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Published on: November 6, 2020
A Heat-Killed Cryptococcus Mutant Strain Induces Host Protection against Multiple Invasive Mycoses in a Murine
Yina Wang1, Keyi Wang2, Jorge A Masso-Silva2
1Public Health Research Institute, New Jersey Medical School, Rutgers University, Newark, New Jersey, USA.
Abstract:
Cryptococcus neoformans is a fungal pathogen that infects the lungs and then often disseminates to the central nervous system, causing meningitis. How Cryptococcus is able to suppress host immunity and escape the antifungal activity of macrophages remains incompletely understood. We reported that the F-box protein Fbp1, a subunit of the SCF(Fbp1) E3 ligase, promotes Cryptococcus virulence by regulating host-Cryptococcus interactions. Our recent studies demonstrated that the fbp1Δ mutant elicited superior protective Th1 host immunity in the lungs and that the enhanced immunogenicity of heat-killed fbp1Δ yeast cells can be harnessed to confer protection against a subsequent infection with the virulent parental strain. We therefore examined the use of heat-killed fbp1Δ cells in several vaccination strategies. Interestingly, the vaccine protection remains effective even in mice depleted of CD4+ T cells. This finding is particularly important in the context of HIV/AIDS-induced immune deficiency. Moreover, we observed that vaccinating mice with heat-killed fbp1Δ induces significant cross-protection against challenge with diverse invasive fungal pathogens, including C. neoformans, C. gattii, and Aspergillus fumigatus, as well as partial protection against Candida albicans Thus, our data suggest that the heat-killed fbp1Δ strain has the potential to be a suitable vaccine candidate against cryptococcosis and other invasive fungal infections in both immunocompetent and immunocompromised populations.IMPORTANCE Invasive fungal infections kill more than 1.5 million people each year, with limited treatment options. There is no vaccine available in clinical use to prevent and control fungal infections. Our recent studies showed that a mutant of the F-box protein Fbp1, a subunit of the SCF(Fbp1) E3 ligase in Cryptococcus neoformans, elicited superior protective Th1 host immunity. Here, we demonstrate that the heat-killed fbp1Δ cells (HK-fbp1) can be harnessed to confer protection against a challenge by the virulent parental strain, even in animals depleted of CD4+ T cells. This finding is particularly important in the context of HIV/AIDS-induced immune deficiency. Moreover, we observed that HK-fbp1 vaccination induces significant cross-protection against challenge with diverse invasive fungal pathogens. Thus, our data suggest that HK-fbp1 has the potential to be a broad-spectrum vaccine candidate against invasive fungal infections in both immunocompetent and immunocompromised populations.
Insights
Heat-killed Cryptococcus neoformans fbp1Δ cells (HK-fbp1) show potential as a broad-spectrum vaccine against invasive fungal infections. This vaccine offers protection even in immunocompromised individuals, including those with HIV/AIDS.
Area of Science:
- Mycology
- Immunology
- Vaccinology
Background:
- Invasive fungal infections cause over 1.5 million deaths annually with limited treatment options.
- Cryptococcus neoformans evades host immunity and macrophage activity, leading to meningitis.
- The F-box protein Fbp1 is crucial for Cryptococcus virulence and host-pathogen interactions.
Purpose of the Study:
- To evaluate heat-killed fbp1Δ cells (HK-fbp1) as a vaccine candidate against Cryptococcus neoformans.
- To assess vaccine efficacy in immunocompromised models, specifically CD4+ T cell-depleted mice.
- To determine the cross-protective potential of HK-fbp1 against other invasive fungal pathogens.
Main Methods:
- Vaccination of mice with heat-killed fbp1Δ Cryptococcus neoformans cells.
- Challenge studies with virulent Cryptococcus neoformans strains.
- Assessment of vaccine efficacy in CD4+ T cell-depleted mice.
- Cross-protection assays against Candida albicans, Cryptococcus gattii, and Aspergillus fumigatus.
Main Results:
- Heat-killed fbp1Δ cells elicited superior protective Th1 host immunity.
- Vaccine protection was effective even in CD4+ T cell-depleted mice, relevant for HIV/AIDS.
- Significant cross-protection was observed against C. neoformans, C. gattii, and A. fumigatus.
- Partial protection was noted against Candida albicans.
Conclusions:
- Heat-killed fbp1Δ Cryptococcus neoformans cells are a promising vaccine candidate.
- The vaccine demonstrates potential for broad-spectrum protection against invasive fungal infections.
- HK-fbp1 offers a viable vaccination strategy for both immunocompetent and immunocompromised populations.

