Diaz-Toledano Rosa, Lozano Gloria, Martinez-Salas Encarnacion
Centro de Biología Molecular Severo Ochoa, Consejo Superior de Investigaciones Científicas - Universidad Autónoma de Madrid, Nicolas Cabrera 1, Madrid, Spain
Nucleic Acids Res. 2017 Feb 17;45(3):1416-1432. doi: 10.1093/nar/gkw795.
The genome of RNA viruses folds into 3D structures that include long-range RNA–RNA interactions relevant to control critical steps of the viral cycle. In particular, initiation of translation driven by the IRES element of foot-and-mouth disease virus is stimulated by the 3΄UTR. Here we sought to investigate the RNA local flexibility of the IRES element and the 3΄UTR in living cells. The SHAPE reactivity observed in vivo showed statistically significant differences compared to the free RNA, revealing protected or exposed positions within the IRES and the 3΄UTR. Importantly, the IRES local flexibility was modified in the presence of the 3΄UTR, showing significant protections at residues upstream from the functional start codon. Conversely, presence of the IRES element in cis altered the 3΄UTR local flexibility leading to an overall enhanced reactivity. Unlike the reactivity changes observed in the IRES element, the SHAPE differences of the 3΄UTR were large but not statistically significant, suggesting multiple dynamic RNA interactions. These results were supported by covariation analysis, which predicted IRES-3΄UTR conserved helices in agreement with the protections observed by SHAPE probing. Mutational analysis suggested that disruption of one of these interactions could be compensated by alternative base pairings, providing direct evidences for dynamic long-range interactions between these distant elements of the viral genome.
RNA病毒的基因组折叠成三维结构,其中包括与控制病毒周期关键步骤相关的长程RNA-RNA相互作用。特别是,口蹄疫病毒IRES元件驱动的翻译起始受到3΄UTR的刺激。在这里,我们试图研究活细胞中IRES元件和3΄UTR的RNA局部灵活性。体内观察到的SHAPE反应性与游离RNA相比显示出统计学上的显著差异,揭示了IRES和3΄UTR内受保护或暴露的位置。重要的是,在3΄UTR存在的情况下,IRES局部灵活性发生了改变,在功能性起始密码子上游的残基处显示出显著的保护作用。相反,顺式存在的IRES元件改变了3΄UTR局部灵活性,导致整体反应性增强。与IRES元件中观察到的反应性变化不同,3΄UTR的SHAPE差异很大,但无统计学意义,表明存在多种动态RNA相互作用。这些结果得到了共变分析的支持,该分析预测了IRES-3΄UTR保守螺旋,与SHAPE探测观察到的保护作用一致。突变分析表明,这些相互作用之一的破坏可以通过替代碱基配对得到补偿,为病毒基因组这些远距离元件之间的动态长程相互作用提供了直接证据。