Molecular Docking Approach Reveals The Potential Role Of Psidium Guajava Leaf Extract Compounds As Quorum-Sensing Inhibitors Targeting Pseudomonas Aeruginosa’s Lasr

Ayu Tri Agustin, Ahdiah Imroatul Muflihah, Imroatul Muflihah, Hartalina Mufidah, Jepri Riranto
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Abstract

Quorum-sensing LasR antagonism is evolving as a primary focus in promising new antivirulence approaches for treating bacterial infections. Pseudomonas aeruginosa’s LasR is a target receptor for developing alternative medicines in chronic wounds because it acts as an autoinducer in biofilm formation. Our research aims to predict the biofunction of Psidium guajava leaf water extract as an inhibitor of the quorum-sensing LasR of Pseudomonas aeruginosa. The 3D structures of five bioactive compounds (quercetin, gallocatechin, esculin, 3-sinapoylquinic acid, ellagic acid) and N-3-Oxo-Dodecanoyl-L-Homoserine Lactone (as positive control) were obtained from the PubChem Database. The Protein Data Bank database is used to download LasR. The active site of the LasR protein was determined using Molegro Virtual Docker 5.0. The docking simulation uses Molegro Virtual Docker 5.0 and Discovery Studio program version 21.1.1 for visualization. The results showed that the five compounds could bind to LasR at the active site and substrate binding, leading to the compound’s potential as an antibacterial for Pseudomonas aeruginosa by inhibiting the quorum-sensing receptor LasR. The 3-sinapoylquinic acid-LasR complex shows the lowest binding energy, namely -311.2 kJ/mol.
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分子对接法揭示了番石榴叶提取物化合物作为针对绿脓杆菌Lasr的法定量感应抑制剂的潜在作用
法定量感应 LasR 拮抗作用正逐渐成为治疗细菌感染的新型抗病毒方法的主要重点。铜绿假单胞菌的 LasR 是开发慢性伤口替代药物的目标受体,因为它在生物膜形成过程中起着自动诱导的作用。我们的研究旨在预测番石榴叶水提取物作为铜绿假单胞菌定量感应 LasR 抑制剂的生物功能。我们从 PubChem 数据库中获得了五种生物活性化合物(槲皮素、没食子酸、埃斯库灵、3-苷酰奎宁酸、鞣花酸)和 N-3-Oxo-Dodecanoyl-L-Homoserine Lactone(作为阳性对照)的三维结构。蛋白质数据库用于下载 LasR。利用 Molegro Virtual Docker 5.0 确定了 LasR 蛋白的活性位点。对接模拟使用 Molegro Virtual Docker 5.0 和 Discovery Studio 程序 21.1.1 版进行可视化。结果表明,这五种化合物能在活性位点和底物结合处与 LasR 结合,从而通过抑制法定量感应受体 LasR,有望成为铜绿假单胞菌的抗菌剂。3-sinapoylquinic acid-LasR 复合物的结合能最低,为-311.2 kJ/mol。
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