Abstract
Recently, we observed that Staphylococcus aureus strains newly isolated from patients had twofold-higher aconitase activity than a strain passaged extensively in vitro, leading us to hypothesize that aconitase specific activity decreases over time during in vitro passage. To test this hypothesis, a strain recovered from a patient with toxic shock syndrome was serially passaged for 6 weeks, and the aconitase activity was measured. Aconitase specific activity decreased 38% (P < 0.001) by the sixth week in culture. During serial passage, S. aureus existed as a heterogeneous population with two colony types that had pronounced (wild type) or negligible zones of beta-hemolytic activity. The cell density-sensing accessory gene regulatory (agr) system regulates beta-hemolytic activity. Surprisingly, the percentage of colonies with a wild-type beta-hemolytic phenotype correlated strongly with aconitase specific activity (rho = 0.96), suggesting a common cause of the decreased aconitase specific activity and the variation in percentage of beta-hemolytic colonies. The loss of the beta-hemolytic phenotype also coincided with the occurrence of mutations in the agrC coding region or the intergenic region between agrC and agrA in the derivative strains. Our results demonstrate that in vitro growth is sufficient to result in mutations within the agr operon. Additionally, our results demonstrate that S. aureus undergoes significant phenotypic and genotypic changes during serial passage and suggest that vigilance should be used when extrapolating data obtained from the study of high-passage strains.
MeSH Terms
Aconitate Hydratase/metabolism
Bacterial Proteins/genetics
Bacterial Toxins/metabolism
Base Sequence
Culture Media
Gene Expression Regulation, Bacterial
Hemolysin Proteins/metabolism
Hemolysis
Humans
Oligonucleotide Array Sequence Analysis
Operon/genetics
Serial Passage
Shock, Septic/microbiology
Staphylococcal Infections/microbiology
Staphylococcal Protein A/metabolism
Staphylococcus aureus/genetics,growth & development,pathogenicity,physiology
Time Factors
Trans-Activators/genetics
Virulence
Chemicals
Agr protein, Staphylococcus aureus
Bacterial Proteins
Bacterial Toxins
Culture Media
Hemolysin Proteins
Staphylococcal Protein A
Trans-Activators
staphylococcal alpha-toxin
Aconitate Hydratase
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Somerville Greg A
Laboratory of Human Bacterial Pathogenesis, Rocky Mountain Laboratories, National Institute of Allergy and Infectious Diseases/NIH, 903 South 4th Street, Hamilton, Montana 59840, USA.
Beres Stephen B
Fitzgerald J Ross
DeLeo Frank R
Cole Robert L
Hoff Jessica S
Musser James M
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