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首页> 外文期刊>Applied Biological Chemistry >Screening marine algae metabolites as high-affinity inhibitors of SARS-CoV-2 main protease (3CLpro): an in silico analysis to identify novel drug candidates to combat COVID-19 pandemic
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Screening marine algae metabolites as high-affinity inhibitors of SARS-CoV-2 main protease (3CLpro): an in silico analysis to identify novel drug candidates to combat COVID-19 pandemic

机译:筛选海藻藻类代谢物作为SARS-COV-2主要蛋白酶的高亲和力抑制剂(3CLPRO):在硅分析中,以识别用于打击Covid-19大流行的新型药物候选者

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The recent dissemination of SARS-CoV-2 from Wuhan city to all over the world has created a pandemic. COVID-19 has cost many human lives and created an enormous economic burden. Although many drugs/vaccines are in different stages of clinical trials, still none is clinically available. We have screened a marine seaweed database (1110 compounds) against 3CLpro of SARS-CoV-2 using computational approaches. High throughput virtual screening was performed on compounds, and 86 of them with docking score? ??5.000?kcal?mol?1 were subjected to standard-precision docking. Based on binding energies (???6.000?kcal?mol?1), 9 compounds were further shortlisted and subjected to extra-precision docking. Free energy calculation by Prime-MM/GBSA suggested RC002, GA004, and GA006 as the most potent inhibitors of 3CLpro. An analysis of ADMET (Absorption, Distribution, Metabolism, Excretion, and Toxicity) properties of RC002, GA004, and GA006 indicated that only RC002 (callophysin A, from red alga Callophycus oppositifolius) passed Lipinski’s, Veber’s, PAINS and Brenk’s filters and displayed drug-like and lead-like properties. Analysis of 3CLpro-callophysin A complex revealed the involvement of salt bridge, hydrogen bonds, and hydrophobic interactions. callophysin A interacted with the catalytic residues (His41 and Cys145) of 3CLpro; hence it may act as a mechanism-based competitive inhibitor. Docking energy and docking affinity of callophysin A towards 3CLpro was ??8.776?kcal?mol?1 and 2.73?×?106?M?1, respectively. Molecular dynamics simulation confirmed the stability of the 3CLpro-callophysin A complex. The findings of this study may serve as the basis for further validation by in vitro and in vivo studies.
机译:最近从武汉市到世界各地的SARS-COV-2的传播创造了大流行。 Covid-19花了许多人类生活,并创造了巨大的经济负担。虽然许多药物/疫苗在临床试验的不同阶段,但仍然没有临床可用。我们使用计算方法筛选了越野海藻数据库(1110种化合物)对抗SARS-COV-2的3CLPRO。在化合物上进行高吞吐量虚拟筛选,其中86个以对接得分θ,5.000?kcal?摩尔α1进行标准精度对接。基于结合能量(

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