Department of Organic Chemistry, Indian Institute of Science, Bangalore, Karnataka 560012, India.
School of Applied & Interdisciplinary Sciences, Indian Association for the Cultivation of Science, Kolkata, West Bengal 700032, India.
J Phys Chem B. 2021 Jun 3;125(21):5489-5501. doi: 10.1021/acs.jpcb.0c10991. Epub 2021 May 24.
The interactions of intermolecular G-quadruplex RNA and small molecules have been investigated by computational studies. Various anthraquinone, bisbenzimidazole, and carbazole-benzimidazole based ligands have shown a distinct preference to G-quadruplex structures as opposed to the corresponding duplex forms of DNA that were docked with telomeric G-quadruplex RNA. The comparative binding study of such ligands with G-quadruplex (G4) RNA showed higher binding affinities toward carbazole-benzimidazole ligands than those of the anthraquinone and bisbenzimidazole based ligands. A molecular dynamics simulation study was used to examine quadruplex-ligand interactions. Analysis of the binding free energy indicated the formation of the thermodynamically favorable RNA-ligand complex. The formation of several H-bonding interactions and the change of the solvent accessible surface area (SASA) also support the effective binding of the carbazole-benzimidazole ligands with G4 RNA structures. Thus, the library screening approach has assisted in getting a structure-activity relationship for the selected small molecules toward the G-quadruplex RNA binding, which can be applied in the targeting of G-quadruplex RNA medicated anticancer therapeutics.
通过计算研究研究了分子间 G-四链体 RNA 和小分子的相互作用。各种蒽醌、双苯并咪唑和咔唑-苯并咪唑基配体与端粒 G-四链体 RNA 对接的相应 DNA 双链体相比,对 G-四链体结构表现出明显的偏好。与 G-四链体 (G4) RNA 的此类配体的比较结合研究表明,咔唑-苯并咪唑配体的结合亲和力高于蒽醌和双苯并咪唑基配体。使用分子动力学模拟研究来检查四链体-配体相互作用。结合自由能分析表明形成热力学有利的 RNA-配体复合物。氢键的形成和溶剂可及表面积 (SASA) 的变化也支持咔唑-苯并咪唑配体与 G4 RNA 结构的有效结合。因此,文库筛选方法有助于获得针对 G-四链体 RNA 结合的选定小分子的构效关系,可应用于 G-四链体 RNA 介导的抗癌治疗的靶向治疗。