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Published on: July 24, 2021
Calcineurin controls growth, morphology, and pathogenicity in Aspergillus fumigatus
William J Steinbach1, Robert A Cramer, B Zachary Perfect
1Department of Pediatrics, Division of Pediatric Infectious Diseases, Box 3499, Duke University Medical Center, Durham, North Carolina 27710, USA. stein022@mc.duke.edu
Abstract:
Calcineurin is implicated in a myriad of human diseases as well as homeostasis and virulence in several major human pathogenic microorganisms. The fungus Aspergillus fumigatus is a leading cause of infectious death in the rapidly expanding immunocompromised patient population. Current antifungal treatments for invasive aspergillosis are often ineffective, and novel therapeutic approaches are urgently needed. We demonstrate that a mutant of A. fumigatus lacking the calcineurin A (cnaA) catalytic subunit exhibited defective hyphal morphology related to apical extension and polarized growth, which resulted in drastically decreased filamentation. The delta cnaA mutant lacked the extensive lattice of invading hyphae seen with the wild-type and complemented strains. Sporulation was also affected in the delta cnaA mutant, including morphological conidial defects with the absence of surface rodlets and the added presence of disjunctors creating long conidial chains. Infection with the delta cnaA mutant in several distinct animal models with different types of immunosuppression and inoculum delivery led to a profound attenuation of pathogenicity compared to infection with the wild-type and complemented strains. Lung tissue from animals infected with the delta cnaA mutant showed a complete absence of hyphae, in contrast to tissue from animals infected with the wild-type and complemented strains. Quantitative fungal burden and pulmonary infarct scoring confirmed these findings. Our results support the clinical observation that substantially decreasing fungal growth can prevent disease establishment and decrease mortality. Our findings reveal that calcineurin appears to play a globally conserved role in the virulence of several pathogenic fungi and yet plays specialized roles in each and can be an excellent target for therapeutic intervention.
Insights
Targeting calcineurin in Aspergillus fumigatus disrupts fungal growth and pathogenicity. Deleting the calcineurin A gene (cnaA) in this fungus significantly reduces its ability to cause invasive aspergillosis in animal models.
Area of Science:
- Medical Mycology
- Molecular Biology
- Pathogen Virulence
Background:
- Calcineurin is crucial for fungal homeostasis and virulence.
- Aspergillus fumigatus causes life-threatening invasive aspergillosis in immunocompromised individuals.
- Existing antifungal treatments for invasive aspergillosis have limitations, necessitating new therapeutic strategies.
Purpose of the Study:
- To investigate the role of calcineurin A (cnaA) in the virulence of Aspergillus fumigatus.
- To assess the potential of targeting calcineurin as a therapeutic strategy against invasive aspergillosis.
Main Methods:
- Generation and characterization of an Aspergillus fumigatus mutant lacking the cnaA gene (delta cnaA).
- Assessment of hyphal morphology, filamentation, and sporulation in the delta cnaA mutant.
- Evaluation of pathogenicity in multiple animal models of invasive aspergillosis using the delta cnaA mutant, wild-type, and complemented strains.
Main Results:
- The delta cnaA mutant displayed defective hyphal morphology, reduced filamentation, and impaired sporulation.
- Infection with the delta cnaA mutant resulted in significantly attenuated pathogenicity across various animal models.
- Histopathological analysis revealed a complete absence of fungal hyphae in lung tissues infected with the delta cnaA mutant.
Conclusions:
- Calcineurin plays a critical role in Aspergillus fumigatus virulence and pathogenicity.
- Disrupting calcineurin function severely compromises the fungus's ability to establish infection and cause disease.
- Calcineurin represents a promising therapeutic target for developing novel antifungal treatments against invasive aspergillosis.
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