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Dissecting the action of an evolutionary conserved non-coding region on renin promoter activity

机译:解剖进化保守的非编码区对肾素启动子活性的作用

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摘要

Elucidating the mechanisms of the human transcriptional regulatory network is a major challenge of the post-genomic era. One important aspect is the identification and functional analysis of regulatory elements in non-coding DNA. Genomic sequence comparisons between related species can guide the discovery of cis-regulatory sequences. Using this technique, we identify a conserved region CNSmd of similar to 775 bp in size, similar to 14 kb upstream of the renin gene. Renin plays a pivotal role for mammalian blood pressure regulation and electrolyte balance. To analyse the cis-regulatory role of this region in detail, we perform 132 combinatorial reporter gene assays in an in vitro Calu-6 cell line model. To dissect the role of individual subregions, we fit several mathematical models to the experimental data. We show that a multiplicative switch model fits best the experimental data and that one subregion has a dominant effect on promoter activity. Mapping of the sub-sequences on phylogenetic conservation data reveals that the dominant regulatory region is the one with the highest multi-species conservation score.
机译:阐明人类转录调控网络的机制是后基因组时代的主要挑战。一个重要方面是非编码DNA中调控元件的鉴定和功能分析。相关物种之间的基因组序列比较可以指导顺式调控序列的发现。使用这种技术,我们确定了一个保守区域CNSmd,大小约为775 bp,类似于肾素基因上游的14 kb。肾素对哺乳动物的血压调节和电解质平衡起着关键作用。若要详细分析该区域的顺式调控作用,我们在体外Calu-6细胞系模型中进行了132个组合报道基因检测。为了剖析各个子区域的作用,我们将几个数学模型拟合到实验数据中。我们表明,乘性转换模型最适合实验数据,并且一个子区域对启动子活性具有主导作用。该子序列在系统发育保护数据上的映射显示,主要的调控区域是具有最高物种保护分数的区域。

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