作为法定人数感应调控的毒力因子和生物膜形成的新型抑制剂的桃金娘叶化合物:体外和硅学研究

IF 5.9 Q1 MICROBIOLOGY
Nadine Khadraoui , Rym Essid , Bilel Damergi , Nadia Fares , Dorra Gharbi , Abel Mateo Forero , Jaime Rodríguez , Ghassen Abid , Erika-Beáta Kerekes , Ferid Limam , Carlos Jiménez , Olfa Tabbene
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引用次数: 0

摘要

革兰氏阴性细菌铜绿假单胞菌的抗生素耐药性及其通过法定量感应(QS)机制形成生物膜的能力是控制由这种病原体引起的感染所面临的重要挑战。桃金娘(Myrtus communis)提取物对绿脓杆菌(Chromobacterium. violaceum 6267)具有很强的抗QS作用,在1/8(31.25 μg/mL)的亚MIC浓度下可抑制80%的绿脓杆菌色素的产生。此外,该提取物在半 MIC(125 μg/mL)浓度下对铜绿假单胞菌 PAO1 的毒力因子也有抑制作用,能显著减少生物膜的形成(72.02%)、蜂群活动(75%)、蛋白酶(61.83%)和脓蓝蛋白(97%)的产生。活性组分还下调了铜绿微囊藻 PAO1 菌株中参与生物膜形成和 QS 的特定调控基因的表达。这些基因包括自诱导合成酶基因(lasI 和 rhlI)、参与表达其相应受体的基因(lasR 和 rhlR)以及 pqsA 基因。通过 HPLC/UV/MS 和 NMR 对活性部分的分析,确定了三种酚类化合物,即 3,5-di-O-galloylquinic acid、myricetin 3-O-α-l-rhamnopyranoside (myricitrin)和 myricetin 3-O-(2″-O-galloyl)-ß-d-galactopyranoside 。硅学研究表明,3,5-di-O-galloylquinic acid 与 C. violaceum 的 QS 受体 CviR 蛋白(3QP8)活性位点的亲和力最高,亲和力分数为 -9.20 kcal/mol。此外,杨梅素 3-O-α-l-rhamnopyranoside (杨梅素)和杨梅素 3-O-(2″-O-galloyl)-ß-dalactopyranoside 与 3QP8 的相互作用程度较低。总之,这项研究为从毛果芸香叶中发现抗革兰氏阴性病原体的新 QS 抑制剂做出了重大贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Myrtus communis leaf compounds as novel inhibitors of quorum sensing-regulated virulence factors and biofilm formation: In vitro and in silico investigations

Myrtus communis leaf compounds as novel inhibitors of quorum sensing-regulated virulence factors and biofilm formation: In vitro and in silico investigations

Antibiotic resistance of the Gram-negative bacterium Pseudomonas aeruginosa and its ability to form biofilm through the Quorum Sensing (QS) mechanism are important challenges in the control of infections caused by this pathogen. The extract of Myrtus communis (myrtle) showed strong anti-QS effect on Chromobacterium. violaceum 6267 by inhibiting 80 % of the production of violacein pigment at a sub-MIC concentration of 1/8 (31.25 μg/mL). In addition, the extract exhibited an inhibitory effect on virulence factors of P. aeruginosa PAO1 at half MIC (125 μg/mL), significantly reducing the formation of biofilms (72.02 %), the swarming activity (75 %), and the production of protease (61.83 %) and pyocyanin (97 %). The active fraction also downregulated the expression of selected regulatory genes involved in the biofilm formation and QS in the P. aeruginosa PAO1 strain. These genes included the autoinducer synthase genes (lasI and rhlI), the genes involved in the expression of their corresponding receptors (lasR and rhlR), and the pqsA genes. The analysis of the active fraction by HPLC/UV/MS and NMR allowed the identification of three phenolic compounds, 3,5-di-O-galloylquinic acid, myricetin 3-O-α-l-rhamnopyranoside (myricitrin), and myricetin 3-O-(2″-O-galloyl)-ß-d-galactopyranoside. In silico studies showed that 3,5-di-O-galloylquinic acid, with an affinity score of −9.20 kcal/mol, had the highest affinity to the active site of the CviR protein (3QP8), a QS receptor from C. violaceum. Additionally, myricetin 3-O-α-l-rhamnopyranoside (myricitrin) and myricetin 3-O-(2″-O-galloyl)-ß-d-galactopyranoside interact to a lesser extent with 3QP8. In conclusion, this study contributed significantly to the discovery of new QS inhibitors from M. communis leaves against resistant Gram-negative pathogens.

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Biofilm
Biofilm MICROBIOLOGY-
CiteScore
7.50
自引率
1.50%
发文量
30
审稿时长
57 days
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