Rationally designed foldameric adjuvants enhance antibiotic efficacy via promoting membrane hyperpolarization

合理设计的折叠佐剂通过促进膜超极化增强抗生素功效

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作者:Kaushik Nath Bhaumik, Anasztázia Hetényi, Gábor Olajos, Ana Martins, Réka Spohn, Lukács Németh, Balázs Jojart, Petra Szili, Anett Dunai, Pramod K Jangir, Lejla Daruka, Imre Földesi, Diána Kata, Csaba Pál, Tamás A Martinek

Abstract

The negative membrane potential of bacterial cells influences crucial cellular processes. Inspired by the molecular scaffold of the antimicrobial peptide PGLa, we have developed antimicrobial foldamers with a computer-guided design strategy. The novel PGLa analogues induce sustained membrane hyperpolarization. When co-administered as an adjuvant, the resulting compounds - PGLb1 and PGLb2 - have substantially reduced the level of antibiotic resistance of multi-drug resistant Escherichia coli, Klebsiella pneumoniae and Shigella flexneri clinical isolates. The observed antibiotic potentiation was mediated by hyperpolarization of the bacterial membrane caused by the alteration of cellular ion transport. Specifically, PGLb1 and PGLb2 are selective ionophores that enhance the Goldman-Hodgkin-Katz potential across the bacterial membrane. These findings indicate that manipulating bacterial membrane electrophysiology could be a valuable tool to overcome antimicrobial resistance.

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