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Cummings, Richard

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Cummings

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Richard

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Cummings, Richard

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Now showing 1 - 2 of 2
  • Publication

    Protective Effect of Galectin-1 during Histoplasma capsulatum Infection Is Associated with Prostaglandin E2 and Nitric Oxide Modulation

    (Hindawi Publishing Corporation, 2016) Rodrigues, Lílian Cataldi; Secatto, Adriana; Sorgi, Carlos A.; Dejani, Naiara N.; Medeiros, Alexandra I.; Prado, Morgana Kelly Borges; Ramos, Simone Gusmão; Cummings, Richard; Stowell, Sean R.; Faccioli, Lúcia Helena; Dias-Baruffi, Marcelo

    Histoplasma capsulatum is a dimorphic fungus that develops a yeast-like morphology in host's tissue, responsible for the pulmonary disease histoplasmosis. The recent increase in the incidence of histoplasmosis in immunocompromised patients highlights the need of understanding immunological controls of fungal infections. Here, we describe our discovery of the role of endogenous galectin-1 (Gal-1) in the immune pathophysiology of experimental histoplasmosis. All infected wild-type (WT) mice survived while only 1/3 of Lgals1−/− mice genetically deficient in Gal-1 survived 30 days after infection. Although infected Lgals1−/− mice had increased proinflammatory cytokines, nitric oxide (NO), and elevations in neutrophil pulmonary infiltration, they presented higher fungal load in lungs and spleen. Infected lung and infected macrophages from Lgals1−/− mice exhibited elevated levels of prostaglandin E2 (PGE2, a prostanoid regulator of macrophage activation) and prostaglandin E synthase 2 (Ptgs2) mRNA. Gal-1 did not bind to cell surface of yeast phase of H. capsulatum, in vitro, suggesting that Gal-1 contributed to phagocytes response to infection rather than directly killing the yeast. The data provides the first demonstration of endogenous Gal-1 in the protective immune response against H. capsulatum associated with NO and PGE2 as an important lipid mediator in the pathogenesis of histoplasmosis.

  • Publication

    Proteomic and functional analysis identifies galectin-1 as a novel regulatory component of the cytotoxic granule machinery

    (Nature Publishing Group, 2017) Clemente, Tiago; Vieira, Narcisio J; Cerliani, Juan P; Adrain, Colin; Luthi, Alexander; Dominguez, Mariana R; Yon, Monica; Barrence, Fernanda C; Riul, Thalita B; Cummings, Richard; Zorn, Telma M; Amigorena, Sebastian; Dias-Baruffi, Marcelo; Rodrigues, Maurício M; Martin, Seamus J; Rabinovich, Gabriel A; Amarante-Mendes, Gustavo P

    Secretory granules released by cytotoxic T lymphocytes (CTLs) are powerful weapons against intracellular microbes and tumor cells. Despite significant progress, there is still limited information on the molecular mechanisms implicated in target-driven degranulation, effector cell survival and composition and structure of the lytic granules. Here, using a proteomic approach we identified a panel of putative cytotoxic granule proteins, including some already known granule constituents and novel proteins that contribute to regulate the CTL lytic machinery. Particularly, we identified galectin-1 (Gal1), an endogenous immune regulatory lectin, as an integral component of the secretory granule machinery and unveil the unexpected function of this lectin in regulating CTL killing activity. Mechanistic studies revealed the ability of Gal1 to control the non-secretory lytic pathway by influencing Fas–Fas ligand interactions. This study offers new insights on the composition of the cytotoxic granule machinery, highlighting the dynamic cross talk between secretory and non-secretory pathways in controlling CTL lytic function.