Institute for Molecular Biosciences, Goethe-University Frankfurt, Max-von-Laue-Strasse 9, 60438 Frankfurt/M., Germany.
Center for Biomolecular Magnetic Resonance (BMRZ), Goethe-University Frankfurt, Max-von-Laue-Strasse 7, 60438 Frankfurt/M., Germany.
Nucleic Acids Res. 2023 Nov 10;51(20):11318-11331. doi: 10.1093/nar/gkad762.
We present the high-resolution structure of stem-loop 4 of the 5'-untranslated region (5_SL4) of the severe acute respiratory syndrome coronavirus type 2 (SARS-CoV-2) genome solved by solution state nuclear magnetic resonance spectroscopy. 5_SL4 adopts an extended rod-like structure with a single flexible looped-out nucleotide and two mixed tandem mismatches, each composed of a G•U wobble base pair and a pyrimidine•pyrimidine mismatch, which are incorporated into the stem-loop structure. Both the tandem mismatches and the looped-out residue destabilize the stem-loop structure locally. Their distribution along the 5_SL4 stem-loop suggests a role of these non-canonical elements in retaining functionally important structural plasticity in particular with regard to the accessibility of the start codon of an upstream open reading frame located in the RNA's apical loop. The apical loop-although mostly flexible-harbors residual structural features suggesting an additional role in molecular recognition processes. 5_SL4 is highly conserved among the different variants of SARS-CoV-2 and can be targeted by small molecule ligands, which it binds with intermediate affinity in the vicinity of the non-canonical elements within the stem-loop structure.
我们通过溶液态核磁共振波谱法解析了严重急性呼吸综合征冠状病毒 2 型(SARS-CoV-2)基因组 5'非翻译区(5'UTR)的茎环 4(5_SL4)的高分辨率结构。5_SL4 呈伸展的棒状结构,具有单个柔性环出核苷酸和两个混合串联错配,每个错配由 G•U 摆动碱基对和嘧啶•嘧啶错配组成,并入茎环结构中。这两个串联错配和环出残基局部破坏了茎环结构的稳定性。它们在 5_SL4 茎环中的分布表明这些非规范元件在保留功能重要的结构可塑性方面发挥作用,特别是在位于 RNA 顶端环的上游开放阅读框的起始密码子的可及性方面。顶端环——尽管大部分是灵活的——仍具有残留的结构特征,表明在分子识别过程中具有额外的作用。5_SL4 在 SARS-CoV-2 的不同变体中高度保守,可被小分子配体靶向,配体在茎环结构中非规范元件附近与中等亲和力结合。