University of Freiburg, Faculty of Biology, Institute of Biology III, Genetics and Experimental Bioinformatics, D-79104 Freiburg, Germany.
Microbiol Spectr. 2018 Jul;6(4). doi: 10.1128/microbiolspec.RWR-0029-2018.
Although bacterial genomes are usually densely protein-coding, genome-wide mapping approaches of transcriptional start sites revealed that a significant fraction of the identified promoters drive the transcription of noncoding RNAs. These can be -acting RNAs, mainly originating from intergenic regions and, in many studied examples, possessing regulatory functions. However, a significant fraction of these noncoding RNAs consist of natural antisense transcripts (asRNAs), which overlap other transcriptional units. Naturally occurring asRNAs were first observed to play a role in bacterial plasmid replication and in bacteriophage λ more than 30 years ago. Today's view is that asRNAs abound in all three domains of life. There are several examples of asRNAs in bacteria with clearly defined functions. Nevertheless, many asRNAs appear to result from pervasive initiation of transcription, and some data point toward global functions of such widespread transcriptional activity, explaining why the search for a specific regulatory role is sometimes futile. In this review, we give an overview about the occurrence of antisense transcription in bacteria, highlight particular examples of functionally characterized asRNAs, and discuss recent evidence pointing at global relevance in RNA processing and transcription-coupled DNA repair.
尽管细菌基因组通常高度编码蛋白质,但转录起始位点的全基因组图谱绘制方法表明,相当一部分鉴定出的启动子驱动非编码 RNA 的转录。这些非编码 RNA 可以是 -作用 RNA,主要来自基因间区域,并且在许多研究的例子中具有调节功能。然而,这些非编码 RNA 的很大一部分由天然反义转录本 (asRNA) 组成,这些转录本与其他转录单位重叠。天然存在的 asRNA 最初被观察到在细菌质粒复制和噬菌体 λ 中发挥作用,这一发现可以追溯到 30 多年前。如今的观点是,asRNA 大量存在于所有三个生命领域。有几个在细菌中具有明确功能的 asRNA 例子。然而,许多 asRNA 似乎是由转录起始的普遍作用产生的,一些数据表明这种广泛转录活性具有全局功能,这解释了为什么有时寻找特定的调节作用是徒劳的。在这篇综述中,我们概述了细菌中反义转录的发生情况,强调了具有功能特征的 asRNA 的特定例子,并讨论了最近指向 RNA 处理和转录偶联 DNA 修复中全局相关性的证据。