Department of Chemistry, University of Agriculture Faisalabad, Faisalabad 38000, Pakistan.
Department of Physics, College of Science, King Khalid University, Abha 61413, P.O. Box 9004, Saudi Arabia.
Bioorg Med Chem Lett. 2021 Jul 1;43:128079. doi: 10.1016/j.bmcl.2021.128079. Epub 2021 May 1.
In the current study, the interaction of SARS-CoV-2 protein (A and B chains of nsp13) with different recently synthesized phenolic compounds (Sreenivasulu et al., Synthetic Communications, 2020, 112-122) has been studied. The interactions have been investigated by using molecular docking, quantum chemical and molecular dynamics simulations methods. The molecular structures of all the ligands are studied quantum chemically in terms of their optimized structures, 3-D orbital distributions, global chemical descriptors, molecular electrostatic potential plots and HOMO-LUMO orbital energies. All the ligands show reasonably good binding affinities with nsp-13 protein. The ligand L2 shows to have better binding affinities to Chain A and Chain B of nsp13 protein, which are -6.7 and -6.4 kcal/mol. The study of intermolecular interactions indicates that L2 shows different hydrophobic and hydrogen bond interactions with both chains. Furthermore, molecular dynamic simulations of the nsp13-L2 complex are obtained over a time scale of 60 ns, which indicates its stability and flexibility behavior as assessed in terms of its RMSD and RMSF graphs. The ADMET analysis also shows no violation of Lipinski rule (RO5) by studied phenolic compounds. We believe that the current findings will be further confirmed by in vitro and in vivo studies of these recent phenolic compounds for their potential as inhibitors for SARS-Co-V-2 virus.
在当前的研究中,研究了 SARS-CoV-2 蛋白(nsp13 的 A 链和 B 链)与不同最近合成的酚类化合物(Sreenivasulu 等人,合成通讯,2020 年,112-122)的相互作用。通过使用分子对接、量子化学和分子动力学模拟方法研究了相互作用。根据优化结构、3-D 轨道分布、全局化学描述符、分子静电势图和 HOMO-LUMO 轨道能对所有配体的分子结构进行了量子化学研究。所有配体均与 nsp-13 蛋白表现出相当好的结合亲和力。配体 L2 与 nsp13 蛋白的 A 链和 B 链显示出更好的结合亲和力,分别为-6.7 和-6.4 kcal/mol。分子间相互作用的研究表明,L2 与两条链均显示出不同的疏水性和氢键相互作用。此外,还获得了 nsp13-L2 配合物的 60 ns 时间尺度的分子动力学模拟,这表明其稳定性和灵活性,可根据 RMSD 和 RMSF 图进行评估。ADMET 分析还表明,所研究的酚类化合物没有违反 Lipinski 规则(RO5)。我们相信,这些最近的酚类化合物作为 SARS-Co-V-2 病毒抑制剂的潜在用途将通过体外和体内研究进一步得到证实。