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Remodelling of the actin cytoskeleton is essential for replication of intravacuolar Salmonella
Authors:Méresse S  Unsworth K E  Habermann A  Griffiths G  Fang F  Martínez-Lorenzo M J  Waterman S R  Gorvel J P  Holden D W
Affiliation:Centre d'Immunologie de Marseille-Luminy, INSERM-CNRS-Univ.Med., Campus de Luminy, Case 906, 13288 Marseille Cedex 09, France.;Department of Infectious Diseases, Centre for Molecular Microbiology and Infection, Imperial College School of Medicine, Armstrong Road, London SW7 2AZ, UK.;European Molecular Biology Laboratory, Meyerhof Str. 1, 69012 Heidelberg, Germany.;University of Colorado Health Sciences Center, 4200 E. Ninth Avenue, B168, Denver, CO 80262, USA.
Abstract:Maturation and maintenance of the intracellular vacuole in which Salmonella replicates is controlled by virulence proteins including the type III secretion system encoded by Salmonella pathogenicity island 2 (SPI-2). Here, we show that, several hours after bacterial uptake into different host cell types, Salmonella induces the formation of an F-actin meshwork around bacterial vacuoles. This structure is assembled de novo from the cellular G-actin pool in close proximity to the Salmonella vacuolar membrane. We demonstrate that the phenomenon does not require the Inv/Spa type III secretion system or cognate effector proteins, which induce actin polymerization during bacterial invasion, but does require a functional SPI-2 type III secretion system, which plays an important role in intracellular replication and systemic infection in mice. Treatment with actin-depolymerizing agents significantly inhibited intramacrophage replication of wild-type Salmonella typhimurium . Furthermore, after this treatment, wild-type bacteria were released into the host cell cytoplasm, whereas SPI-2 mutant bacteria remained within vacuoles. We conclude that actin assembly plays an important role in the establishment of an intracellular niche that sustains bacterial growth.
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