King Abdullah University of Science and Technology (KAUST), Physical Sciences and Engineering Division, Kaust Catalysis Center, Thuwal 23955-6900, Saudi Arabia.
Department of Research and Innovation, STEMskills Research and Education Lab Private Limited, Faridabad 121002, Haryana, India.
Nucleic Acids Res. 2022 Nov 11;50(20):11455-11469. doi: 10.1093/nar/gkac1081.
We present a systematic structural and energetic characterization of phosphate(OP)-nucleobase anion…π stacking interactions in RNAs. We observed OP-nucleobase stacking contacts in a variety of structural motifs other than regular helices and spanning broadly diverse sequence distances. Apart from the stacking between a phosphate and a guanine or a uracil two-residue upstream in specific U-turns, such interactions in RNA have been scarcely characterized to date. Our QM calculations showed an energy minimum at a distance between the OP atom and the nucleobase plane centroid slightly below 3 Å for all the nucleobases. By sliding the OP atom over the nucleobase plane we localized the optimal mutual positioning of the stacked moieties, corresponding to an energy minimum below -6 kcal•mol-1, for all the nucleobases, consistently with the projections of the OP atoms over the different π-rings we observed in experimental occurrences. We also found that the strength of the interaction clearly correlates with its electrostatic component, pointing to it as the most relevant contribution. Finally, as OP-uracil and OP-guanine interactions represent together 86% of the instances we detected, we also proved their stability under dynamic conditions in model systems simulated by state-of-the art DFT-MD calculations.
我们对 RNA 中的磷酸(OP)-碱基阴离子……π 堆积相互作用进行了系统的结构和能量特征分析。我们观察到了各种结构模体中存在 OP-碱基堆积接触,而不仅仅是在常规螺旋体中,而且跨越了广泛的序列距离。除了在特定 U 型转弯中,一个磷酸与鸟嘌呤或尿嘧啶的两个残基上游的堆积接触外,到目前为止,这种相互作用在 RNA 中几乎没有被描述过。我们的 QM 计算显示,对于所有碱基,OP 原子和碱基平面质心之间的距离在略低于 3 Å 的位置能量最低。通过将 OP 原子在碱基平面上滑动,我们确定了堆积部分的最佳相互定位,对应于所有碱基的能量最小值低于-6 kcal•mol-1,与我们在实验中观察到的不同 π 环上的 OP 原子投影一致。我们还发现,相互作用的强度与静电分量明显相关,表明静电分量是最相关的贡献。最后,由于 OP-尿嘧啶和 OP-鸟嘌呤相互作用加起来占我们检测到的实例的 86%,我们还通过最先进的 DFT-MD 计算模拟的模型系统证明了它们在动态条件下的稳定性。