Related Experiment Video
Updated: May 28, 2026

Experimental Endocarditis Model of Methicillin Resistant Staphylococcus aureus (MRSA) in Rat
Published on: June 4, 2012
Relationship of agr expression and function with virulence and vancomycin treatment outcomes in experimental
Kati Seidl1, Liang Chen, Arnold S Bayer
1Los Angeles Biomedical Research Institute at Harbor—UCLA Medical Center, Torrance, California 90502, USA.
Abstract:
The accessory gene regulator (agr) locus has been shown to be important for virulence in several animal models of Staphylococcus aureus infection. However, the role of agr in human infections, and specifically in antibiotic treatment, is controversial. Interestingly, agr dysfunction has been associated with reduced vancomycin responses. To systematically investigate the role of agr in virulence and treatment outcome in the context of endovascular infection, 10 well-characterized vancomycin-susceptible methicillin-resistant S. aureus (MRSA) bloodstream isolates (5 agr-I [clonal complex 45, or CC45] and 5 agr-II [CC5]) were studied for (i) agr function, (ii) RNAIII transcriptional profiles, (iii) agr locus sequences, (iv) intrinsic virulence and responses to vancomycin therapy in an experimental infective endocarditis (IE) model, and (v) in vivo RNAIII expression. Significant differences in agr function (determined by delta-hemolysin activity) correlated with the time point of RNAIII transcription (earlier RNAIII onset equals increased agr function). Unexpectedly, four MRSA strains with strong delta-hemolysin activities exhibited significant resistance to vancomycin treatment in experimental IE. In contrast, five of six MRSA strains with weak or no delta-hemolysin activity were highly susceptible to vancomycin therapy in the IE model. agr sequence analyses showed no common single-nucleotide polymorphism predictive of agr functionality. In vivo RNAIII expression in cardiac vegetations did not correlate with virulence or vancomycin treatment outcomes in the IE model. Inactivation of agr in two strains with strong delta-hemolysin activity did not affect virulence or the in vivo efficacy of vancomycin. Our findings suggest that agr dysfunction does not correlate with vancomycin treatment failures in this experimental IE model in two distinct MRSA genetic backgrounds.
Insights
Accessory gene regulator (agr) dysfunction in Staphylococcus aureus did not correlate with vancomycin treatment failures in experimental endocarditis. This study found no link between agr functionality and vancomycin efficacy in MRSA bloodstream isolates.
Area of Science:
- Microbiology
- Infectious Diseases
- Pharmacology
Background:
- The accessory gene regulator (agr) locus is crucial for Staphylococcus aureus virulence.
- Its role in human infections and antibiotic treatment, particularly vancomycin, remains controversial.
- agr dysfunction has been linked to poorer vancomycin responses.
Purpose of the Study:
- To investigate the role of agr in virulence and vancomycin treatment outcomes in experimental endocarditis.
- To analyze agr function, RNAIII expression, and genetic sequences in MRSA isolates.
- To determine the correlation between agr status and vancomycin efficacy.
Main Methods:
- Studied 10 vancomycin-susceptible MRSA isolates (agr-I and agr-II).
- Assessed agr function via delta-hemolysin activity and RNAIII transcription.
- Evaluated virulence and vancomycin response in an experimental infective endocarditis model.
- Performed agr locus sequence analysis and in vivo RNAIII expression analysis.
Main Results:
- Strong delta-hemolysin activity (indicating higher agr function) correlated with vancomycin resistance in some strains.
- Weak or no delta-hemolysin activity correlated with vancomycin susceptibility in most strains.
- agr sequence analysis did not reveal predictive single-nucleotide polymorphisms.
- In vivo RNAIII expression and agr inactivation did not consistently correlate with virulence or vancomycin treatment outcomes.
Conclusions:
- agr dysfunction is not consistently associated with vancomycin treatment failure in this experimental endocarditis model.
- The relationship between agr functionality and vancomycin efficacy is complex and strain-dependent.
- Further research is needed to understand the mechanisms underlying vancomycin response in MRSA endocarditis.
Related Concept Videos
Clinical Significance of Antibiotic Resistance
Mechanism of Antibiotic Resistance in MRSA
Endocarditis I: Introduction
Endocarditis III: Medical Management
Regulation of Bacterial Virulence
Gene Regulation in Microbial Communities: Quorum Sensing

