Identification of an Essential Francisella tularensis subsp. tularensis Virulence Factor
- 1 January 2009
- journal article
- Published by American Society for Microbiology in Infection and Immunity
- Vol. 77 (1) , 152-161
- https://doi.org/10.1128/iai.01113-08
Abstract
Francisella tularensis, the highly virulent etiologic agent of tularemia, is a low-dose intracellular pathogen that is able to escape from the phagosome and replicate in the cytosol. Although there has been progress in identifying loci involved in the pathogenicity of this organism, analysis of the genome sequence has revealed few obvious virulence factors. We previously reported isolation of an F. tularensis subsp. tularensis strain Schu S4 transposon insertion mutant with a mutation in a predicted hypothetical lipoprotein, FTT1103, that was deficient in intracellular replication in HepG2 cells. In this study, a mutant with a defined nonpolar deletion in FTT1103 was created, and its phenotype, virulence, and vaccine potential were characterized. A phagosomal integrity assay and lysosome-associated membrane protein 1 colocalization revealed that DeltaFTT1103 mutant bacteria were defective in phagosomal escape. FTT1103 mutant bacteria were maximally attenuated in the mouse model; mice survived, without visible signs of illness, challenge by more than 10(10) CFU when the intranasal route was used and challenge by 10(6) CFU when the intraperitoneal, subcutaneous, or intravenous route was used. The FTT1103 mutant bacteria exhibited dissemination defects. Mice that were infected by the intranasal route had low levels of bacteria in their livers and spleens, and these bacteria were cleared by 3 days postinfection. Mutant bacteria inoculated by the subcutaneous route failed to disseminate to the lungs. BALB/c or C57BL/6 mice that were intranasally vaccinated with 10(8) CFU of FTT1103 mutant bacteria were protected against subsequent challenge with wild-type strain Schu S4. These experiments identified the FTT1103 protein as an essential virulence factor and also demonstrated the feasibility of creating defined attenuated vaccines based on a type A strain.Keywords
This publication has 70 references indexed in Scilit:
- An improved vaccine for prevention of respiratory tularemia caused by Francisella tularensis SchuS4 strainVaccine, 2008
- Identification ofFrancisella tularensis Himar1-Based Transposon Mutants Defective for Replication in MacrophagesInfection and Immunity, 2007
- Toll-Like Receptor 2 Controls the Gamma Interferon Response toFrancisella tularensisby Mouse Liver LymphocytesInfection and Immunity, 2007
- In vivo negative selection screen identifies genes required for Francisella virulenceProceedings of the National Academy of Sciences, 2007
- A comprehensive transposon mutant library of Francisella novicida , a bioweapon surrogateProceedings of the National Academy of Sciences, 2007
- Autophagy-mediated reentry of Francisella tularensis into the endocytic compartment after cytoplasmic replicationProceedings of the National Academy of Sciences, 2006
- AttenuatedFrancisella novicidaTransposon Mutants Protect Mice against Wild-Type ChallengeInfection and Immunity, 2006
- Construction and Characterization of an Attenuated Purine Auxotroph in aFrancisella tularensisLive Vaccine StrainInfection and Immunity, 2006
- Francisella tularensis travels a novel, twisted road within macrophagesTrends in Microbiology, 2006
- CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choiceNucleic Acids Research, 1994