奥西多尔
化学
可药性
变构调节
药物发现
对接(动物)
虚拟筛选
小分子
计算生物学
活动站点
结合位点
水解酶
立体化学
酶
生物化学
组合化学
生物
催化作用
医学
护理部
基因
作者
Lara Alzyoud,Radwa E. Mahgoub,Feda E. Mohamed,Bassam R. Ali,Juliana C. Ferreira,Wael M. Rabeh,Noor Atatreh,Mohammad A. Ghattas
标识
DOI:10.1002/cbdv.202301176
摘要
With the potential for coronaviruses to re-emerge and trigger future pandemics, the urgent development of antiviral inhibitors against SARS-CoV-2 is essential. The Mpro enzyme is crucial for disease progression and the virus's life cycle. It possesses allosteric sites that can hinder its catalytic activity, with some of these sites located at or near the dimerization interface. Among them, sites #2 and #5 possess druggable pockets and are predicted to bind drug-like molecules. Consequently, a commercially available ligand library containing ~7 million ligands was used to target site #2 via structure-based virtual screening. After extensive filtering, docking, and post-docking analyses, 53 compounds were chosen for biological testing. An oxindole derivative was identified as a Mpro non-competitive reversible inhibitor with a Ki of 115 μM and an IC50 of 101.9 μM. Throughout the 200 ns-long MD trajectories, our top hit has shown a very stable binding mode, forming several interactions with residues in sites #2 and #5. Moreover, other oxindole derivatives were acquired for biological testing to gain deeper insights into their structure-activity relationship. To sum up, drug-like allosteric inhibitors seem promising and can provide us with an additional weapon in our war against the recent pandemic and other coronaviruses-caused diseases.
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