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PMID: 15574954 Published · ppublish English Evaluation Study Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Construction and characterization of a highly efficient Francisella shuttle plasmid.

Applied and environmental microbiology ·Vol. 70 ·No. 12 ·2004-12-00 ·Pages 7511-9

Maier TM, Havig A, Casey M, Nano FE, Frank DW, Zahrt TC

Abstract

Francisella tularensis is a facultative intracellular pathogen that infects a wide variety of mammals and causes tularemia in humans. It is recognized as a potential agent of bioterrorism due to its low infectious dose and multiple routes of transmission. To date, genetic manipulation in Francisella spp. has been limited due to the inefficiency of DNA transformation, the relative lack of useful selective markers, and the lack of stably replicating plasmids. Therefore, the goal of this study was to develop an enhanced shuttle plasmid that could be utilized for a variety of genetic procedures in both Francisella and Escherichia coli. A hybrid plasmid, pFNLTP1, was isolated that was transformed by electroporation at frequencies of >1 x 10(7) CFU mug of DNA(-1) in F. tularensis LVS, Francisella novicida U112, and E. coli DH5alpha. Furthermore, this plasmid was stably maintained in F. tularensis LVS after passage in the absence of antibiotic selection in vitro and after 3 days of growth in J774A.1 macrophages. Importantly, F. tularensis LVS derivatives carrying pFNLTP1 were unaltered in their growth characteristics in laboratory medium and macrophages compared to wild-type LVS. We also constructed derivatives of pFNLTP1 containing expanded multiple cloning sites or temperature-sensitive mutations that failed to allow plasmid replication in F. tularensis LVS at the nonpermissive temperature. In addition, the utility of pFNLTP1 as a vehicle for gene expression, as well as complementation, was demonstrated. In summary, we describe construction of a Francisella shuttle plasmid that is transformed at high efficiency, is stably maintained, and does not alter the growth of Francisella in macrophages. This new tool should significantly enhance genetic manipulation and characterization of F. tularensis and other Francisella biotypes.

MeSH Terms
Anti-Bacterial Agents/pharmacology Conjugation, Genetic DNA, Bacterial/genetics Drug Resistance, Bacterial/genetics Electroporation Escherichia coli/genetics Francisella/genetics Francisella tularensis/genetics,growth & development Genetic Vectors Molecular Sequence Data Mutation Plasmids Replicon Streptomycin/pharmacology Transformation, Bacterial
Chemicals
Anti-Bacterial Agents DNA, Bacterial Streptomycin
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Maier Tamara M
Department of Microbiology and Molecular Genetics, The Medical College of Wisconsin, 8701 Watertown Plank Rd., P.O. Box 26509, Milwaukee, WI 53226-0509, USA.
Havig Andrea
Casey Monika
Nano Francis E
Frank Dara W
Zahrt Thomas C
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Article Info
Journal
Applied and environmental microbiology
Abbr.
Appl Environ Microbiol
ISSN
0099-2240
Published
2004-12-00
Pages
7511-9
Language
English
Region
United States
NLM ID
7605801
PMCID
PMC535190
Subset
IM
Grants
NIAID NIH HHS · U54 AI057153 · United States
Databases
GENBANK
AY622904, AY622905, AY622906, AY622907
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