Abstract
Given the widespread conservation of two-component systems (TCSs) in bacteria and their pivotal role in regulating metabolic and virulence pathways, they present a compelling target for anti-microbial agents, especially in the face of rising multi-drug-resistant infections. Harnessing TCSs therapeutically necessitates a profound understanding of their evolutionary trajectory in signal transduction, as this underlies their unique or shared virulence regulatory pathways. Such insights are critical for effectively targeting TCS components, ensuring an optimized impact on bacterial virulence, and mitigating the risk of resistance emergence via the evolution of alternative pathways. Our research offers an in-depth exploration of virulence determinants controlled by TCSs in S. aureus , shedding light on the evolving specificity determinants that orchestrate interactions between their cognate pairs.
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CITATION STYLE
Ahator, S. D., Wenzl, K., Hegstad, K., Lentz, C. S., & Johannessen, M. (2024). Comprehensive virulence profiling and evolutionary analysis of specificity determinants in Staphylococcus aureus two-component systems. MSystems, 9(4). https://doi.org/10.1128/msystems.00130-24
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