Reen F Jerry, Shanahan Rachel, Cano Rafael, O'Gara Fergal, McGlacken Gerard P
BIOMERIT Research Centre, Department of Microbiology, University College Cork, Ireland.
Org Biomol Chem. 2015 May 21;13(19):5537-41. doi: 10.1039/c5ob00315f.
The sharp rise in antimicrobial resistance has been matched by a decline in the identification and clinical introduction of new classes of drugs to target microbial infections. Thus new approaches are being sought to counter the pending threat of a post-antibiotic era. In that context, the use of non-growth limiting small molecules, that target virulence behaviour in pathogens, has emerged as a solution with real clinical potential. We have previously shown that two signal molecules (HHQ and PQS) from the nosocomial pathogen Pseudomonas aeruginosa have modulatory activity towards other microorganisms. This current study involves the synthesis and evaluation of analogues of HHQ towards swarming and biofilm virulence behaviour in Bacillus atrophaeus, a soil bacterium and co-inhibitor with P. aeruginosa. Compounds with altered C6-C8 positions on the anthranilate-derived ring of HHQ, display a surprising degree of biological specificity, with certain candidates displaying complete motility inhibition. In contrast, anti-biofilm activity of the parent molecule was completely lost upon alteration at any position indicating a remarkable degree of specificity and delineation of phenotype.
抗菌耐药性的急剧上升与针对微生物感染的新型药物的鉴定和临床应用的减少相匹配。因此,人们正在寻求新的方法来应对抗生素后时代迫在眉睫的威胁。在这种背景下,使用针对病原体毒力行为的非生长限制小分子已成为一种具有实际临床潜力的解决方案。我们之前已经表明,医院病原体铜绿假单胞菌的两种信号分子(HHQ和PQS)对其他微生物具有调节活性。本研究涉及合成和评估HHQ类似物对萎缩芽孢杆菌(一种土壤细菌,也是铜绿假单胞菌的共抑制剂)的群体运动和生物膜毒力行为的影响。在HHQ的邻氨基苯甲酸衍生环上具有改变的C6-C8位置的化合物表现出惊人程度的生物学特异性,某些候选物表现出完全的运动抑制。相比之下,母体分子的抗生物膜活性在任何位置发生改变时都会完全丧失,这表明表型具有显著的特异性和区分度。