Laborda Pablo, Alcalde-Rico Manuel, Chini Andrea, Martínez José L, Hernando-Amado Sara
Centro Nacional de Biotecnología, CSIC, Darwin 3, Madrid, 28049, Spain.
Grupo de Resistencia Antimicrobiana en Bacterias Patógenas y Ambientales (GRABPA), Instituto de Biología, Facultad de Ciencias, Pontificia Universidad Católica de Valparaíso, Valparaíso, Chile.
Environ Microbiol. 2021 Dec;23(12):7396-7411. doi: 10.1111/1462-2920.15511. Epub 2021 Apr 17.
Multidrug efflux pumps are ancient elements encoded in every genome, from bacteria to humans. In bacteria, in addition to antibiotics, efflux pumps extrude a wide range of substrates, including quorum sensing signals, bacterial metabolites, or plant-produced compounds. This indicates that their original functions may differ from their recently acquired role in the extrusion of antibiotics during human infection. Concerning plant-produced compounds, some of them are substrates and inducers of the same efflux pump, suggesting a coordinated plant/bacteria coevolution. Herein we analyse the ability of 1243 compounds from a Natural Product-Like library to induce the expression of P. aeruginosa mexCD-oprJ or mexAB-oprM efflux pumps' encoding genes. We further characterized natural-like compounds that do not trigger antibiotic resistance in P. aeruginosa and that act as virulence inhibitors, choosing those that were not only inducers but substrates of the same efflux pump. Four compounds impair swarming motility, exotoxin secretion through the Type 3 Secretion System (T3SS) and the ability to kill Caenorhabditis elegans, which might be explained by the downregulation of genes encoding flagellum and T3SS. Our results emphasize the possibility of discovering new anti-virulence drugs by screening natural or natural-like libraries for compounds that behave as both, inducers and substrates of efflux pumps.
多药外排泵是从细菌到人类的每个基因组中编码的古老元件。在细菌中,除抗生素外,外排泵还能排出多种底物,包括群体感应信号、细菌代谢产物或植物产生的化合物。这表明它们的原始功能可能与最近在人类感染期间获得的抗生素外排作用不同。关于植物产生的化合物,其中一些是同一外排泵的底物和诱导剂,这表明植物/细菌存在协同进化。在此,我们分析了来自类天然产物库的1243种化合物诱导铜绿假单胞菌mexCD-oprJ或mexAB-oprM外排泵编码基因表达的能力。我们进一步对在铜绿假单胞菌中不会引发抗生素耐药性且作为毒力抑制剂的类天然化合物进行了表征,选择那些不仅是诱导剂而且是同一外排泵底物的化合物。四种化合物损害群体游动性、通过3型分泌系统(T3SS)分泌外毒素以及杀死秀丽隐杆线虫的能力,这可能是由编码鞭毛和T3SS的基因下调所解释的。我们的结果强调了通过筛选天然或类天然化合物库以寻找同时作为外排泵诱导剂和底物的化合物来发现新的抗毒力药物的可能性。