3HW2
Crystal structure of the SifA-SKIP(PH) complex
Summary for 3HW2
Entry DOI | 10.2210/pdb3hw2/pdb |
Related | 3CXB |
Descriptor | Protein sifA, Pleckstrin homology domain-containing family M member 2 (2 entities in total) |
Functional Keywords | sifa, protein complex, salmonella infection, late effector, virulence, phosphoprotein, signaling protein |
Biological source | Salmonella enterica subsp. enterica serovar Typhimurium More |
Cellular location | Secreted: Q56061 Cytoplasm: Q8IWE5 |
Total number of polymer chains | 2 |
Total formula weight | 50280.71 |
Authors | Diacovich, L.,Dumont, A.,Lafitte, D.,Soprano, E.,Guilhon, A.-A.,Bignon, C.,Gorvel, J.-P.,Bourne, Y.,Meresse, S. (deposition date: 2009-06-17, release date: 2009-11-03, Last modification date: 2023-11-01) |
Primary citation | Diacovich, L.,Dumont, A.,Lafitte, D.,Soprano, E.,Guilhon, A.-A.,Bignon, C.,Gorvel, J.-P.,Bourne, Y.,Meresse, S. Interaction between the SifA virulence factor and its host target skip is essential for salmonella pathogenesis J.Biol.Chem., 284:33151-33160, 2009 Cited by PubMed Abstract: SifA is a Salmonella effector that is translocated into infected cells by the pathogenicity island 2-encoded type 3 secretion system. SifA is a critical virulence factor. Previous studies demonstrated that, upon translocation, SifA binds the pleckstrin homology motif of the eukaryotic host protein SKIP. In turn, the SifA-SKIP complex regulates the mobilization of the molecular motor kinesin-1 on the bacterial vacuole. SifA exhibits multiple domains containing functional motifs. Here we performed a molecular dissection and a mutational study of SifA to evaluate the relative contribution of the different domains to SifA functions. Biochemical and crystallographic analysis confirmed that the N-terminal domain of SifA is sufficient to interact with the pleckstrin homology domain of SKIP, forming a 1:1 complex with a micromolar dissociation constant. Mutation of the tryptophan residue in the WXXXE motif, which has been proposed to mimic active form of GTPase, deeply affected the stability and the translocation of SifA while mutations of the glutamic residue had no functional impact. A SifA L130D mutant that does not bind SKIP showed a DeltasifA-like phenotype both in infected cells and in the mouse model of infection. We concluded that the WXXXE motif is essential for maintaining the tertiary structure of SifA, the functions of which require the interaction with the eukaryotic protein SKIP. PubMed: 19801640DOI: 10.1074/jbc.M109.034975 PDB entries with the same primary citation |
Experimental method | X-RAY DIFFRACTION (3.3 Å) |
Structure validation
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