Autiero Ida, Vitagliano Luigi
Institute of Biostructures and Bioimaging, Via Pietro Castellino 111, 80131 Naples, Italy.
Mol Ther Nucleic Acids. 2023 Sep 29;34:102039. doi: 10.1016/j.omtn.2023.102039. eCollection 2023 Dec 12.
Intrinsic flexibility and structural modularity are two common features of RNA molecules. Although functionally crucial, RNA plasticity often represents a major complication in high-resolution structural studies. To overcome this problem, RNAs may be rigidified through the complexation with high-affinity partners such as Fab molecules. This approach has been previously used to characterize the DIR2-aptamer. However, possible perturbations induced by the insertion of the Fab binding site on the DIR2-aptamer conformational properties were not investigated. Here, using enhanced molecular dynamics simulations, we compared the dynamics of the DIR2 aptamer holding the Fab binding site with that of the parental sequence. Our results suggest that the L2-loop modification for the Fab recognition leads to a significant increase in local flexibility that also affects the mobility of distant regions. The trajectories provide clear indications of the groups and the interactions mediating the dynamics transfer in DIR2. The effectiveness of our approach in addressing RNA flexibility was further corroborated by showing its ability to reproduce the most important events affecting the NF-κB RNA aptamer upon dissociation from the partner. Therefore, REMD analyses, a rarely adopted technique to unravel the structural/dynamical properties of aptamers, could efficiently complement experimental data guiding the rational design of nucleic acid therapeutics.
内在灵活性和结构模块化是RNA分子的两个共同特征。尽管在功能上至关重要,但RNA的可塑性在高分辨率结构研究中常常是一个主要难题。为了克服这个问题,可以通过与高亲和力伴侣(如Fab分子)复合来使RNA刚性化。这种方法先前已被用于表征DIR2适配体。然而,Fab结合位点插入对DIR2适配体构象性质可能引起的扰动尚未得到研究。在此,我们使用增强分子动力学模拟,比较了带有Fab结合位点的DIR2适配体与亲本序列的动力学。我们的结果表明,用于Fab识别的L2环修饰导致局部灵活性显著增加,这也影响了远处区域的流动性。轨迹清楚地表明了DIR2中介导动力学传递的基团和相互作用。我们的方法在解决RNA灵活性方面的有效性通过展示其再现与伴侣解离后影响NF-κB RNA适配体的最重要事件的能力得到了进一步证实。因此,REMD分析作为一种很少用于揭示适配体结构/动力学性质的技术,可以有效地补充指导核酸治疗合理设计的实验数据。