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Quorum-sensing agr system of Staphylococcus aureus primes gene expression for protection from lethal oxidative stress

Magdalena Podkowik, Andrew I. Perault, Gregory Putzel, Andrew Pountain, Jisun Kim, Ashley L. DuMont, Erin E. Zwack, Robert J. Ulrich, Theodora K. Karagounis, Chunyi Zhou, Andreas F. Haag, Julia Shenderovich, Gregory A. Wasserman, Junbeom Kwon, John Chen, Anthony R. Richardson, Jeffrey N. Weiser, Carla R. Nowosad, Desmond S. Lun, Dane ParkerAlejandro Pironti, Xilin Zhao, Karl Drlica, Itai Yanai, Victor J. Torres, Bo Shopsin*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

The agr quorum-sensing system links Staphylococcus aureus metabolism to virulence, in part by increasing bacterial survival during exposure to lethal concentrations of H2O2, a crucial host defense against S. aureus. We now report that protection by agr surprisingly extends beyond post-exponential growth to the exit from stationary phase when the agr system is no longer turned on. Thus, agr can be considered a constitutive protective factor. Deletion of agr resulted in decreased ATP levels and growth, despite increased rates of respiration or fermentation at appropriate oxygen tensions, suggesting that Δagr cells undergo a shift towards a hyperactive metabolic state in response to diminished metabolic efficiency. As expected from increased respiratory gene expression, reactive oxygen species (ROS) accumulated more in the agr mutant than in wild-type cells, thereby explaining elevated susceptibility of Δagr strains to lethal H2O2 doses. Increased survival of wild-type agr cells during H2O2 exposure required sodA, which detoxifies superoxide. Additionally, pretreatment of S. aureus with respiration-reducing menadione protected Δagr cells from killing by H2O2. Thus, genetic deletion and pharmacologic experiments indicate that agr helps control endogenous ROS, thereby providing resilience against exogenous ROS. The long-lived ‘memory’ of agr-mediated protection, which is uncoupled from agr activation kinetics, increased hematogenous dissemination to certain tissues during sepsis in ROS-producing, wild-type mice but not ROS-deficient (Cybb−/−) mice. These results demonstrate the importance of protection that anticipates impending ROS-mediated immune attack. The ubiquity of quorum sensing suggests that it protects many bacterial species from oxidative damage.
Original languageEnglish
Article numberRP89098
Number of pages32
JournaleLife
Volume12
DOIs
Publication statusPublished - 30 Apr 2024

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