Literature DB >> 16908853

Deletion of TolC orthologs in Francisella tularensis identifies roles in multidrug resistance and virulence.

Horacio Gil1, Gabrielle J Platz, Colin A Forestal, Michael Monfett, Chandra Shekhar Bakshi, Timothy J Sellati, Martha B Furie, Jorge L Benach, David G Thanassi.   

Abstract

The Gram-negative bacterium Francisella tularensis is the causative agent of tularemia. Interest in this zoonotic pathogen has increased due to its classification as a category A agent of bioterrorism, but little is known about the molecular mechanisms underlying its virulence, and especially what secretion systems and virulence factors are present. In this study, we characterized two genes in the F. tularensis genome, tolC and a gene we term ftlC, whose products have high homology with the Escherichia coli TolC protein. TolC functions as the outer membrane channel component for both type I secretion and multidrug efflux systems. We constructed deletion mutations of these genes in the F. tularensis live vaccine strain by allelic replacement. Deletion of either tolC or ftlC caused increased sensitivity to various antibiotics, detergents, and dyes, indicating both genes are involved in the multidrug resistance machinery of F. tularensis. Complementation of the deletion mutations in trans restored drug resistance. Neither tolC nor ftlC was required for replication of the live vaccine strain in murine bone marrow-derived macrophages. However, deletion of tolC, but not ftlC, caused a significant attenuation of virulence in a mouse model of tularemia that could be complemented by addition of tolC in trans. Thus, tolC is a critical virulence factor of F. tularensis in addition to its role in multidrug resistance, which suggests the presence of a functional type I secretion system.

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Year:  2006        PMID: 16908853      PMCID: PMC1568944          DOI: 10.1073/pnas.0602582103

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  40 in total

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Authors:  Maria Kostakioti; Cheryl L Newman; David G Thanassi; Christos Stathopoulos
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3.  Construction of a reporter plasmid for screening in vivo promoter activity in Francisella tularensis.

Authors:  K Kuoppa; A Forsberg; A Norqvist
Journal:  FEMS Microbiol Lett       Date:  2001-11-27       Impact factor: 2.742

4.  Public health assessment of potential biological terrorism agents.

Authors:  Lisa D Rotz; Ali S Khan; Scott R Lillibridge; Stephen M Ostroff; James M Hughes
Journal:  Emerg Infect Dis       Date:  2002-02       Impact factor: 6.883

5.  Francisella strains express hemolysins of distinct characteristics.

Authors:  Xin-He Lai; Su-Yan Wang; Helen Edebro; Anders Sjöstedt
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6.  An attenuated strain of the facultative intracellular bacterium Francisella tularensis can escape the phagosome of monocytic cells.

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10.  Multidrug efflux systems play an important role in the invasiveness of Pseudomonas aeruginosa.

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  62 in total

1.  Francisella tularensis Schu S4 O-antigen and capsule biosynthesis gene mutants induce early cell death in human macrophages.

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2.  Characterization of Francisella tularensis outer membrane proteins.

Authors:  Jason F Huntley; Patrick G Conley; Kayla E Hagman; Michael V Norgard
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Review 3.  Efflux-mediated drug resistance in bacteria: an update.

Authors:  Xian-Zhi Li; Hiroshi Nikaido
Journal:  Drugs       Date:  2009-08-20       Impact factor: 9.546

4.  AR-13, a Celecoxib Derivative, Directly Kills Francisella In Vitro and Aids Clearance and Mouse Survival In Vivo.

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Journal:  Front Microbiol       Date:  2017-09-11       Impact factor: 5.640

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Authors:  Aiping Qin; David W Scott; Barbara J Mann
Journal:  Infect Immun       Date:  2008-05-05       Impact factor: 3.441

7.  Azithromycin effectiveness against intracellular infections of Francisella.

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8.  Characterization of a Unique Outer Membrane Protein Required for Oxidative Stress Resistance and Virulence of Francisella tularensis.

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

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10.  The TolC protein of Legionella pneumophila plays a major role in multi-drug resistance and the early steps of host invasion.

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Journal:  PLoS One       Date:  2009-11-04       Impact factor: 3.240

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