将杏仁蕨的植物化学衍生生物活性化合物作为肺炎拓扑异构酶 IV 潜在抑制剂的计算研究

Ayobami Fidelix, Tomilola Akingbade, Jatin Jangra, Olutola Adeyemo, Damilola Adeniji
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摘要

导致肺炎的几种细菌对现有抗生素产生了抗药性。根据世界卫生组织的数据,肺炎克雷伯氏菌对环丙沙星的耐药性高达 79.4%,这使得肺炎等感染和一些疾病的治疗变得更加困难,甚至无法治疗。抗菌药耐药性的流行是一个全球性问题,也是人类面临的十大全球健康威胁之一。根据世界卫生组织的预测,到 2050 年,每年将有 1000 万人死于与抗生素耐药性相关的细菌感染,因此迫切需要找到一种替代方法来遏制不断出现的抗生素耐药性,而一种补充方法就是利用具有强效抗菌活性的天然化合物。我们采用结构生物信息学和理论化学技术,通过分子对接和药代动力学研究,确定了新型肺炎双球菌拓扑异构酶 IV 抑制剂。严格的分子对接发现 Arg140、Arg81、Glu55、Pro84、Met83 和 Asn51 是拓扑异构酶 IV 配体相互作用的主要氨基酸残基。与参考化合物(环丙沙星)相比,在杏仁蕨中发现的十种生物活性化合物显示出更高的结合能。对 MD 结果和结合自由能计算的总体分析表明,木犀草素和 7-O-methylwogonin 在 100ns 的 MD 模拟运行过程中显示出稳定的轨迹,具有可接受的 RMSD 值和足够高的负能量。本研究中发现的这些生物活性化合物可进一步用于体外和体内研究,以检验它们对肺炎的疗效。
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Computational study of phytochemical derived bioactive compounds of Vernonia amygdalina as a potential inhibitor of Topoisomerase IV in pneumonia
Several of the bacteria responsible for pneumonia had become resistant to available antibiotics. According to the WHO, the resistance of Klebsiella pneumonia to Ciprofloxacin is 79.4%, making infections such as pneumonia and several diseases more difficult, if not impossible to treat. The prevalence of antimicrobial resistance is a global problem and among the 10 top global health threats facing humanity. With the projection of 10 million deaths per year by 2050 due to bacterial infections associated with antibiotic resistance according to WHO, there is an urgent need to identify an alternative approach to curb the incessant antimicrobial resistance and a complementary approach is to employ the use of naturally occurring compounds with potent antibacterial activities. We employed structural bioinformatics and theoretical chemistry techniques via molecular docking, and pharmacokinetic study, to identify novel S. pneumoniae topoisomerase IV inhibitors. The stringent molecular docking identified Arg140, Arg81, Glu55, Pro84, Met83, and Asn51, as principal amino acid residues for topoisomerase IV ligand interactions. Ten of the bioactive compounds found in Vernonia amygdalina showed a higher binding energy when compared to the reference compound (Ciprofloxacin). The overall analysis of MD results and binding free energy calculations reveal that Luteolin and 7-O-methylwogonin displayed stable trajectories with acceptable RMSD values and sufficient high negative energies throughout the MD simulation run of 100ns. These identified bioactive compounds in this study can be taken further for in vitro and In vivo studies to examine their efficacy against Pneumonia.
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