Xie Ya-Chen, Eriksson Leif A, Zhang Ru-Bo
School of Chemistry and Chemical Engineering, Beijing Institute of Technology, South Street No. 5, Zhongguancun, Haidian District, 100081 Beijing, China.
Department of Chemistry and Molecular Biology, University of Gothenburg, Medicinaregatan 9c, 405 30 Göteborg, Sweden.
Nucleic Acids Res. 2020 Jul 9;48(12):6471-6480. doi: 10.1093/nar/gkaa428.
Despite their great success in recognizing small molecules in vitro, nucleic acid aptamers are rarely used in clinical settings. This is partially due to the lack of structure-based mechanistic information. In this work, atomistic molecular dynamics simulations are used to study the static and dynamic supramolecular structures relevant to the process of the wild-type (wt) nucleic acid aptamer recognition and binding of ATP. The effects brought about by mutation of key residues in the recognition site are also explored. The simulations reveal that the aptamer displays a high degree of rigidity and is structurally very little affected by the binding of ATP. Interaction energy decomposition shows that dispersion forces from π-stacking between ATP and the G6 and A23 nucleobases in the aptamer binding site plays a more important role in stabilizing the supramolecular complex, compared to hydrogen-bond interaction between ATP and G22. Moreover, metadynamics simulations show that during the association process, water molecules act as essential bridges connecting ATP with G22, which favors the dynamic stability of the complex. The calculations carried out on three mutated aptamer structures confirm the crucial role of the hydrogen bonds and π-stacking interactions for the binding affinity of the ATP nucleic acid aptamer.
尽管核酸适配体在体外识别小分子方面取得了巨大成功,但在临床环境中却很少使用。部分原因是缺乏基于结构的作用机制信息。在这项工作中,利用原子分子动力学模拟来研究与野生型(wt)核酸适配体识别和结合ATP过程相关的静态和动态超分子结构。还探讨了识别位点关键残基突变所带来的影响。模拟结果表明,适配体表现出高度的刚性,其结构受ATP结合的影响很小。相互作用能分解表明,与ATP和G22之间的氢键相互作用相比,ATP与适配体结合位点中的G6和A23核苷酸碱基之间的π-堆积产生的色散力在稳定超分子复合物中起更重要的作用。此外,元动力学模拟表明,在缔合过程中,水分子作为连接ATP与G22的重要桥梁,这有利于复合物的动态稳定性。对三种突变适配体结构进行的计算证实了氢键和π-堆积相互作用对ATP核酸适配体结合亲和力的关键作用。