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首页> 外文期刊>BMC Molecular Biology >Characterization of the human Activin-A receptor type II-like kinase 1 (ACVRL1) promoter and its regulation by Sp1
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Characterization of the human Activin-A receptor type II-like kinase 1 (ACVRL1) promoter and its regulation by Sp1

机译:人激活素A受体II型激酶1(ACVRL1)启动子的表征及其受Sp1调控

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Background Activin receptor-like kinase 1 (ALK1) is a Transforming Growth Factor-β (TGF-β) receptor type I, mainly expressed in endothelial cells that plays a pivotal role in vascular remodelling and angiogenesis. Mutations in the ALK1 gene (ACVRL1) give rise to Hereditary Haemorrhagic Telangiectasia, a dominant autosomal vascular dysplasia caused by a haploinsufficiency mechanism. In spite of its patho-physiological relevance, little is known about the transcriptional regulation of ACVRL1. Here, we have studied the different origins of ACVRL1 transcription, we have analyzed in silico its 5'-proximal promoter sequence and we have characterized the role of Sp1 in the transcriptional regulation of ACVRL1.Results We have performed a 5'Rapid Amplification of cDNA Ends (5'RACE) of ACVRL1 transcripts, finding two new transcriptional origins, upstream of the one previously described, that give rise to a new exon undiscovered to date. The 5'-proximal promoter region of ACVRL1 (-1,035/+210) was analyzed in silico, finding that it lacks TATA/CAAT boxes, but contains a remarkably high number of GC-rich Sp1 consensus sites. In cells lacking Sp1, ACVRL1 promoter reporters did not present any significant transcriptional activity, whereas increasing concentrations of Sp1 triggered a dose-dependent stimulation of its transcription. Moreover, silencing Sp1 in HEK293T cells resulted in a marked decrease of ACVRL1 transcriptional activity. Chromatin immunoprecipitation assays demonstrated multiple Sp1 binding sites along the proximal promoter region of ACVRL1 in endothelial cells. Furthermore, demethylation of CpG islands, led to an increase in ACVRL1 transcription, whereas in vitro hypermethylation resulted in the abolishment of Sp1-dependent transcriptional activation of ACVRL1.Conclusions Our results describe two new transcriptional start sites in ACVRL1 gene, and indicate that Sp1 is a key regulator of ACVRL1 transcription, providing new insights into the molecular mechanisms that contribute to the expression of ACVRL1 gene. Moreover, our data show that the methylation status of CpG islands markedly modulates the Sp1 regulation of ACVRL1 gene transcriptional activity.
机译:背景激活素受体样激酶1(ALK1)是I型转化生长因子(TGF-β)受体,主要在内皮细胞中表达,在血管重构和血管生成中起关键作用。 ALK1基因(ACVRL1)中的突变会引起遗传性出血性毛细血管扩张,这是由单倍体功能不全机制引起的显性常染色体血管发育异常。尽管其病理生理相关性,ACVRL1的转录调控知之甚少。在这里,我们研究了ACVRL1转录的不同起源,我们在计算机上分析了其5'-近端启动子序列,并表征了Sp1在ACVRL1转录调控中的作用。结果我们进行了cDNA的5'快速扩增。在ACVRL1转录物的末端(5'RACE),发现了两个新的转录起点,位于先前描述的上游,产生了迄今尚未发现的新外显子。在计算机上分析了ACVRL1(-1,035 / + 210)的5'-近端启动子区域,发现它缺少TATA / CAAT框,但包含大量富含GC的Sp1共有位点。在缺乏Sp1的细胞中,ACVRL1启动子报告基因没有表现出任何明显的转录活性,而Sp1浓度的增加触发了其转录的剂量依赖性刺激。此外,HEK293T细胞中的Sp1沉默导致ACVRL1转录活性明显降低。染色质免疫沉淀分析表明内皮细胞中ACVRL1的近端启动子区域有多个Sp1结合位点。此外,CpG岛的去甲基化导致ACVRL1转录增加,而体外高甲基化导致ACVRL1的Sp1依赖性转录激活被废除。结论我们的结果描述了ACVRL1基因中两个新的转录起始位点,并表明Sp1是ACVRL1转录的关键调节因子,为有助于ACVRL1基因表达的分子机制提供新见解。此外,我们的数据显示CpG岛的甲基化状态显着调节ACVRL1基因转录活性的Sp1调控。

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