Journal article
Serine-threonine phosphoregulation by PknB and Stp contributes to quiescence and antibiotic tolerance in Staphylococcus aureus
M Huemer, SM Shambat, S Hertegonne, J Bergada-Pijuan, CC Chang, S Pereira, A Gomez-Mejia, L Van Gestel, J Bar, C Vulin, S Pfammatter, TP Stinear, IR Monk, J Dworkin, AS Zinkernagel
Science Signaling | Published : 2023
Abstract
Staphylococcus aureus can cause infections that are often chronic and difficult to treat, even when the bacteria are not antibiotic resistant because most antibiotics act only on metabolically active cells. Subpopulations of persister cells are metabolically quiescent, a state associated with delayed growth, reduced protein synthesis, and increased tolerance to antibiotics. Serine-threonine kinases and phosphatases similar to those found in eukaryotes can fine-tune essential bacterial cellular processes, such as metabolism and stress signaling. We found that acid stress-mimicking conditions that S. aureus experiences in host tissues delayed growth, globally altered the serine and threonine p..
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Awarded by Swiss National Science Foundation (SNSF)
Awarded by Swedish Society for Medical Research Foundation
Awarded by Swiss National Science Foundation (SNF)
Funding Acknowledgements
This work was funded by the Swiss National Science Foundation (SNSF) project grant 31003A_176252 and 310030_204343 (to A.S.Z.), the Uniscientia Foundation grant (to A.S.Z. and S.M.S.), and the Swedish Society for Medical Research Foundation grant P17-0179 (to S.M.S.).