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采用综合分子和量子力学方法鉴定针对严重急性呼吸综合征冠状病毒2(SARS-CoV-2)的2'-O-甲基转移酶(nsp16)的新型强效天然生物活性化合物。

Integrated molecular and quantum mechanical approach to identify novel potent natural bioactive compound against 2'-O-methyltransferase (nsp16) of SARS-CoV-2.

作者信息

Thomas Jobin, Kumar Sanjit, Satija Jitendra

机构信息

Centre for Nanobiotechnology (CNBT), Vellore Institute of Technology, Vellore, Tamil Nadu, India.

Centre for Bio-Separation and Technology (CBST), Vellore Institute of Technology, Vellore, Tamil Nadu, India.

出版信息

J Biomol Struct Dyn. 2024 Feb-Mar;42(4):1999-2012. doi: 10.1080/07391102.2023.2206287. Epub 2023 May 2.

Abstract

With the advent of severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2) outbreak, efforts are still in progress to find out a functional cure for the infection. Among the various protein targets, nsp16 capping protein is one of the vital targets for drug development as it protects the virus against the host cell nucleases and evading innate immunity. The nsp16 protein forms a heterodimer with a co-factor nsp10 and triggers 2'-O-methyltransferase activity which catalyzes the conversion of S-adenosyl methionine into S-adenosyl homocysteine. The free methyl group is transferred to the 2'-O position on ribose sugar at the 5' end of mRNA to form the cap-1 structure which is essential for replication of the virus and evading the innate immunity of the host. In this study, we identify a potential lead natural bioactive compound against nsp16 protein by systematic cheminformatic analysis of more than 144k natural compounds. Virtual screening, molecular docking interactions, ADMET profiling, molecular dynamics (MD) simulations, molecular mechanics-generalized born surface area (MM-GBSA), free energy analysis and density functional theory analysis were used to discover the potential lead compound. Our investigation revealed that ZINC8952607 (methyl-[(6-methyl-2,3,4,9-tetrahydro-1H-carbazol-1-yl)aminomethyl]BLAHone) has the greatest binding affinity and best pharmacokinetic parameters due to presence of carbazol and BLAHone (biaryl moiety). Further, time-dependent MD simulation analysis substantiates the stability and rigidness of nsp16 protein even after interaction with the lead compound. We believe that the compound ZINC8952607 might establish as a novel natural drug candidate against CoVID-19 infection.Communicated by Ramaswamy H. Sarma.

摘要

随着严重急性呼吸综合征冠状病毒2(SARS-CoV-2)疫情的爆发,人们仍在努力寻找针对该感染的有效治疗方法。在各种蛋白质靶点中,nsp16加帽蛋白是药物开发的重要靶点之一,因为它能保护病毒免受宿主细胞核酸酶的攻击并逃避先天免疫。nsp16蛋白与辅因子nsp10形成异二聚体,并触发2'-O-甲基转移酶活性,该活性催化S-腺苷甲硫氨酸转化为S-腺苷同型半胱氨酸。游离甲基被转移到mRNA 5'端核糖糖的2'-O位置,形成帽-1结构,这对病毒复制和逃避宿主先天免疫至关重要。在本研究中,我们通过对超过14.4万种天然化合物进行系统的化学信息学分析,确定了一种针对nsp16蛋白的潜在先导天然生物活性化合物。使用虚拟筛选、分子对接相互作用、ADMET分析、分子动力学(MD)模拟、分子力学-广义Born表面积(MM-GBSA)、自由能分析和密度泛函理论分析来发现潜在的先导化合物。我们的研究表明,由于咔唑和BLAHone(联芳基部分)的存在,ZINC8952607(甲基-[(6-甲基-2,3,4,9-四氢-1H-咔唑-1-基)氨基甲基]BLAHone)具有最大的结合亲和力和最佳的药代动力学参数。此外,时间依赖性MD模拟分析证实了nsp16蛋白与先导化合物相互作用后仍具有稳定性和刚性。我们相信,化合物ZINC8952607可能成为一种针对新冠病毒感染的新型天然药物候选物。由拉马斯瓦米·H·萨尔马传达。

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