Weinberg Zasha, Lünse Christina E, Corbino Keith A, Ames Tyler D, Nelson James W, Roth Adam, Perkins Kevin R, Sherlock Madeline E, Breaker Ronald R
HHMI, Yale University, Box 208103, New Haven, CT 06520-8103, USA.
Department of Molecular, Cellular and Developmental Biology, Yale University, Box 208103, New Haven, CT 06520-8103, USA.
Nucleic Acids Res. 2017 Oct 13;45(18):10811-10823. doi: 10.1093/nar/gkx699.
The discovery of structured non-coding RNAs (ncRNAs) in bacteria can reveal new facets of biology and biochemistry. Comparative genomics analyses executed by powerful computer algorithms have successfully been used to uncover many novel bacterial ncRNA classes in recent years. However, this general search strategy favors the discovery of more common ncRNA classes, whereas progressively rarer classes are correspondingly more difficult to identify. In the current study, we confront this problem by devising several methods to select subsets of intergenic regions that can concentrate these rare RNA classes, thereby increasing the probability that comparative sequence analysis approaches will reveal their existence. By implementing these methods, we discovered 224 novel ncRNA classes, which include ROOL RNA, an RNA class averaging 581 nt and present in multiple phyla, several highly conserved and widespread ncRNA classes with properties that suggest sophisticated biochemical functions and a multitude of putative cis-regulatory RNA classes involved in a variety of biological processes. We expect that further research on these newly found RNA classes will reveal additional aspects of novel biology, and allow for greater insights into the biochemistry performed by ncRNAs.
细菌中结构化非编码RNA(ncRNA)的发现能够揭示生物学和生物化学的新层面。近年来,借助强大的计算机算法进行的比较基因组学分析已成功用于发现许多新型细菌ncRNA类别。然而,这种常规搜索策略有利于发现更常见的ncRNA类别,而越来越罕见的类别相应地更难识别。在本研究中,我们通过设计几种方法来选择基因间区域的子集以富集这些罕见的RNA类别,从而增加比较序列分析方法揭示它们存在的可能性,以此解决这一问题。通过实施这些方法,我们发现了224种新型ncRNA类别,其中包括ROOL RNA,这是一类平均长度为581个核苷酸且存在于多个门类中的RNA,还有几种高度保守且广泛存在的ncRNA类别,其特性表明它们具有复杂的生化功能,以及众多参与各种生物学过程的假定顺式调控RNA类别。我们预计,对这些新发现的RNA类别的进一步研究将揭示新生物学的其他方面,并有助于更深入地了解ncRNA所执行的生物化学过程。