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Visualizing Non-lytic Exocytosis of Cryptococcus neoformans from Macrophages Using Digital Light Microscopy
Published on: October 21, 2014
Regulated Release of Cryptococcal Polysaccharide Drives Virulence and Suppresses Immune Cell Infiltration into the
Steven T Denham1, Surbhi Verma1, Raymond C Reynolds1
1Division of Microbiology and Immunology, Pathology Department, University of Utah School of Medicine, Salt Lake City, Utah, USA.
Abstract:
Cryptococcus neoformans is a common environmental yeast and opportunistic pathogen responsible for 15% of AIDS-related deaths worldwide. Mortality primarily results from meningoencephalitis, which occurs when fungal cells disseminate to the brain from the initial pulmonary infection site. A key C. neoformans virulence trait is the polysaccharide capsule. Capsule shields C. neoformans from immune-mediated recognition and destruction. The main capsule component, glucuronoxylomannan (GXM), is found both attached to the cell surface and free in the extracellular space (as exo-GXM). Exo-GXM accumulates in patient serum and cerebrospinal fluid at microgram/milliliter concentrations, has well-documented immunosuppressive properties, and correlates with poor patient outcomes. However, it is poorly understood whether exo-GXM release is regulated or the result of shedding during normal capsule turnover. We demonstrate that exo-GXM release is regulated by environmental cues and inversely correlates with surface capsule levels. We identified genes specifically involved in exo-GXM release that do not alter surface capsule thickness. The first mutant, the liv7Δ strain, released less GXM than wild-type cells when capsule was not induced. The second mutant, the cnag_00658Δ strain, released more exo-GXM under capsule-inducing conditions. Exo-GXM release observed in vitro correlated with polystyrene adherence, virulence, and fungal burden during murine infection. Additionally, we found that exo-GXM reduced cell size and capsule thickness under capsule-inducing conditions, potentially influencing dissemination. Finally, we demonstrated that exo-GXM prevents immune cell infiltration into the brain during disseminated infection and highly inflammatory intracranial infection. Our data suggest that exo-GXM performs a distinct role from capsule GXM during infection, altering cell size and suppressing inflammation.
Insights
Cryptococcus neoformans releases external glucuronoxylomannan (GXM) in a regulated manner, impacting fungal virulence and immune evasion. This shedding influences cell size and suppresses brain inflammation during infection.
Area of Science:
- Mycology
- Infectious Diseases
- Immunology
Background:
- Cryptococcus neoformans is an opportunistic fungal pathogen causing life-threatening meningoencephalitis, particularly in AIDS patients.
- The fungal polysaccharide capsule, primarily glucuronoxylomannan (GXM), is a key virulence factor, shielding the yeast from immune responses.
- External GXM (exo-GXM) accumulates in patients, correlates with poor outcomes, and possesses immunosuppressive properties, but its release mechanism is unclear.
Purpose of the Study:
- To investigate whether exo-GXM release is a regulated process distinct from surface capsule turnover.
- To identify genetic factors influencing exo-GXM release.
- To determine the role of exo-GXM in fungal virulence, dissemination, and host immune response during cryptococcal meningoencephalitis.
Main Methods:
- Generated and analyzed gene deletion mutants (liv7Δ, cnag_00658Δ) to study exo-GXM release under varying environmental conditions.
- Quantified GXM levels in culture supernatants and on cell surfaces.
- Assessed fungal adherence, virulence, fungal burden in murine infection models, and immune cell infiltration in the brain.
Main Results:
- Exo-GXM release is regulated by environmental cues and inversely correlates with surface capsule levels.
- Mutants exhibited altered exo-GXM release, with liv7Δ releasing less and cnag_00658Δ releasing more under specific conditions.
- In vitro exo-GXM release correlated with polystyrene adherence, virulence, and fungal burden; exo-GXM reduced cell size and capsule thickness, and suppressed immune cell infiltration in the brain.
Conclusions:
- Exo-GXM release is a regulated process, distinct from surface capsule maintenance.
- Specific genes control exo-GXM release, influencing fungal virulence and dissemination.
- Exo-GXM plays a unique role in cryptococcal infection by modulating fungal cell properties and suppressing critical inflammatory responses in the brain.
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