VraSR and Virulence Trait Modulation during Daptomycin Resistance in Methicillin-Resistant Staphylococcus aureus

Agustina Taglialegna1, Maria C Varela1, Roberto R Rosato2

  • 1Department of Pathology and Genomic Medicine, Center for Molecular and Translational Human Infectious Diseases Research, Houston Methodist Research Institute, Houston, Texas, USA.

Msphere
|February 15, 2019
PubMed

Insights

Daptomycin resistance in MRSA is linked to reduced virulence. The VraSR system regulates virulence factors, impacting MRSA

Area of Science:

  • Microbiology
  • Infectious Diseases
  • Antimicrobial Resistance

Background:

  • Methicillin-resistant Staphylococcus aureus (MRSA) poses a significant health threat.
  • Daptomycin (DAP) is a key antibiotic for treating MRSA infections.
  • DAP resistance can emerge through genetic mutations affecting bacterial cell membranes and walls.

Purpose of the Study:

  • To investigate the relationship between daptomycin resistance and virulence in MRSA.
  • To explore the role of the VraSR system in daptomycin resistance and MRSA pathogenesis.

Main Methods:

  • Comparative analysis of daptomycin-susceptible (DAP s) and daptomycin-resistant (DAP r) MRSA clinical isolates.
  • Differential gene-transcription profiling to assess expression of virulence factors.
  • Functional genetic analysis, including gene inactivation and complementation, to determine regulatory roles.

Main Results:

  • Daptomycin-resistant MRSA strains with upregulated VraSR exhibited reduced virulence compared to susceptible strains.
  • Daptomycin resistance was associated with decreased expression of the agr two-component system and suppressed hemolysis.
  • VraSR was identified as a transcriptional regulator of agrA, impacting bacterial adherence and colonization.

Conclusions:

  • Daptomycin resistance in MRSA is interconnected with decreased virulence.
  • The VraSR system plays a crucial regulatory role in modulating virulence determinants during daptomycin resistance development.
  • These findings highlight coordinated interactions that may enhance the persistence of daptomycin-resistant MRSA strains.

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