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Gilmore, Michael

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Gilmore

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Michael

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Gilmore, Michael

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Now showing 1 - 4 of 4
  • Publication

    The Enterococcus faecalis fsrB Gene, a Key Component of the fsr Quorum-Sensing System, Is Associated with Virulence in the Rabbit Endophthalmitis Model

    (American Society for Microbiology, 2002) Mylonakis, E.; Engelbert, M.; Qin, X.; Sifri, C. D.; Murray, B. E.; Ausubel, Frederick; Gilmore, Michael; Calderwood, Stephen

    We used a rabbit endophthalmitis model to explore the role of fsrB, a gene required for the function of the fsr quorum-sensing system of Enterococcus faecalis, in pathogenicity. A nonpolar deletion mutant of fsrB had significantly reduced virulence compared to wild type. Complementation of mutation restored virulence. These data corroborate the role of fsrB in E. faecalis pathogenesis and suggest that the rabbit endophthalmitis model can be used to study the in vivo role of quorum sensing.

  • Publication

    Bacterial Endophthalmitis: Epidemiology, Therapeutics, and Bacterium-Host Interactions

    (American Society for Microbiology, 2002) Callegan, M. C.; Engelbert, M.; Parke, D. W.; Jett, B. D.; Gilmore, Michael
  • Publication

    Contribution of Gelatinase, Serine Protease, and fsr to the Pathogenesis of Enterococcus faecalis Endophthalmitis

    (American Society for Microbiology, 2004) Engelbert, M.; Mylonakis, E; Ausubel, Frederick; Calderwood, Stephen; Gilmore, Michael

    Gelatinase and serine protease were found to contribute in concert to pathogenesis in a rabbit model of endophthalmitis. However, a mutant defective in the fsr regulator was observed to be more attenuated than a mutant rendered defective in the expression of gelatinase and serine protease as the result of a polar transposon insertion into the former. This increased attenuation suggests that there are possible additional pleiotropic effects of the defect in fsr on expression of traits contributing to the pathogenesis of enterococcal infection.

  • Publication

    B-Crystallin Protects Retinal Tissue during Staphylococcus aureus- Induced Endophthalmitis

    (American Society for Microbiology, 2008) Whiston, E. A.; Sugi, N.; Kamradt, M. C.; Sack, C.; Heimer, S. R.; Engelbert, M.; Wawrousek, E. F.; Gilmore, Michael; Ksander, Bruce; Gregory, M. S.

    Bacterial infections of the eye highlight a dilemma that is central to all immune-privileged sites. On the one hand, immune privilege limits inflammation to prevent bystander destruction of normal tissue and loss of vision. On the other hand, bacterial infections require a robust inflammatory response for rapid clearance of the pathogen. We demonstrate that the retina handles this dilemma, in part, by activation of a protective heat shock protein. During Staphylococcus aureus-induced endophthalmitis, the small heat shock protein αB-crystallin is upregulated in the retina and prevents apoptosis during immune clearance of the bacteria. In the absence of αB-crystallin, mice display increased retinal apoptosis and retinal damage. We found that S. aureus produces a protease capable of cleaving αB-crystallin to a form that coincides with increased retinal apoptosis and tissue destruction. We conclude that αB-crystallin is important in protecting sensitive retinal tissue during destructive inflammation that occurs during bacterial endophthalmitis.