Literature DB >> 19820161

Francisella tularensis type A strains cause the rapid encystment of Acanthamoeba castellanii and survive in amoebal cysts for three weeks postinfection.

Sahar H El-Etr1, Jeffrey J Margolis, Denise Monack, Richard A Robison, Marissa Cohen, Emily Moore, Amy Rasley.   

Abstract

Francisella tularensis, the causative agent of the zoonotic disease tularemia, has recently gained increased attention due to the emergence of tularemia in geographical areas where the disease has been previously unknown and to the organism's potential as a bioterrorism agent. Although F. tularensis has an extremely broad host range, the bacterial reservoir in nature has not been conclusively identified. In this study, the ability of virulent F. tularensis strains to survive and replicate in the amoeba Acanthamoeba castellanii was explored. We observe that A. castellanii trophozoites rapidly encyst in response to F. tularensis infection and that this rapid encystment phenotype is caused by factor(s) secreted by amoebae and/or F. tularensis into the coculture medium. Further, our results indicate that in contrast to the live vaccine strain LVS, virulent strains of F. tularensis can survive in A. castellanii cysts for at least 3 weeks postinfection and that the induction of rapid amoeba encystment is essential for survival. In addition, our data indicate that pathogenic F. tularensis strains block lysosomal fusion in A. castellanii. Taken together, these data suggest that interactions between F. tularensis strains and amoebae may play a role in the environmental persistence of F. tularensis.

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Year:  2009        PMID: 19820161      PMCID: PMC2786426          DOI: 10.1128/AEM.01829-09

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


  51 in total

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  42 in total

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Review 7.  Ecology of Francisella tularensis.

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8.  Dissection of Francisella-Host Cell Interactions in Dictyostelium discoideum.

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9.  Structure and function of REP34 implicates carboxypeptidase activity in Francisella tularensis host cell invasion.

Authors:  Geoffrey K Feld; Sahar El-Etr; Michele H Corzett; Mark S Hunter; Kamila Belhocine; Denise M Monack; Matthias Frank; Brent W Segelke; Amy Rasley
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