Bai Youhuang, Dai Xiaozhuan, Harrison Andrew, Johnston Caroline, Chen Ming
Brief Bioinform. 2016 Jan;17(1):63-77. doi: 10.1093/bib/bbv026. Epub 2015 Apr 27.
RNA structure plays a crucial role in gene maturation, regulation and function. Determining the form and frequency of RNA folds is essential for a better understanding of how RNA exerts its functions. Low-throughput studies have focused on RNA primary sequences and expression levels, but with an emphasis on relatively small numbers of transcripts. However, with the recent advent of high-throughput technologies, it is realistic to begin analyzing RNA secondary structures on a genome-wide scale. Here, we review genome-wide RNA secondary structure profiles as well as advances in computational structure predictions. We further discuss the novel characteristics of RNA secondary structure across messenger RNAs. Probing RNA secondary structure by high-throughput sequencing will enable us to build atlases of RNA secondary structures, an important step in helping us to understand the versatility of RNA functions in diverse cellular processes.
RNA结构在基因成熟、调控及功能方面发挥着关键作用。确定RNA折叠的形式和频率对于更好地理解RNA如何发挥其功能至关重要。低通量研究聚焦于RNA一级序列和表达水平,但侧重于相对少量的转录本。然而,随着高通量技术的近期出现,在全基因组范围内开始分析RNA二级结构成为现实。在此,我们综述全基因组RNA二级结构图谱以及计算结构预测方面的进展。我们进一步讨论信使RNA中RNA二级结构的新特征。通过高通量测序探测RNA二级结构将使我们能够构建RNA二级结构图谱,这是帮助我们理解RNA在不同细胞过程中功能多样性的重要一步。