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Biology subjects

Dang, E. V.

Publications and source records attributed to Dang, E. V..

2 recordsLinked to original sources

Deep tissue infection by an invasive human fungal pathogen requires novel lipid-based suppression of the IL-17 response

Candida albicans is the most common cause of human fungal infection, but the mechanisms of invasive pathogenesis remain poorly defined. Here we identify an unexpected mechanism: lipid-mediated immunosuppression. Through forward genetics, we found that C. albicans secretes a lipase, Lip2, that is critical for invasive disease. Murine infection with C. albicans strains that lack Lip2 display an exaggerated host IL-17 response that leads to fungal clearance from solid organs and host survival. IL-17 signaling is required for Lip2 action. The lipase activity of Lip2 inhibits IL-17 production indirectly through suppression of IL-23 production by tissue resident dendritic cells. We conclude that C. albicans suppresses antifungal IL-17 defense in solid organs by altering the tissue lipid milieu.

microbiology↗

Mechanism of innate immune reprogramming by a fungal meningitis pathogen

How deadly fungal pathogens overcome mammalian innate immunity is largely unknown. Cryptococcus neoformans, the most common cause of fungal meningitis, induces a pathogenic type 2 response characterized by pulmonary eosinophilia and alternatively activated macrophages. Using forward genetics, we identified a fungal secreted protein, Cpl1, necessary and sufficient to enhance alternative activation of primary macrophages in vitro. Cpl1-enhanced polarization requires Toll-like receptor 4, a known mediator of allergen-induced type 2 responses. Cpl1 is essential for virulence, drives polarization of interstitial macrophages in vivo, and requires type 2 cytokine signaling for its impact on infectivity. C. neoformans selectively associates with polarized interstitial macrophages during infection, supporting a direct hostpathogen interaction. This work identifies a secreted effector produced by a human fungal pathogen that reprograms innate immunity to enable tissue infection. One sentence summaryIdentification of a secreted fungal effector that promotes virulence by enhancing type 2 inflammation

immunology↗