枚举橄榄衍生木脂素、松脂醇对近期基于结构的药物设计、DFT、分子动力学模拟和MMGBSA研究的Omicron变异刺突蛋白的活性。

IF 2 3区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Journal of Applied Genetics Pub Date : 2024-05-01 Epub Date: 2023-11-29 DOI:10.1007/s13353-023-00802-7
Samia S Alkhalil, Shoruq E Alosaimi, Manal E Alosaimi, Zuhair M Mohammedsaleh, Waleed Al Abdulmonem, Abdullah Saleh Alkhamiss, Ruqaih S Alghsham, Abdullah S M Aljohani, Abdullah F Shater, Fayez M Saleh, Hailah M Almohaimeed, Mona H Soliman
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引用次数: 0

摘要

2019年12月,新型冠状病毒病(COVID-19)首次在中国武汉被发现。由于病毒传播迅速,它很快成为全球担忧。冠状病毒科包含SARS-CoV-2和之前的病毒(即MERS-CoV和SARS-CoV)。最近的消息来源显示,在过去两年中,COVID-19病毒在全球范围内感染了344,710,576人,造成约5,598,511人死亡。B.1.1.529菌株,后来被称为“Omicron”,于2021年11月24日被命名为关注变种。SARS-CoV-2病毒经历了一个从未发生过的永无止境的变化链。因此,它有许多不同的特征。这些变化大多发生在抗体结合的刺突蛋白上。由于这些变化,欧米克隆型具有很强的传染性,很容易遗传下去。已经进行了很多研究,试图找出COVID-19菌株竞争中的这一新挑战,但仍有很多需要解释的地方。本研究的重点是虚拟筛选、对接和分子动力学分析;我们的目标是根据SARS-CoV-2变体Omicron抑制非结构蛋白的能力来确定其治疗候选者。我们研究了从OliveNet™数据库获得的大量药物分子数据库的属性预测。没有表现出足够的胃肠道吸收和利平斯基试验失败的化合物不被认为是进一步的研究。过滤后的化合物与我们的主要目标SARS-CoV-2 Omicron刺突蛋白偶联。我们重点研究了SARS-CoV-2组微粒刺突蛋白和过滤有效的橄榄化合物。松脂醇,最有可能的候选者,结合最好(- 8.5 kcal/mol)。松脂醇与活性位点的强相互作用使复合物的动态结构更具弹性。MD模拟解释了蛋白质-配体复合物的稳定性和功能。松脂醇可能是一种有前景的SARS-CoV-2组微粒刺突蛋白受体先导药物,进一步的研究可能有助于科学界。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Enumeration of olive derived lignan, pinoresinol for activity against recent Omicron variant spike protein for structure-based drug design, DFT, molecular dynamics simulations, and MMGBSA studies.

The coronavirus disease 2019 (COVID-19) was first found in Wuhan, China, in December 2019. Because the virus spreads quickly, it quickly became a global worry. Coronaviridae is the family that contains both SARS-CoV-2 and the viruses that came before (i.e., MERS-CoV and SARS-CoV). Recent sources portray that the COVID-19 virus has affected 344,710,576 people worldwide and killed about 5,598,511 people in the last 2 years. The B.1.1.529 strain, later called "Omicron," was named a Variant of Concern on November 24, 2021. The SARS-CoV-2 virus has gone through a never-ending chain of changes that have never happened before. As a result, it has many different traits. Most of these changes have occurred in the spike protein, where antibodies bind. Because of these changes, the Omicron type is very contagious and easy to pass on. There have been a lot of studies done to try to figure out this new challenge in the COVID-19 strains race, but there is still a lot that needs to be explained. This study focuses on virtual screening, docking, and molecular dynamic analysis; we aimed to identify therapeutic candidates for the SARS-CoV-2 variant Omicron based on their ability to inhibit non-structural proteins. We investigate the prediction of the properties of a substantial database of drug molecules obtained from the OliveNet™ database. Compounds that did not exhibit adequate gastrointestinal absorption and failed the Lipinski test are not considered for further research. The filtered compounds were coupled with our primary target, SARS-CoV-2 Omicron spike protein. We focused on SARS-CoV-2 Omicron spike protein and filtering potent olive compounds. Pinoresinol, the most likely candidate, is bound best (- 8.5 kcal/mol). Pinoresinol's strong interaction with the active site made the complex's dynamic structure more resilient. MD simulations explain the protein-ligand complex's stability and function. Pinoresinol may be a promising SARS-CoV-2 Omicron spike protein receptor lead drug, and additional research may assist the scientific community.

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来源期刊
Journal of Applied Genetics
Journal of Applied Genetics 生物-生物工程与应用微生物
CiteScore
4.30
自引率
4.20%
发文量
62
审稿时长
6-12 weeks
期刊介绍: The Journal of Applied Genetics is an international journal on genetics and genomics. It publishes peer-reviewed original papers, short communications (including case reports) and review articles focused on the research of applicative aspects of plant, human, animal and microbial genetics and genomics.
期刊最新文献
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