Bioenergetic stress potentiates antimicrobial resistance and persistence

Author:

Li B,Srivastava S,Shaikh M,Mereddy G,Garcia MR,Shah A,Ofori-Anyinam N,Chu T,Cheney N,Yang JHORCID

Abstract

ABSTRACTAntimicrobial resistance (AMR) is a global health crisis and there is an urgent need to better understand AMR mechanisms. Antibiotic treatment alters several aspects of bacterial physiology, including increased ATP utilization, carbon metabolism, and reactive oxygen species (ROS) formation. However, how the “bioenergetic stress” induced by increased ATP utilization affects treatment outcomes is unknown. Here we utilized a synthetic biology approach to study the direct effects of bioenergetic stress on antibiotic efficacy. We engineered a genetic system that constitutively hydrolyzes ATP or NADH inEscherichiacoli. We found that bioenergetic stress potentiates AMR evolution via enhanced ROS production, mutagenic break repair, and transcription-coupled repair. We also find that bioenergetic stress potentiates antimicrobial persistence via potentiated stringent response activation. We propose a unifying model that antibiotic-induced antimicrobial resistance and persistence is caused by antibiotic-induced. This has important implications for preventing or curbing the spread of AMR infections.

Publisher

Cold Spring Harbor Laboratory

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