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A reliable method to display authentic DNase I hypersensitive sites at long-ranges in single-copy genes from large genomes

机译:在大基因组的单拷贝基因中长距离显示真实DNase I超敏位点的可靠方法

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摘要

The study of eukaryotic gene transcription depends on methods to discover distal cis-acting control sequences. Comparative bioinformatics is one powerful strategy to reveal these domains, but still requires conventional wet-bench techniques to elucidate their specificity and function. The DNase I hypersensitivity assay (DHA) is also a method to identify regulatory domains, but can also suggest their function. Technically however, the classical DHA is constrained to mapping gene loci in small increments of 20 kb. This limitation hinders efficient and comprehensive analysis of distal gene regions. Here, we report an improved method termed mega-DHA that extends the range of existing DHAs to facilitate assaying intervals that approach 100 kb. We demonstrate its feasibility for efficient analysis of single-copy genes within a large and complex genome by assaying 230 kb of the human ADAMTS14-perforin-paladin gene cluster in four experiments. The results identify distinct networks of regulatory domains specific to expression of perforin and its two neighboring genes.
机译:真核基因转录的研究取决于发现远端顺式作用控制序列的方法。比较生物信息学是揭示这些结构域的一种有力策略,但是仍然需要常规的湿台技术来阐明其特异性和功能。 DNase I超敏性测定(DHA)也是一种识别调节域的方法,但也可以提示其功能。然而,从技术上讲,经典DHA只能以20 kb的小增量映射基因位点。该限制阻碍了远端基因区域的有效和全面分析。在这里,我们报告了一种称为mega-DHA的改进方法,该方法扩展了现有DHA的范围,以方便测定接近100 kb的间隔。我们通过在四个实验中测定人ADAMTS14-穿孔素-帕拉丁基因簇的230 kb来证明其有效分析大型和复杂基因组中的单拷贝基因的可行性。结果确定了特定于穿孔素及其两个相邻基因表达的不同调节域网络。

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