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DNase-chip: a high-resolution method to identify DNase I hypersensitive sites using tiled microarrays

机译:DNase芯片:使用平铺微阵列识别DNase I超敏位点的高分辨率方法

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Mapping DNase I hypersensitive sites is an accurate method of identifying the location of gene regulatory elements, including promoters, enhancers, silencers and locus control regions. Although Southern blots are the traditional method of identifying DNase I hypersensitive sites, the conventional manual method is not readily scalable to studying large chromosomal regions, much less the entire genome. Here we describe DNase-chip, an approach that can rapidly identify DNase I hypersensitive sites for any region of interest, or potentially for the entire genome, by using tiled microarrays. We used DNase-chip to identify DNase I hypersensitive sites accurately from a representative 1% of the human genome in both primary and immortalized cell types. We found that although most DNase I hypersensitive sites were present in both cell types studied, some of them were cell-type specific. This method can be applied globally or in a targeted fashion to any tissue from any species with a sequenced genome.
机译:映射DNase I超敏位点是一种准确的方法,可用于识别基因调控元件(包括启动子,增强子,沉默子和基因座控制区)的位置。尽管Southern印迹是鉴定DNase I超敏位点的传统方法,但传统的手动方法无法轻松扩展到研究较大的染色体区域,更不用说整个基因组了。在这里,我们描述了DNase芯片,该方法可以通过使用切片微阵列快速识别任何目标区域或整个基因组的DNase I超敏位点。我们使用DNase芯片从原代和永生化细胞类型中代表性的1%的人类基因组中准确识别DNase I超敏位点。我们发现,尽管在研究的两种细胞类型中都存在大多数DNase I超敏位点,但其中一些是细胞类型特异性的。该方法可以全局地或以靶向方式应用于来自具有测序基因组的任何物种的任何组织。

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