Hia Fabian, Chionh Yok Hian, Pang Yan Ling Joy, DeMott Michael S, McBee Megan E, Dedon Peter C
Singapore MIT Alliance for Research and Technology, 1 CREATE Way, 138602, Singapore.
Singapore MIT Alliance for Research and Technology, 1 CREATE Way, 138602, Singapore Department of Microbiology and Immunology Programme, National University of Singapore, 117456, Singapore.
Nucleic Acids Res. 2015 Mar 11;43(5):e32. doi: 10.1093/nar/gku1317. Epub 2014 Dec 24.
A major challenge in the study of mycobacterial RNA biology is the lack of a comprehensive RNA isolation method that overcomes the unusual cell wall to faithfully yield the full spectrum of non-coding RNA (ncRNA) species. Here, we describe a simple and robust procedure optimized for the isolation of total ncRNA, including 5S, 16S and 23S ribosomal RNA (rRNA) and tRNA, from mycobacteria, using Mycobacterium bovis BCG to illustrate the method. Based on a combination of mechanical disruption and liquid and solid-phase technologies, the method produces all major species of ncRNA in high yield and with high integrity, enabling direct chemical and sequence analysis of the ncRNA species. The reproducibility of the method with BCG was evident in bioanalyzer electrophoretic analysis of isolated RNA, which revealed quantitatively significant differences in the ncRNA profiles of exponentially growing and non-replicating hypoxic bacilli. The method also overcame an historical inconsistency in 5S rRNA isolation, with direct sequencing revealing a novel post-transcriptional processing of 5S rRNA to its functional form and with chemical analysis revealing seven post-transcriptional ribonucleoside modifications in the 5S rRNA. This optimized RNA isolation procedure thus provides a means to more rigorously explore the biology of ncRNA species in mycobacteria.
分枝杆菌RNA生物学研究中的一个主要挑战是缺乏一种全面的RNA分离方法,该方法能够克服其特殊的细胞壁,忠实地获得非编码RNA(ncRNA)的全谱。在此,我们描述了一种简单且稳健的程序,该程序经过优化,用于从分枝杆菌中分离总ncRNA,包括5S、16S和23S核糖体RNA(rRNA)以及tRNA,以牛分枝杆菌卡介苗(Mycobacterium bovis BCG)为例说明该方法。基于机械破碎与液相和固相技术相结合,该方法能高产且完整地产生所有主要种类的ncRNA,从而能够对ncRNA进行直接化学和序列分析。该方法对卡介苗的可重复性在分离RNA的生物分析仪电泳分析中很明显,这揭示了指数生长期和非复制性低氧杆菌的ncRNA谱在数量上的显著差异。该方法还克服了5S rRNA分离中一个长期存在的不一致问题,直接测序揭示了5S rRNA转录后加工成其功能形式的新过程,化学分析揭示了5S rRNA中的七种转录后核糖核苷修饰。因此,这种优化的RNA分离程序提供了一种更严格地探索分枝杆菌中ncRNA生物学的方法。