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首页> 外文期刊>Journal of chemical information and modeling >Fragment Molecular Orbital Based Interaction Analyses on COVID-19 Main Protease - Inhibitor N3 Complex (PDB ID: 6LU7)
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Fragment Molecular Orbital Based Interaction Analyses on COVID-19 Main Protease - Inhibitor N3 Complex (PDB ID: 6LU7)

机译:Covid-19主要蛋白酶 - 抑制剂N3复合物(PDB ID:6LU7)的片段分子轨道基于基于基于蛋白质的相互作用分析

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摘要

The worldwide spread of COVID-19 (new coronavirus found in 2019) is an emergent issue to be tackled. In fact, a great amount of works in various fields have been made in a rather short period. Here, we report a fragment molecular orbital (FMO) based interaction analysis on a complex between the SARS-CoV-2 main protease (Mpro) and its peptide-like inhibitor N3 (PDB ID: 6LU7). The target inhibitor molecule was segmented into five fragments in order to capture site specific interactions with amino acid residues of the protease. The interaction energies were decomposed into several contributions, and then the characteristics of hydrogen bonding and dispersion stabilization were made clear. Furthermore, the hydration effect was incorporated by the Poisson-Boltzmann (PB) scheme. From the present FMO study, His41, His163, His164, and Glu166 were found to be the most important amino acid residues of Mpro in interacting with the inhibitor, mainly due to hydrogen bonding. A guideline for optimizations of the inhibitor molecule was suggested as well based on the FMO analysis.
机译:Covid-19的全世界传播(2019年发现的新冠状病毒)是一个亟待解决的问题。事实上,在一个相当短的时期,在各种领域的大量作品已经在相当短的时间内进行。在这里,我们在SARS-COV-2主要蛋白酶(MPRO)与其肽样抑制剂N3(PDB ID:6LU7)之间的复合物上报告基于碎片的分子轨道(FMO)的相互作用分析。将靶抑制剂分子分段为5片段,以捕获与蛋白酶的氨基酸残基的位点特异性相互作用。将相互作用能量分解成几种贡献,然后清除氢键和分散稳定的特性。此外,通过Poisson-Boltzmann(Pb)方案并入水化效果。从目前的FMO研究,发现HIS41,HIS163,HIS164和GLU166是MPRO与抑制剂相互作用的最重要的氨基酸残基,主要是由于氢键合。还提出了抑制剂分子优化的指导,并基于FMO分析。

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