Miyauchi Kenjyo, Ohara Tomoya, Suzuki Tsutomu
Department of Chemistry and Biotechnology, Graduate School of Engineering, Graduate School of Frontier Sciences, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-8656, Japan.
Nucleic Acids Res. 2007;35(4):e24. doi: 10.1093/nar/gkl1129. Epub 2007 Jan 23.
Recent genome-wide transcriptome analysis has identified diverse classes of non-coding RNAs (ncRNAs), some of which have been demonstrated to be functional, regulatory RNAs involved in various biological processes. Maturation of RNA molecules through various post-transcriptional processing events, including splicing, modification, editing and trimming of both ends, is required for correct folding and proper function of RNA molecules. To characterize post-transcriptional modifications and terminal chemical structures of fully processed native RNAs, it is necessary to isolate individual RNA species from a limited quantity and complex mixture of cellular RNAs. However, there have been no general and convenient strategies for isolation of individual RNAs. We describe here the first example of automated parallel isolation of individual ncRNAs using a novel method named 'reciprocal circulating chromatography (RCC)'. RCC employs multiple tip-columns packed with solid-phase DNA probes to isolate multiple RNA species from a common sample of total RNAs. A pilot RCC instrument successfully isolated various ncRNAs from E. coli, yeast and mouse.
最近的全基因组转录组分析已经鉴定出了多种类型的非编码RNA(ncRNA),其中一些已被证明是参与各种生物学过程的功能性调控RNA。RNA分子要正确折叠并发挥正常功能,需要通过各种转录后加工事件实现成熟,这些事件包括剪接、修饰、编辑以及两端的修剪。为了表征完全加工的天然RNA的转录后修饰和末端化学结构,有必要从有限量且复杂的细胞RNA混合物中分离出单个RNA种类。然而,目前还没有通用且便捷的策略来分离单个RNA。在此,我们描述了使用一种名为“往复循环色谱法(RCC)”的新方法对单个ncRNA进行自动并行分离的首个实例。RCC使用多个装有固相DNA探针的尖端柱,从总RNA的共同样本中分离多种RNA种类。一台试验性的RCC仪器成功地从大肠杆菌、酵母和小鼠中分离出了各种ncRNA。