School of Life Sciences and Technology, Tokyo Institute of Technology, 2-12-1 Ookayama, Meguro-ku, Tokyo, 152-8550, Japan.
Sci Rep. 2022 Mar 9;12(1):3860. doi: 10.1038/s41598-022-07792-2.
Non-structural protein 15 (Nsp15) of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) forms a homo hexamer and functions as an endoribonuclease. Here, we propose that Nsp15 activity may be inhibited by preventing its hexamerization through drug binding. We first explored the stable conformation of the Nsp15 monomer as the global free energy minimum conformation in the free energy landscape using a combination of parallel cascade selection molecular dynamics (PaCS-MD) and the Markov state model (MSM), and found that the Nsp15 monomer forms a more open conformation with larger druggable pockets on the surface. Targeting the pockets with high druggability scores, we conducted ligand docking and identified compounds that tightly bind to the Nsp15 monomer. The top poses with Nsp15 were subjected to binding free energy calculations by dissociation PaCS-MD and MSM (dPaCS-MD/MSM), indicating the stability of the complexes. One of the identified pockets, which is distinctively bound by inosine analogues, may be an alternative binding site to stabilize viral RNA binding and/or an alternative catalytic site. We constructed a stable RNA structure model bound to both UTP and alternative binding sites, providing a reasonable proposed model of the Nsp15/RNA complex.
严重急性呼吸综合征冠状病毒 2(SARS-CoV-2)的非结构蛋白 15(Nsp15)形成同源六聚体,作为一种内切核酸酶发挥作用。在这里,我们提出通过药物结合来阻止其六聚化可能会抑制 Nsp15 的活性。我们首先使用平行级联选择分子动力学(PaCS-MD)和马尔可夫状态模型(MSM)的组合,探索了 Nsp15 单体在自由能景观中的稳定构象作为全局自由能最小构象,并发现 Nsp15 单体形成了更开放的构象,表面有更大的可成药口袋。针对具有高成药性评分的口袋,我们进行了配体对接,并确定了与 Nsp15 单体紧密结合的化合物。具有 Nsp15 的最佳构象通过解离 PaCS-MD 和 MSM(dPaCS-MD/MSM)进行结合自由能计算,表明了复合物的稳定性。一个独特地被肌苷类似物结合的口袋可能是稳定病毒 RNA 结合和/或替代催化位点的另一个结合位点。我们构建了一个与 UTP 和替代结合位点结合的稳定 RNA 结构模型,为 Nsp15/RNA 复合物提供了一个合理的建议模型。