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PurN Is Involved in Antibiotic Tolerance and Virulence in Staphylococcus aureus
1Department of Pathogenic Biology, School of Basic Medical Sciences, Lanzhou University, No. 199, Donggang West Rd., Lanzhou 730000, China.
Abstract:
Staphylococcus aureus can cause chronic infections which are closely related to persister formation. Purine metabolism is involved in S. aureus persister formation, and purN, encoding phosphoribosylglycinamide formyltransferase, is an important gene in the purine metabolism process. In this study, we generated a ΔpurN mutant of the S. aureus Newman strain and assessed its roles in antibiotic tolerance and virulence. The ΔpurN in the late exponential phase had a significant defect in persistence to antibiotics. Complementation of the ΔpurN restored its tolerance to different antibiotics. PurN significantly affected virulence gene expression, hemolytic ability, and biofilm formation in S. aureus. Moreover, the LD50 (3.28 × 1010 CFU/mL) of the ΔpurN for BALB/c mice was significantly higher than that of the parental strain (2.81 × 109 CFU/mL). Transcriptome analysis revealed that 58 genes that were involved in purine metabolism, alanine, aspartate, glutamate metabolism, and 2-oxocarboxylic acid metabolism, etc., were downregulated, while 24 genes involved in ABC transporter and transferase activity were upregulated in ΔpurN vs. parental strain. Protein-protein interaction network showed that there was a close relationship between PurN and GltB, and SaeRS. The study demonstrated that PurN participates in the formation of the late exponential phase S. aureus persisters via GltB and regulates its virulence by activating the SaeRS two-component system.
Insights
Staphylococcus aureus purN gene deletion impairs antibiotic tolerance and virulence. PurN is crucial for forming persister cells and regulating virulence factors via GltB and SaeRS.
Area of Science:
- Microbiology
- Molecular Biology
- Infectious Diseases
Background:
- * *Staphylococcus aureus* causes chronic infections linked to persister cell formation.
- * Purine metabolism, specifically the *purN* gene, is vital for *S. aureus* persister development.
Purpose of the Study:
- * To investigate the role of the *purN* gene in *S. aureus* antibiotic tolerance and virulence.
- * To elucidate the mechanisms by which PurN influences persister formation and pathogenicity.
Main Methods:
- * Generation and characterization of a Δ*purN* mutant in the *S. aureus* Newman strain.
- * Assessment of antibiotic persistence, virulence factor production (hemolysis, biofilm), and mouse survival.
- * Transcriptome analysis and protein-protein interaction network construction.
Main Results:
- * The Δ*purN* mutant showed significantly reduced antibiotic persistence in the late exponential phase.
- * PurN deletion attenuated virulence, decreasing hemolytic activity, biofilm formation, and increasing the LD50 in mice.
- * Transcriptome analysis revealed altered expression of genes involved in purine metabolism and virulence pathways.
- * PurN interacts with GltB and regulates the SaeRS two-component system.
Conclusions:
- * PurN is essential for *S. aureus* persister cell formation in the late exponential phase.
- * PurN modulates *S. aureus* virulence through GltB and activation of the SaeRS system.
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