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An Immunogenic and Slow-Growing Cryptococcal Strain Induces a Chronic Granulomatous Infection in Murine Lungs
Calla L Telzrow1,2, Shannon Esher Righi3, Natalia Castro-Lopez4,5
1Department of Medicine, Duke University School of Medicine, Durham, North Carolina, USA.
Abstract:
Many successful pathogens cause latent infections, remaining dormant within the host for years but retaining the ability to reactivate to cause symptomatic disease. The human opportunistic fungal pathogen Cryptococcus neoformans establishes latent pulmonary infections in immunocompetent individuals upon inhalation from the environment. These latent infections are frequently characterized by granulomas, or foci of chronic inflammation, that contain dormant and persistent cryptococcal cells. Immunosuppression can cause these granulomas to break down and release fungal cells that proliferate, disseminate, and eventually cause lethal cryptococcosis. This course of fungal latency and reactivation is understudied due to limited models, as chronic pulmonary granulomas do not typically form in mouse cryptococcal infections. A loss-of-function mutation in the Cryptococcus-specific MAR1 gene was previously described to alter cell surface remodeling in response to host signals. Here, we demonstrate that the mar1Δ mutant strain persists long term in a murine inhalation model of cryptococcosis, inducing a chronic pulmonary granulomatous response. We find that murine infections with the mar1Δ mutant strain are characterized by reduced fungal burden, likely due to the low growth rate of the mar1Δ mutant strain at physiological temperature, and an altered host immune response, likely due to inability of the mar1Δ mutant strain to properly employ virulence factors. We propose that this combination of features in the mar1Δ mutant strain collectively promotes the induction of a more chronic inflammatory response and enables long-term fungal persistence within these granulomatous regions.
Insights
The Cryptococcus neoformans MAR1 gene is crucial for fungal virulence. Disabling MAR1 in a mouse model promotes long-term latent pulmonary infections and granuloma formation, offering new insights into fungal persistence.
Area of Science:
- Mycology
- Immunology
- Pathogenesis
Background:
- * Cryptococcus neoformans causes latent pulmonary infections, often forming granulomas in immunocompetent hosts.
- * Reactivation of latent infections under immunosuppression leads to lethal disease.
- * Current mouse models poorly replicate chronic pulmonary granulomas, limiting latency studies.
Purpose of the Study:
- * To investigate the role of the Cryptococcus-specific MAR1 gene in fungal latency and granuloma formation.
- * To develop a murine model that better mimics chronic pulmonary cryptococcal infections.
Main Methods:
- * Generated a loss-of-function mutant (mar1Δ) of Cryptococcus neoformans.
- * Utilized a murine inhalation model to study long-term pulmonary infections with the mar1Δ mutant.
- * Assessed fungal burden, granuloma formation, and host immune response.
Main Results:
- * The mar1Δ mutant strain persisted long-term in mice, inducing chronic pulmonary granulomas.
- * Infections with mar1Δ showed reduced fungal burden compared to wild-type.
- * The mar1Δ mutant exhibited altered host immune responses and impaired virulence factor deployment.
Conclusions:
- * Disruption of the MAR1 gene promotes long-term fungal persistence and granuloma induction in a murine model.
- * The mar1Δ mutant's altered growth and virulence contribute to a chronic inflammatory response, facilitating latency.
- * This study provides a valuable model for investigating fungal latency and persistence mechanisms.
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