Varadharajan Venkatramanan, Arumugam Gokulakrishnan Sivasundari, Shanmugam Sethupathi
Department of Biotechnology, Sri Shakthi Institute of Engineering and Technology, Coimbatore, India.
Department of Chemical Engineering, National Institute of Technology, Tiruchirappalli, India.
J Biomol Struct Dyn. 2022 Oct;40(17):7852-7867. doi: 10.1080/07391102.2021.1904003. Epub 2021 Mar 25.
Coronavirus disease 2019 (COVID-19), caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), is a rapidly growing health care emergency across the world. One of the viral proteases called main protease or Mpro, plays a crucial role in the replication of SARS-CoV-2. As the structure of Mpro of SARS-CoV-2 is similar to the Mpro of SARS-CoV-1 (responsible for SARS outbreak between 2002 and 2004), we hypothesize that the inhibitors of SARS-CoV-1 Mpro can also inhibit the Mpro of SARS-CoV-2. To test this hypothesis, a total of 79 isatin derivatives, which inhibited Mpro activity under conditions, were selected from the literature, and then screened through AutoDock Vina. The chemical features of the top 5 isatin derivatives with low binding energies (-8.5 to -8.2 kcal/mol) were used to screen similar types of compounds from several small-molecule libraries containing 15856508 compounds. A total of 1,609 compounds with similarity score ≥ 6 were screened and then subjected to docking as well as ADME analysis. Among the compounds screened, 4 ligands form Zinc drug-like library (ZINC000008848565, ZINC000009513563, ZINC000036759789 and ZINC000046053855) showed good ADMET properties, low binding energy (-8.4 to -8.6 kcal/mol), low interaction energy (-72.62 to -50.01 kcal/mol) and high structural stability with Mpro. Hence, the selected ligands might serve as the lead candidates for further wet laboratory validation, optimization and development.Communicated by Ramaswamy H. Sarma.
2019冠状病毒病(COVID-19)由严重急性呼吸综合征冠状病毒2(SARS-CoV-2)引起,是全球范围内迅速蔓延的重大公共卫生事件。一种名为主要蛋白酶或Mpro的病毒蛋白酶在SARS-CoV-2的复制过程中起着关键作用。由于SARS-CoV-2的Mpro结构与SARS-CoV-1(引发2002年至2004年非典疫情)的Mpro相似,我们推测SARS-CoV-1 Mpro的抑制剂也能抑制SARS-CoV-2的Mpro。为验证这一假设,我们从文献中挑选了79种在特定条件下能抑制Mpro活性的异吲哚酮衍生物,然后通过AutoDock Vina进行筛选。利用结合能较低(-8.5至-8.2千卡/摩尔)的前5种异吲哚酮衍生物的化学特征,从包含15856508种化合物的几个小分子文库中筛选出类似类型的化合物。共筛选出1609种相似性评分≥6的化合物,随后进行对接以及药物代谢动力学(ADME)分析。在筛选出的化合物中,4种来自锌类药物样文库的配体(ZINC000008848565、ZINC000009513563、ZINC000036759789和ZINC000046053855)表现出良好的ADMET性质、低结合能(-8.4至-8.6千卡/摩尔)、低相互作用能(-72.62至-50.01千卡/摩尔)以及与Mpro的高结构稳定性。因此,所选配体可能作为进一步实验室湿实验验证、优化和开发的潜在候选物。由拉马斯瓦米·H·萨尔马传达。