论文标题

使用综合药物重新利用和分子对接方法预测SARS-COV-2 RNA依赖性RNA聚合酶的潜在抑制剂的预测

Prediction of potential inhibitors for RNA-dependent RNA polymerase of SARS-CoV-2 using comprehensive drug repurposing and molecular docking approach

论文作者

Parvez, Md. Sorwer Alam, Karim, Md. Adnan, Hasan, Mahmudul, Jaman, Jomana, Karim, Ziaul, Tahsin, Tohura, Hasan, Md. Nazmul, Hosen, Mohammad Jakir

论文摘要

Covid-19的大流行率已成为一个非常严重的全球健康问题。全世界的科学家已经在发现一种与SARS-COV-2作斗争的药物方面进行了大量投资。已经发现RNA依赖性RNA聚合酶(RDRP)在SARS-COV-2复制中起着至关重要的作用,因此可能是潜在的药物靶标。在这里,采用了全面的计算方法,包括重新利用药物和分子对接,以预测针对SARS-COV-2 RDRP的有效候选药物。这项研究表明,利法布丁,利福平,菲达素,7-甲基 - 瓜氨酸-5'-三磷酸-5'-瓜氨糖苷和伊维菌素与SARS-COV-2的RDRP具有潜在的抑制作用,并且可以是有效药物的covid-covid9。此外,对锌数据库中化合物的虚拟筛选还允许预测两种化合物(Zinc09128258和锌09883305),具有具有有效与SARS-COV-2 RDRP有效相互作用的药理特征。表明它们作为酶有效抑制剂的潜力。此外,还研究了ADME分析以及对毒性的分析,以检查两种化合物的药代动力学和药物类药物的特性。蛋白质抑制剂复合物的比较结构分析表明,氨基酸Y32,K47,Y122,Y129,H133,N138,N138,D140,T141,S709和N781的位置对于SARS-COV-2的RDRP中的药物表面热点至关重要。

The pandemic prevalence of COVID-19 has become a very serious global health issue. Scientists all over the world have been heavily invested in the discovery of a drug to combat SARS-CoV-2. It has been found that RNA-dependent RNA Polymerase (RdRp) plays a crucial role in SARS-CoV-2 replication, and thus could be a potential drug target. Here, comprehensive computational approaches including drug repurposing and molecular docking were employed to predict an effective drug candidate targeting RdRp of SARS-CoV-2. This study revealed that Rifabutin, Rifapentine, Fidaxomicin, 7-methyl-guanosine-5'-triphosphate-5'-guanosine and Ivermectin have a potential inhibitory interaction with RdRp of SARS-CoV-2, and could be effective drugs for COVID-19. In addition, virtual screening of the compounds from ZINC database also allowed the prediction of two compounds (ZINC09128258 and ZINC 09883305) with pharmacophore features that interact effectively with RdRp of SARS-CoV-2; indicating their potentiality as effective inhibitors of the enzyme. Furthermore, ADME analysis along with analysis of toxicity was also investigated to check the pharmacokinetics and drug-likeness properties of the two compounds. Comparative structural analysis of protein-inhibitor complexes revealed that positions of the amino acid Y32, K47, Y122, Y129, H133, N138, D140, T141, S709 and N781 are crucial for drug surface hotspot in the RdRp of SARS-CoV-2.

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