Literature DB >> 18344342

Identification of differentially regulated francisella tularensis genes by use of a newly developed Tn5-based transposon delivery system.

Blake W Buchan1, Molly K McLendon, Bradley D Jones.   

Abstract

Francisella tularensis is the etiologic agent of an intracellular systemic infection of the lymphatic system in humans called tularemia. The organism has become the subject of considerable research interest due to its classification as a category A select agent by the CDC. To aid genetic analysis of this pathogen, we have constructed a temperature-sensitive Tn5-based transposon delivery system that is capable of generating chromosomal reporter fusions with lacZ or luxCDABE, enabling us to monitor gene expression. Transposition is catalyzed by the hyperactive Tn5 transposase, whose expression is driven by the Francisella groES promoter. When high-temperature selection (42 degrees C) is applied to a bacterial culture carrying the transposon delivery plasmid, approximately 0.1% of the population is recovered with Tn5 insertions in the chromosome. Nucleotide sequence analysis of a sample of mutants revealed that the insertions occur randomly throughout the chromosome. The kanamycin-selectable marker of the transposon is also flanked by FLP recombination target sequences that allow deletion of the antibiotic resistance gene when desired. This system has been used to generate transposon mutant libraries for the F. tularensis live vaccine strain as well as two different virulent F. tularensis strains. Chromosomal reporters delivered with the transposon were used to identify genes upregulated by growth in Chamberlain's defined medium. Genes in the fsl operon, reported to be involved in iron acquisition, as well as genes in the igl gene cluster were among those identified by the screen. Further experiments implicate the ferric uptake regulator (Fur) protein in the negative regulation of fsl but not igl reporters, which occurs in an iron-dependent manner. Our results indicate that we have created a valuable new transposon that can be used to identify and characterize virulence genes in F. tularensis strains.

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Year:  2008        PMID: 18344342      PMCID: PMC2394869          DOI: 10.1128/AEM.02882-07

Source DB:  PubMed          Journal:  Appl Environ Microbiol        ISSN: 0099-2240            Impact factor:   4.792


  53 in total

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2.  Insertional transposon mutagenesis by electroporation of released Tn5 transposition complexes.

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Authors:  S C Cowley; C J Gray; F E Nano
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4.  Intranasal vaccination induces protective immunity against intranasal infection with virulent Francisella tularensis biovar A.

Authors:  Terry H Wu; Julie A Hutt; Kristin A Garrison; Lyudmila S Berliba; Yan Zhou; C Rick Lyons
Journal:  Infect Immun       Date:  2005-05       Impact factor: 3.441

5.  Construction of a shuttle vector for use in Francisella tularensis.

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Journal:  FEMS Immunol Med Microbiol       Date:  1996-03

6.  Use of transposon-transposase complexes to create stable insertion mutant strains of Francisella tularensis LVS.

Authors:  Thomas H Kawula; Joshua D Hall; James R Fuller; Robin R Craven
Journal:  Appl Environ Microbiol       Date:  2004-11       Impact factor: 4.792

7.  Characterization of the siderophore of Francisella tularensis and role of fslA in siderophore production.

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8.  Construction and characterization of a highly efficient Francisella shuttle plasmid.

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9.  In vivo Himar1-based transposon mutagenesis of Francisella tularensis.

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Journal:  Appl Environ Microbiol       Date:  2006-03       Impact factor: 4.792

10.  Identification of transposon insertion mutants of Francisella tularensis tularensis strain Schu S4 deficient in intracellular replication in the hepatic cell line HepG2.

Authors:  Aiping Qin; Barbara J Mann
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Authors:  Ramona L McCaffrey; Justin T Schwartz; Stephen R Lindemann; Jessica G Moreland; Blake W Buchan; Bradley D Jones; Lee-Ann H Allen
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3.  Francisella tularensis Schu S4 O-antigen and capsule biosynthesis gene mutants induce early cell death in human macrophages.

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5.  Effective mutagenesis of Vibrio fischeri by using hyperactive mini-Tn5 derivatives.

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6.  Cutting edge: mutation of Francisella tularensis mviN leads to increased macrophage absent in melanoma 2 inflammasome activation and a loss of virulence.

Authors:  Tyler K Ulland; Blake W Buchan; Margaret R Ketterer; Teresa Fernandes-Alnemri; David K Meyerholz; Michael A Apicella; Emad S Alnemri; Bradley D Jones; William M Nauseef; Fayyaz S Sutterwala
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7.  The Sensor Kinase QseC Regulates the Unlinked PmrA Response Regulator and Downstream Gene Expression in Francisella.

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8.  Identification, characterization and immunogenicity of an O-antigen capsular polysaccharide of Francisella tularensis.

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Review 9.  Working toward the future: insights into Francisella tularensis pathogenesis and vaccine development.

Authors:  Roger D Pechous; Travis R McCarthy; Thomas C Zahrt
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10.  Isolation, characterization, and utilization of a temperature-sensitive allele of a Pseudomonas replicon.

Authors:  Laura A Silo-Suh; Brett Elmore; Dennis E Ohman; Sang-Jin Suh
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