The Journal of Infectious Diseases · 2011 · 45 citations · 47 references
δPly Sp3 StrainInflammatory Lung DiseaseMicrobial PathogensLung InflammationKlebsiella PneumoniaeImmunologyInnate ImmunityBacterial PathogensDrug ResistanceMedical MicrobiologySynthetic ChangesRespiratory InfectionInfection ControlAntimicrobial ResistanceHost-pathogen InteractionsHealth SciencesVirulence FactorMolecular MicrobiologyGene ExpressionClinical MicrobiologyAntimicrobial Resistance GeneAntibioticsRecoded Sp3 StrainsPathogenesisSynthetic BiologyInfectious Respiratory DiseaseMicrobiologyMedicine
In this study, we used a previously described method of controlling gene expression with computer-based gene design and de novo DNA synthesis to attenuate the virulence of Streptococcus pneumoniae. We produced 2 S. pneumoniae serotype 3 (SP3) strains in which the pneumolysin gene (ply) was recoded with underrepresented codon pairs while retaining its amino acid sequence and determined their ply expression and pneumolysin production in vitro and their virulence in a mouse pulmonary infection model. Expression of ply and production of pneumolysin of the recoded SP3 strains were decreased, and the recoded SP3 strains were less virulent in mice than the wild-type SP3 strain or a Δply SP3 strain. Further studies showed that the least virulent recoded strain induced a markedly reduced inflammatory response in the lungs compared with the wild-type or Δply strain. These findings suggest that reducing pneumococcal virulence gene expression by altering codon-pair bias could hold promise for rational design of live-attenuated pneumococcal vaccines.
47
Codon usage in bacteria: correlation with gene expressivity
Manolo Gouy, Christian Gautier · Nucleic Acids Research · 1982 · 1.3K citations · Full text
Virus Attenuation by Genome-Scale Changes in Codon Pair Bias
J. Robert Coleman, Dimitris Papamichail, Steven Skiena et al. · Science · 2008 · 728 citations · Full text