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基于结构的虚拟筛选和天然抗生物膜化合物对 SagS 反应调节剂/传感器激酶的分子动力学研究。

Structure based virtual screening and molecular dynamics of natural anti-biofilm compounds against SagS response regulator/sensor kinase in .

机构信息

Department of Biotechnology, NIPER-Ahmedabad, Gandhinagar, India.

Department of Biotechnology, Sant Gahira Guru University, Ambikapur, India.

出版信息

J Biomol Struct Dyn. 2023 Aug-Sep;41(13):6011-6026. doi: 10.1080/07391102.2022.2100482. Epub 2022 Jul 22.

DOI:10.1080/07391102.2022.2100482
PMID:35869653
Abstract

SagS sensor regulator plays a vital role in biofilm development of which subsequently makes the cells more tolerant to various antimicrobials. The multidrug resistance (MDR) issue has risen substantially in recent years and is considered a global threat. Therefore, alternative compounds should be unearthed immediately to address the issues related to drug resistance for which SagS could be a candidate. The present study is an attempt to screen natural anti-biofilm compounds as the potent inhibitors of SagS. Twenty natural anti-biofilm/quorum sensing inhibiting compounds were retrieved from various literatures with significant inhibitory effects against biofilm from experiments which were screened using various pharmacokinetic parameters. The screened and three standard drugs were docked against SagS-HisKA using AutoDock 4.2 tool, which were further analysed by MD simulations to understand the binding mode of compounds and dynamic behaviour of the complexes. Two potential anti-biofilm natural compounds, pinocembrin with binding affinity (-7.19 kcal/mol), vestitol (-7.18 kcal/mol) and the standard drug ceftazidime (-8.89 kcal/mol) were selected based on filtered parameters and better binding affinity. The trajectory analysis of MD simulations reflected Pinocembrin in stabilizing the system compared to ceftazidime. The existing reports state that the natural products represent promising source of therapy with least or almost nil adverse effect compared to synthetic drugs which is well collated with our . This investigation can save both time and cost required for and analysis for designing of a novel anti-biofilm agent against biofilm-associated infections.Communicated by Ramaswamy H. Sarma.

摘要

SagS 传感器调节剂在生物膜发育中起着至关重要的作用,这使得细胞对各种抗菌药物更具耐受性。近年来,多药耐药性(MDR)问题大幅上升,被认为是一个全球性威胁。因此,应立即挖掘替代化合物来解决与耐药性相关的问题,而 SagS 可能是一种候选药物。本研究试图筛选天然抗生物膜化合物作为 SagS 的有效抑制剂。从各种文献中检索到 20 种天然抗生物膜/群体感应抑制化合物,这些化合物在实验中对生物膜具有显著的抑制作用,通过各种药代动力学参数进行筛选。筛选出的化合物和三种标准药物与 SagS-HisKA 一起使用 AutoDock 4.2 工具对接,进一步通过 MD 模拟进行分析,以了解化合物的结合模式和复合物的动态行为。基于过滤参数和更好的结合亲和力,选择了两种有潜力的天然抗生物膜化合物,白杨素(-7.19 kcal/mol)和缬草素(-7.18 kcal/mol)以及标准药物头孢他啶(-8.89 kcal/mol)。MD 模拟的轨迹分析反映出白杨素比头孢他啶更能稳定系统。现有报告表明,与合成药物相比,天然产物代表着具有治疗潜力的有希望的来源,几乎没有或几乎没有不良反应,这与我们的研究结果相符。这项研究可以节省设计新型抗生物膜剂对抗生物膜相关感染所需的时间和成本。

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