Darnowski Michael G, Lanosky Taylor D, Labana Puneet, Brazeau-Henrie Jordan T, Calvert Nicholas D, Dornan Mark H, Natola Claudia, Paquette André R, Shuhendler Adam J, Boddy Christopher N
Department of Chemistry and Biomolecular Sciences, University of Ottawa Ottawa ON K1N 6N5 Canada cboddy!uottawa.ca.
RSC Med Chem. 2022 Feb 14;13(4):436-444. doi: 10.1039/d1md00355k. eCollection 2022 Apr 20.
Antibiotics with fundamentally new mechanisms of action such as the armeniaspirols, which target the ATP-dependent proteases ClpXP and ClpYQ, must be developed to combat antimicrobial resistance. While the mechanism of action of armeniaspirol against Gram-positive bacteria is understood, little is known about the structure-activity relationship for its antibiotic activity. Based on the preliminary data showing that modifications of armeniaspirol's -methyl group increased antibiotic potency, we probed the structure-activity relationship of -alkyl armeniaspirol derivatives. A series of focused derivatives were synthesized and evaluated for antibiotic activity against clinically relevant pathogens including methicillin-resistant and vancomycin-resistant . Replacement of the -methyl with -hexyl, various -benzyl, and -phenethyl substituents led to substantial increases in antibiotic activity and potency for inhibition of both ClpYQ and ClpXP. Docking studies identified binding models for ClpXP and ClpYQ that were consistent with the inhibition data. This work confirms the role of ClpXP and ClpYQ in the mechanism of action of armeniaspirol and provides important lead compounds for further antibiotic development.
必须研发具有全新作用机制的抗生素,如靶向ATP依赖性蛋白酶ClpXP和ClpYQ的亚美尼亚螺旋醇,以对抗抗菌药物耐药性。虽然亚美尼亚螺旋醇对革兰氏阳性菌的作用机制已为人所知,但其抗生素活性的构效关系却知之甚少。基于初步数据显示,亚美尼亚螺旋醇的α-甲基修饰可提高抗生素效力,我们探究了α-烷基亚美尼亚螺旋醇衍生物的构效关系。合成了一系列有针对性的衍生物,并评估了它们对包括耐甲氧西林和耐万古霉素在内的临床相关病原体的抗生素活性。用α-己基、各种α-苄基和α-苯乙基取代基取代α-甲基,导致抗生素活性以及对ClpYQ和ClpXP抑制效力大幅增加。对接研究确定了与抑制数据一致的ClpXP和ClpYQ的结合模型。这项工作证实了ClpXP和ClpYQ在亚美尼亚螺旋醇作用机制中的作用,并为进一步的抗生素研发提供了重要的先导化合物。