The effect of mutation on Rhodococcus equi virulence plasmid gene expression and mouse virulence

Jun Ren1, John F Prescott

  • 1Department of Pathobiology, University of Guelph, Guelph, Ont., Canada N1G 2W1.

Veterinary Microbiology
|October 27, 2004
PubMed

Insights

Targeting virulence plasmid genes in Rhodococcus equi revealed key regulators of foal pneumonia. Mutating ORF4 and ORF8 attenuated virulence, while ORF10 and phoPR affected gene expression patterns.

Area of Science:

  • Microbiology
  • Bacterial Pathogenesis
  • Molecular Biology

Background:

  • The 81 kb virulence plasmid and its pathogenicity island (PI) are critical for Rhodococcus equi pneumonia in foals.
  • The precise roles of plasmid-encoded genes in virulence and their regulatory mechanisms remain largely unknown.

Purpose of the Study:

  • To investigate the function of specific virulence plasmid genes (ORF4, ORF8, ORF10) and the chromosomal phoPR operon in R. equi pathogenesis.
  • To elucidate the regulatory network governing the expression of virulence plasmid genes.

Main Methods:

  • Development of an efficient two-stage homologous recombination system for targeted gene mutation in R. equi using LacZ and apramycin resistance markers.
  • Construction and virulence testing (liver clearance in mice) of targeted mutants for ORF4, ORF8, ORF10, and phoPR.
  • Analysis of virulence plasmid gene expression profiles using a virulence plasmid DNA microarray.

Main Results:

  • Mutants lacking ORF4 or ORF8 were fully attenuated in virulence, while the phoPR mutant was hypervirulent; ORF10 mutation had no significant effect.
  • Gene expression analysis revealed that virulence plasmid gene expression is primarily controlled by a negative regulatory network.
  • Distinct gene induction patterns correlated with the virulence of the mutants, with ORF8 identified as a central regulatory point.

Conclusions:

  • ORF4 and ORF8 are essential positive regulators of R. equi virulence, independent of vapA expression levels.
  • The phoPR operon and ORF10 play roles in regulating virulence gene expression, contributing to distinct regulatory pathways.
  • Understanding these regulatory mechanisms provides insights into controlling R. equi pathogenesis.