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Quorum quenching quandary: resistance to antivirulence compounds

机译:法定量猝灭:对抗毒化合物的抗性

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摘要

Quorum sensing (QS) is the regulation of gene expression in response to the concentration of small signal molecules, and its inactivation has been suggested to have great potential to attenuate microbial virulence. It is assumed that unlike antimicrobials, inhibition of QS should cause less Darwinian selection pressure for bacterial resistance. Using the opportunistic pathogen Pseudomonas aeruginosa, we demonstrate here that bacterial resistance arises rapidly to the best-characterized compound that inhibits QS (brominated furanone C-30) due to mutations that increase the efflux of C-30. Critically, the C-30-resistant mutant mexR was more pathogenic to Caenorhabditis elegans in the presence of C-30, and the same mutation arises in bacteria responsible for chronic cystic fibrosis infections. Therefore, bacteria may evolve resistance to many new pharmaceuticals thought impervious to resistance.
机译:群体感应(QS)是响应于小信号分子浓度而调节基因表达的机制,已证明其失活具有减弱微生物毒力的巨大潜力。据推测,与抗微生物药不同,抑制QS应当引起较少的达尔文氏菌对细菌耐药性的选择压力。使用机会性病原体铜绿假单胞菌,我们在这里证明对细菌的耐药性迅速上升,因为它具有抑制QS的最佳特性(溴化呋喃酮C-30),这是由于突变导致C-30外排增加。至关重要的是,在存在C-30的情况下,耐C-30的突变体mexR对秀丽隐杆线虫更具致病性,并且在引起慢性囊性纤维化感染的细菌中也出现了相同的突变。因此,细菌可能对许多新药产生抗药性,而这些新药不能抵抗。

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