z-logo
open-access-imgOpen Access
The Early Phagosomal Stage of Francisella tularensis Determines Optimal Phagosomal Escape and Francisella Pathogenicity Island Protein Expression
Author(s) -
Audrey Chong,
Tara D. Wehrly,
Vinod Nair,
Elizabeth R. Fischer,
Jeffrey R. Barker,
Karl E. Klose,
Jean Celli
Publication year - 2008
Publication title -
infection and immunity
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.508
H-Index - 220
eISSN - 1070-6313
pISSN - 0019-9567
DOI - 10.1128/iai.00682-08
Subject(s) - phagosome , francisella , biology , francisella tularensis , endosome , bafilomycin , intracellular , microbiology and biotechnology , intracellular parasite , phagolysosome , phagocytosis , macrophage , tularemia , rab , virulence , biochemistry , autophagy , gene , gtpase , in vitro , apoptosis
Francisella tularensis is an intracellular pathogen that can survive and replicate within macrophages. Following phagocytosis and transient interactions with the endocytic pathway,F. tularensis rapidly escapes from its original phagosome into the macrophage cytoplasm, where it eventually replicates. To examine the importance of the nascent phagosome for theFrancisella intracellular cycle, we have characterized early trafficking events of theF. tularensis subsp.tularensis strain Schu S4 in a murine bone marrow-derived macrophage model. Here we show that early phagosomes containing Schu S4 transiently interact with early and late endosomes and become acidified before the onset of phagosomal disruption. Inhibition of endosomal acidification with the vacuolar ATPase inhibitor bafilomycin A1 or concanamycin A prior to infection significantly delayed but did not block phagosomal escape and cytosolic replication, indicating that maturation of the earlyFrancisella -containing phagosome (FCP) is important for optimal phagosomal escape and subsequent intracellular growth. Further,Francisella pathogenicity island (FPI) protein expression was induced during early intracellular trafficking events. Although inhibition of endosomal acidification mimicked the early phagosomal escape defects caused by mutation of the FPI-encoded IglCD proteins, it did not inhibit the intracellular induction of FPI proteins, demonstrating that this response is independent of phagosomal pH. Altogether, these results demonstrate that early phagosomal maturation is required for optimal phagosomal escape and that the early FCP provides cues other than intravacuolar pH that determine intracellular induction of FPI proteins.

The content you want is available to Zendy users.

Already have an account? Click here to sign in.
Having issues? You can contact us here
Accelerating Research

Address

John Eccles House
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom