Department of Genetics, Case Western Reserve University, Cleveland, OH 44106, USA.
Nucleic Acids Res. 2011 Jul;39(12):4949-60. doi: 10.1093/nar/gkq1326. Epub 2011 Feb 25.
The transcription of ribosomal RNA (rRNA) is critical to life. Despite its importance, ribosomal DNA (rDNA) is not included in current genome assemblies and, consequently, genomic analyses to date have excluded rDNA. Here, we show that short sequence reads can be aligned to a genome assembly containing a single rDNA repeat. Integrated analysis of ChIP-seq, DNase-seq, MNase-seq and RNA-seq data reveals several novel findings. First, the coding region of active rDNA is contained within nucleosome-depleted open chromatin that is highly transcriptionally active. Second, histone modifications are located not only at the rDNA promoter but also at novel sites within the intergenic spacer. Third, the distributions of active modifications are more similar within and between different cell types than repressive modifications. Fourth, UBF, a positive regulator of rRNA transcription, binds to sites throughout the genome. Lastly, the insulator binding protein CTCF associates with the spacer promoter of rDNA, suggesting that transcriptional insulation plays a role in regulating the transcription of rRNA. Taken together, these analyses confirm and expand the results of previous ChIP studies of rDNA and provide novel avenues for exploration of chromatin-mediated regulation of rDNA.
核糖体 RNA(rRNA)的转录对于生命至关重要。尽管 rDNA 非常重要,但它并未包含在当前的基因组组装中,因此迄今为止的基因组分析都排除了 rDNA。在这里,我们展示了短序列读取可以与包含单个 rDNA 重复的基因组组装进行比对。对 ChIP-seq、DNase-seq、MNase-seq 和 RNA-seq 数据的综合分析揭示了一些新的发现。首先,活性 rDNA 的编码区位于富含转录活性的核小体缺失的开放染色质内。其次,组蛋白修饰不仅位于 rDNA 启动子上,而且位于基因间间隔区内的新位点上。第三,活性修饰的分布在不同细胞类型内和之间比抑制性修饰更为相似。第四,rRNA 转录的正调控因子 UBF 结合在基因组的各个部位。最后,绝缘子结合蛋白 CTCF 与 rDNA 间隔区启动子结合,表明转录隔离子在调节 rRNA 转录中起作用。综上所述,这些分析证实并扩展了先前 rDNA ChIP 研究的结果,并为探索染色质介导的 rDNA 调控提供了新的途径。