首页> 外文期刊>Annals of Clinical Microbiology and Antimicrobials >Ginger ( Zingiber officinale ) phytochemicals—gingerenone-A and shogaol inhibit SaHPPK: molecular docking, molecular dynamics simulations and in vitro approaches
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Ginger ( Zingiber officinale ) phytochemicals—gingerenone-A and shogaol inhibit SaHPPK: molecular docking, molecular dynamics simulations and in vitro approaches

机译:生姜(Zingiber officinale)植物化学物质—姜黄酮-A和shogaol抑制SaHPPK:分子对接,分子动力学模拟和体外方法

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Antibiotic resistance is a defense mechanism, harbored by pathogens to survive under unfavorable conditions. Among several antibiotic resistant microbial consortium, Staphylococcus aureus is one of the most havoc microorganisms. Staphylococcus aureus encodes a unique enzyme 6-hydroxymethyl-7,8-dihydropterin pyrophosphokinase (SaHPPK), against which, none of existing antibiotics have been reported. Computational approaches have been instrumental in designing and discovering new drugs for several diseases. The present study highlights the impact of ginger phytochemicals on Staphylococcus aureus SaHPPK. Herein, we have retrieved eight ginger phytochemicals from published literature and investigated their inhibitory interactions with SaHPPK. To authenticate our work, the investigation proceeds considering the known antibiotics alongside the phytochemicals. Molecular docking was performed employing GOLD and CDOCKER. The compounds with the highest dock score from both the docking programmes were tested for their inhibitory capability in vitro. The binding conformations that were seated within the binding pocket showing strong interactions with the active sites residues rendered by highest dock score were forwarded towards the molecular dynamic (MD) simulation analysis. Based on molecular dock scores, molecular interaction with catalytic active residues and MD simulations studies, two ginger phytochemicals, gingerenone-A and shogaol have been proposed as candidate inhibitors against Staphylococcus aureus. They have demonstrated higher dock scores than the known antibiotics and have represented interactions with the key residues within the active site. Furthermore, these compounds have rendered considerable inhibitory activity when tested in vitro. Additionally, their superiority was corroborated by stable MD results conducted for 100?ns employing GROMACS package. Finally, we suggest that gingerenone-A and shogaol may either be potential SaHPPK inhibitors or can be used as fundamental platforms for novel SaHPPK inhibitor development.
机译:抗生素耐药性是病原体在不利条件下生存的一种防御机制。在几个对抗生素有抗药性的微生物联盟中,金黄色葡萄球菌是最具破坏性的微生物之一。金黄色葡萄球菌编码独特的酶6-羟甲基-7,8-二氢蝶呤焦磷酸激酶(SaHPPK),目前尚无针对这种酶的报道。计算方法已经在设计和发现几种疾病的新药中发挥了作用。本研究强调了生姜化学物质对金黄色葡萄球菌SaHPPK的影响。本文中,我们从公开的文献中检索了八种生姜化学物质,并研究了它们与SaHPPK的抑制作用。为了验证我们的工作,调查工作在考虑已知抗生素和植物化学物质的同时进行。使用GOLD和CDOCKER进行分子对接。测试了两个对接程序中对接得分最高的化合物的体外抑制能力。坐落在结合袋中的结合构象显示出与通过最高对接得分得到的活性位点残基之间的强相互作用,从而被推向分子动力学(MD)模拟分析。基于分子对接分数,与催化活性残基的分子相互作用和MD模拟研究,已提出了两种生姜植物化学物质,姜烯酮A和shogaol作为金黄色葡萄球菌的候选抑制剂。他们已经证明了比已知抗生素更高的对接分数,并且代表了与活性位点内关键残基的相互作用。此外,当在体外测试时,这些化合物具有相当大的抑制活性。此外,采用GROMACS封装对100µns进行的稳定MD结果证实了它们的优越性。最后,我们建议姜烯酮-A和Shogaol可能是潜在的SaHPPK抑制剂,或者可以用作开发新型SaHPPK抑制剂的基本平台。

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