Identification of a Brucella spp. secreted effector specifically interacting with human small GTPase Rab2.
pmid: 21501366
handle: 2268/163858
Identification of a Brucella spp. secreted effector specifically interacting with human small GTPase Rab2.
Bacteria of the Brucella genus are facultative intracellular class III pathogens. These bacteria are able to control the intracellular trafficking of their vacuole, presumably by the use of yet unknown translocated effectors. To identify such effectors, we used a high-throughput yeast two-hybrid screen to identify interactions between putative human phagosomal proteins and predicted Brucella spp. proteins. We identified a specific interaction between the human small GTPase Rab2 and a Brucella spp. protein named RicA. This interaction was confirmed by GST-pull-down with the GDP-bound form of Rab2. A TEM-β-lactamase-RicA fusion was translocated from Brucella abortus to RAW264.7 macrophages during infection. This translocation was not detectable in a strain deleted for the virB operon, coding for the type IV secretion system. However, RicA secretion in a bacteriological culture was still observed in a ΔvirB mutant. In HeLa cells, a ΔricA mutant recruits less GTP-locked myc-Rab2 on its Brucella-containing vacuoles, compared with the wild-type strain. We observed altered kinetics of intracellular trafficking and faster proliferation of the B. abortusΔricA mutant in HeLa cells, compared with the wild-type control. Altogether, the data reported here suggest RicA as the first reported effector with a proposed function for B. abortus.
- University of Liège Belgium
- Centre d'Immunologie de Marseille Luminy France
- University of Liege (ULG) Belgium
- Aix-Marseille Université France
- Université de Namur Belgium
Brucella abortus/pathogenicity, 570, [SDV.IMM] Life Sciences [q-bio]/Immunology, Virulence Factors, Brucella abortus, MESH: Virulence, MESH: Two-Hybrid System Techniques, Biochimie, biophysique & biologie moléculaire, Virulence Factors/genetics/metabolism, Macrophages/microbiology, Cell Line, Mice, MESH: Phagosomes, Bacterial Proteins, Phagosomes/metabolism/microbiology, Phagosomes, Two-Hybrid System Techniques, Protein Interaction Mapping, MESH: Protein Binding, Animals, Humans, MESH: Animals, MESH: Bacterial Proteins, MESH: Mice, MESH: Brucella abortus, MESH: Virulence Factors, Epithelial Cells/microbiology, MESH: Humans, Virulence, Macrophages, MESH: Host-Pathogen Interactions, MESH: Protein Interaction Mapping, MESH: Macrophages, Epithelial Cells, rab2 GTP-Binding Protein/metabolism, Life sciences, MESH: Cell Line, rab2 GTP-Binding Protein, MESH: Epithelial Cells, MESH: Gene Deletion, Host-Pathogen Interactions, Bacterial Proteins/genetics/metabolism, Sciences du vivant, [SDV.IMM]Life Sciences [q-bio]/Immunology, MESH: rab2 GTP-Binding Protein, Gene Deletion, Biochemistry, biophysics & molecular biology, Protein Binding
Brucella abortus/pathogenicity, 570, [SDV.IMM] Life Sciences [q-bio]/Immunology, Virulence Factors, Brucella abortus, MESH: Virulence, MESH: Two-Hybrid System Techniques, Biochimie, biophysique & biologie moléculaire, Virulence Factors/genetics/metabolism, Macrophages/microbiology, Cell Line, Mice, MESH: Phagosomes, Bacterial Proteins, Phagosomes/metabolism/microbiology, Phagosomes, Two-Hybrid System Techniques, Protein Interaction Mapping, MESH: Protein Binding, Animals, Humans, MESH: Animals, MESH: Bacterial Proteins, MESH: Mice, MESH: Brucella abortus, MESH: Virulence Factors, Epithelial Cells/microbiology, MESH: Humans, Virulence, Macrophages, MESH: Host-Pathogen Interactions, MESH: Protein Interaction Mapping, MESH: Macrophages, Epithelial Cells, rab2 GTP-Binding Protein/metabolism, Life sciences, MESH: Cell Line, rab2 GTP-Binding Protein, MESH: Epithelial Cells, MESH: Gene Deletion, Host-Pathogen Interactions, Bacterial Proteins/genetics/metabolism, Sciences du vivant, [SDV.IMM]Life Sciences [q-bio]/Immunology, MESH: rab2 GTP-Binding Protein, Gene Deletion, Biochemistry, biophysics & molecular biology, Protein Binding
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