铜绿假单胞菌
调节器
毒力
病菌
多药耐受
微生物学
生物
抗生素
抗生素耐药性
细菌
生物膜
基因
生物化学
遗传学
细菌蛋白
作者
Damien Maura,Steffen L. Drees,Arunava Bandyopadhaya,Tomoe Kitao,Michele Negri,Melissa Starkey,Biliana Lesic,Sylvain Milot,Eric Dézièl,Robert Zahler,Mike Pucci,Antonio Felici,Susanne Fetzner,François Lépine,Laurence G. Rahme
标识
DOI:10.1021/acschembio.6b01139
摘要
Pseudomonas aeruginosa is an important nosocomial pathogen that is frequently recalcitrant to available antibiotics, underlining the urgent need for alternative therapeutic options against this pathogen. Targeting virulence functions is a promising alternative strategy as it is expected to generate less-selective resistance to treatment compared to antibiotics. Capitalizing on our nonligand-based benzamide-benzimidazole (BB) core structure compounds reported to efficiently block the activity of the P. aeruginosa multiple virulence factor regulator MvfR, here we report the first class of inhibitors shown to interfere with PqsBC enzyme activity, responsible for the synthesis of the MvfR activating ligands HHQ and PQS, and the first to target simultaneously MvfR and PqsBC activity. The use of these compounds reveals that inhibiting PqsBC is sufficient to block P. aeruginosa's acute virulence functions, as the synthesis of MvfR ligands is inhibited. Our results show that MvfR remains the best target of this QS pathway, as we show that antagonists of this target block both acute and persistence-related functions. The structural properties of the compounds reported in this study provide several insights that are instrumental for the design of improved MvfR regulon inhibitors against both acute and persistent P. aeruginosa infections. Moreover, the data presented offer the possibility of a polypharmacology approach of simultaneous silencing two targets in the same pathway. Such a combined antivirulence strategy holds promise in increasing therapeutic efficacy and providing alternatives in the event of a single target's resistance development.
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