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Live-cell Video Microscopy of Fungal Pathogen Phagocytosis
Published on: January 9, 2013
Candida albicans Cells Lacking AP-2 Have Defective Hyphae and Are Avirulent Despite Increased Host Uptake and
Stella Christou1, Shannon Evans2, Harriet Knafler1
1School of Biosciences, University of Sheffield, Sheffield, United Kingdom.
Abstract:
Candida albicans is a commensal microbe and opportunistic human pathogen. Candida yeast are recognized and taken up by macrophages via phagocytosis. Macrophage surface receptors bind to specific components of the Candida cell wall. Following phagocytosis, Candida can respond to the host's intracellular environment by switching from a yeast to a hyphal morphology facilitating escape from macrophages and allowing subsequent invasion of host tissues. Various disruptions of Candida's ability to form hyphae have been shown to reduce virulence and fitness in the host. Our previous work concluded that Candida albicans cells lacking AP-2 (apm4Δ/Δ), an endocytic adaptor complex, have increased cell wall chitin and morphologically defective hyphae in vitro. Increased chitin has been correlated with decreased recognition by macrophages, possibly due to masking of cell wall β-glucan, the target for the Dectin-1 immune receptor. Here we test the virulence profiles of apm4Δ/Δ mutant, demonstrating a surprising increase in macrophage phagocytosis that does not occur due to the elevated exposure of β-glucan, highlighting the importance of cell wall components beyond chitin and glucan for macrophage engagement and uptake. Furthermore, the apm4 mutant exhibited parasitism of macrophages, surviving and proliferating within the phagosome, a phenotype that was then replicated with a well-characterized yeast locked mutant, demonstrating the further complexity of C. albicans' ability to evade macrophage responses. Finally, the combined phenotype of reduced hyphal formation but continued proliferation resulted in reduced virulence despite an equivalent burden of infection with wild-type Candida infection, as determined using a zebrafish larval model of candidiasis.
Insights
Candida albicans lacking AP-2 shows increased macrophage uptake and survival within phagocytes. This leads to reduced virulence in a zebrafish model, despite impaired hyphal formation.
Area of Science:
- Microbiology
- Immunology
- Pathogenesis
Background:
- Candida albicans is an opportunistic pathogen that invades host tissues by forming hyphae after phagocytosis by macrophages.
- The AP-2 complex (apm4Δ/Δ) in Candida albicans is crucial for proper hyphal formation and influences cell wall composition.
- Previous studies suggested increased chitin in apm4Δ/Δ mutants might reduce macrophage recognition by masking β-glucan.
Purpose of the Study:
- To investigate the virulence profile of the apm4Δ/Δ Candida albicans mutant.
- To determine the mechanisms underlying macrophage interaction and intracellular survival of the apm4Δ/Δ mutant.
- To assess the overall virulence of the apm4Δ/Δ mutant in a host model.
Main Methods:
- Macrophage phagocytosis assays were performed with wild-type and apm4Δ/Δ Candida albicans.
- Intracellular survival and proliferation within macrophages were analyzed.
- Virulence was assessed using a zebrafish larval model of candidiasis.
Main Results:
- The apm4Δ/Δ mutant exhibited increased phagocytosis by macrophages, independent of β-glucan exposure.
- The mutant demonstrated macrophage parasitism, surviving and proliferating within phagosomes.
- Despite reduced hyphal formation, the apm4Δ/Δ mutant showed reduced virulence in the zebrafish model, with an equivalent infection burden compared to wild-type.
Conclusions:
- Candida albicans cell wall components beyond chitin and β-glucan are critical for macrophage engagement.
- The ability to survive and proliferate within macrophages contributes to Candida albicans pathogenesis.
- Impaired hyphal formation coupled with intracellular proliferation results in complex virulence dynamics and reduced overall pathogenicity in vivo.

