Shi Baochen, Guo Xiangqian, Wu Tao, Sheng Sitong, Wang Jie, Skogerbø Geir, Zhu Xiaopeng, Chen Runsheng
Bioinformatics Laboratory and National Laboratory of Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, Beijing 100101, PR China.
BMC Genomics. 2009 Feb 25;10:92. doi: 10.1186/1471-2164-10-92.
A major goal of post-genomics research is the integrated analysis of genes, regulatory elements and the chromatin architecture on a genome-wide scale. Mapping DNase I hypersensitive sites within the nuclear chromatin is a powerful and well-established method of identifying regulatory element candidates.
Here, we report the first genome-wide analysis of DNase I hypersensitive sites (DHSs) in Caenorhabditis elegans. The data was obtained by hybridizing DNase I-treated and end-captured material from young adult worms to a high-resolution tiling microarray. The data show that C. elegans DHSs were significantly enriched within intergenic regions located 2 kb upstream and downstream of coding genes, and also that a considerable fraction of all DHSs mapped to intergenic positions distant to annotated coding genes. Annotated transcribed loci were generally depleted in DHSs relative to intergenic regions, but DHSs were nonetheless enriched in coding exons and UTRs, whereas introns were significantly depleted in DHSs. Many DHSs appeared to be associated with annotated non-coding RNAs and recently detected transcripts of unknown function. It has been reported that nematode highly conserved non-coding elements were associated with cis-regulatory elements, and we also found that DHSs, particularly distal intergenic DHSs, were significantly enriched in regions that were conserved between the C. elegans and C. briggsae genomes.
We describe the first genome-wide analysis of C. elegans DHSs, and show that the distribution of DHSs is strongly associated with functional elements in the genome.
后基因组学研究的一个主要目标是在全基因组范围内对基因、调控元件和染色质结构进行综合分析。绘制核染色质内的DNase I超敏位点是一种强大且成熟的识别潜在调控元件的方法。
在此,我们报告了秀丽隐杆线虫中DNase I超敏位点(DHSs)的首次全基因组分析。数据是通过将来自年轻成虫经DNase I处理并进行末端捕获的材料与高分辨率平铺微阵列杂交获得的。数据显示,秀丽隐杆线虫的DHSs在编码基因上下游2 kb的基因间区域显著富集,并且所有DHSs中有相当一部分定位于与注释的编码基因距离较远的基因间位置。相对于基因间区域,注释的转录位点在DHSs中通常较少,但DHSs在编码外显子和非翻译区(UTRs)中仍有富集,而内含子在DHSs中显著减少。许多DHSs似乎与注释的非编码RNA以及最近检测到的功能未知的转录本相关。据报道,线虫高度保守的非编码元件与顺式调控元件相关,我们还发现DHSs,特别是远端基因间DHSs,在秀丽隐杆线虫和briggsae线虫基因组之间保守的区域中显著富集。
我们描述了秀丽隐杆线虫DHSs的首次全基因组分析,并表明DHSs的分布与基因组中的功能元件密切相关。