合位点。令人惊讶的是,结构域II的四个串联拷贝在DBH阳性细胞系中将最小DBH启动子的启动子活性提高了100到200倍,而没有损害细胞特异性。 Phox2a表达载体的共转染仅在DBH阴性细胞系中显着增加了多域II启动子的活性,证实域II对Phox2a有反应。这项研究共同强调了Phox2a及其与其他转录因子(例如CREB,AP2和Sp1)在DBH基因转录激活中的关键作用。

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