PubMedCrossRef 17

PubMedCrossRef 17. Collazo find more CM, Galan JE: The invasion-associated type III system of Salmonella typhimurium directs the translocation of Sip proteins into the host cell. Mol Microbiol 1997, 24:747–756.PubMedCrossRef 18. Mashburn-Warren LM, Whiteley M: Special delivery: vesicle trafficking in prokaryotes. Mol Microbiol 2006, 61:839–846.PubMedCrossRef 19. Kesty NC, Mason KM, Reedy M, Miller SE, Kuehn MJ: Enterotoxigenic Escherichia

coli vesicles target toxin delivery into mammalian cells. Embo J 2004, 23:4538–4549.PubMedCrossRef 20. Mashburn LM, Whiteley M: Membrane vesicles traffic signals and facilitate group activities in a prokaryote. Nature 2005, 437:422–425.PubMedCrossRef 21. McBroom AJ, Kuehn MJ: Release of outer membrane vesicles by Gram-negative bacteria is a novel envelope stress response. Mol Microbiol 2007, 63:545–558.PubMedCrossRef 22. Fernandez-Moreira E, Helbig JH, Swanson MS: Membrane vesicles shed by Legionella pneumophila inhibit fusion of phagosomes with lysosomes. Infect Immun 2006, 74:3285–3295.PubMedCrossRef 23. Schooling SR, Beveridge TJ: Membrane vesicles: an overlooked component of the matrices of biofilms. J Bacteriol 2006, 188:5945–5957.PubMedCrossRef

24. Deatherage BL, Lara JC, Bergsbaken T, Rassoulian Barrett SL, Lara S, Cookson BT: Biogenesis of bacterial membrane vesicles. Mol Microbiol 2009, 72:1395–1407.PubMedCrossRef 25. Kadurugamuwa JL, Beveridge TJ: Delivery of the non-membrane-permeative antibiotic gentamicin into mammalian cells by using Shigella flexneri membrane vesicles. Antimicrob Agents Chemother 1998, 42:1476–1483.PubMed 26. Hume PJ, McGhie EJ, Hayward RD, Koronakis V: The purified Shigella IpaB and Salmonella SipB translocators CA-4948 share biochemical

properties and membrane topology. Mol Microbiol 2003, 49:425–439.PubMedCrossRef 27. Kuehn MJ, Kesty NC: Bacterial outer membrane vesicles and the host-pathogen interaction. Genes Dev 2005, 19:2645–2655.PubMedCrossRef 28. Ono S, Goldberg MD, Olsson T, Esposito D, Hinton JC, Ladbury JE: H-NS is a part of a thermally controlled mechanism for bacterial gene regulation. Biochem J 2005, 391:203–213.PubMedCrossRef Sitaxentan 29. Mo E, Peters SE, Willers C, Maskell DJ, Charles IG: Single, double and PI3K inhibitor triple mutants of Salmonella enterica serovar Typhimurium degP (htrA), degQ (hhoA) and degS (hhoB) have diverse phenotypes on exposure to elevated temperature and their growth in vivo is attenuated to different extents. Microb Pathog 2006, 41:174–182.PubMedCrossRef 30. Liu WT, Karavolos MH, Bulmer DM, Allaoui A, Hormaeche RD, Lee JJ, Khan CM: Role of the universal stress protein UspA of Salmonella in growth arrest, stress and virulence. Microb Pathog 2007, 42:2–10.PubMedCrossRef 31. Oliver SP, Gillespie BE, Ivey SJ, Lewis MJ, Johnson DL, Lamar KC, Moorehead H, Dowlen HH, Chester ST, Hallberg JW: Influence of prepartum pirlimycin hydrochloride or penicillin-novobiocin therapy on mastitis in heifers during early lactation. J Dairy Sci 2004, 87:1727–1731.

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