Dissection of Francisella-Host Cell Interactions in Dictyostelium discoideum

Author:

Lampe Elisabeth O.12,Brenz Yannick3,Herrmann Lydia3,Repnik Urska4,Griffiths Gareth4,Zingmark Carl5,Sjöstedt Anders6,Winther-Larsen Hanne C.12,Hagedorn Monica3

Affiliation:

1. Centre for Integrative Microbial Evolution (CIME), University of Oslo, Oslo, Norway

2. Department of Pharmaceutical Biosciences, School of Pharmacy, University of Oslo, Oslo, Norway

3. Section of Parasitology, Bernhard Nocht Institute for Tropical Medicine, Hamburg, Germany

4. Department of Biosciences, University of Oslo, Oslo, Norway

5. Department of Molecular Biology, Umeå Centre for Microbial Research, Umeå University, Umeå, Sweden

6. Department of Clinical Microbiology, Clinical Bacteriology, and Laboratory for Molecular Infection Medicine Sweden (MIMS), Umeå University, Umeå, Sweden

Abstract

ABSTRACT Francisella bacteria cause severe disease in both vertebrates and invertebrates and include one of the most infectious human pathogens. Mammalian cell lines have mainly been used to study the mechanisms by which Francisella manipulates its host to replicate within a large variety of hosts and cell types, including macrophages. Here, we describe the establishment of a genetically and biochemically tractable infection model: the amoeba Dictyostelium discoideum combined with the fish pathogen Francisella noatunensis subsp. noatunensis . Phagocytosed F. noatunensis subsp. noatunensis interacts with the endosomal pathway and escapes further phagosomal maturation by translocating into the host cell cytosol. F. noatunensis subsp. noatunensis lacking IglC, a known virulence determinant required for Francisella intracellular replication, follows the normal phagosomal maturation and does not grow in Dictyostelium . The attenuation of the F. noatunensis subsp. noatunensis Δ iglC mutant was confirmed in a zebrafish embryo model, where growth of F. noatunensis subsp. noatunensis Δ iglC was restricted. In Dictyostelium , F. noatunensis subsp. noatunensis interacts with the autophagic machinery. The intracellular bacteria colocalize with autophagic markers, and when autophagy is impaired ( Dictyostelium Δ atg1 ), F. noatunensis subsp. noatunensis accumulates within Dictyostelium cells. Altogether, the Dictyostelium-F. noatunensis subsp. noatunensis infection model recapitulates the course of infection described in other host systems. The genetic and biochemical tractability of the system allows new approaches to elucidate the dynamic interactions between pathogenic Francisella and its host organism.

Funder

University of Oslo

Prime Minister Gunnar Knudsen and wife Sofie, Barrister Per Ryghs legate, Kristine Bonnevies travel grant, and MLSUiO

Deutsche Forschungsgemeinschaft

DAAD/Research Council of Norway

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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