Brosius Jürgen, Raabe Carsten A
a Institute of Experimental Pathology, ZMBE, University of Münster , Von-Esmarch-Str. 56, 48149 ; Münster , Germany.
b Institute of Evolutionary and Medical Genomics, Brandenburg Medical School (MHB) , Fehrbelliner Str. 38, 16816 ; Germany.
RNA Biol. 2016;13(2):140-4. doi: 10.1080/15476286.2015.1128064.
Every ribonucleic acid begins its cellular life as a transcript. If the transcript or its processing product has a function it should be regarded an RNA. Nonfunctional transcripts, by-products from processing, degradation intermediates, even those originating from (functional) RNAs, and non-functional products of transcriptional gene regulation accomplished via the act of transcription, as well as stochastic (co)transcripts could simply be addressed as transcripts (class 0). The copious functional RNAs (class I), often maturing after one or more processing steps, already are systematized into ever expanding sub-classifications ranging from micro RNAs to rRNAs. Established sub-classifications addressing a wide functional diversity remain unaffected. mRNAs (class II) are distinct from any other RNA by virtue of their potential to be translated into (poly)peptide(s) on ribosomes. We are not proposing a novel RNA classification, but wish to add a basic concept with existing terminology (transcript, RNA, and mRNA) that should serve as an additional framework for carefully delineating RNA function from an avalanche of RNA sequencing data. At the same time, this top level hierarchical model should illuminate important principles of RNA evolution and biology thus heightening our awareness that in biology boundaries and categorizations are typically fuzzy.
每个核糖核酸在细胞内的生命始于转录本。如果转录本或其加工产物具有功能,那么它就应被视为一种RNA。无功能的转录本、加工过程中的副产物、降解中间体,甚至那些源自(功能性)RNA的产物,以及通过转录行为实现的转录基因调控的无功能产物,还有随机(共)转录本,都可简单地称为转录本(0类)。数量众多的功能性RNA(I类)通常在经过一个或多个加工步骤后成熟,它们已被系统地分类为从微小RNA到核糖体RNA等不断扩展的亚类。针对广泛功能多样性的既定亚类分类不受影响。信使RNA(II类)因其有潜力在核糖体上被翻译成(多)肽而与其他任何RNA不同。我们并非提出一种新的RNA分类方法,而是希望用现有术语(转录本、RNA和信使RNA)添加一个基本概念,该概念应作为一个额外的框架,用于从大量RNA测序数据中仔细界定RNA功能。同时,这个顶级层次模型应阐明RNA进化和生物学的重要原理,从而增强我们对生物学中界限和分类通常模糊这一点的认识。