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An Ex vivo Assay to Study Candida albicans Hyphal Morphogenesis in the Gastrointestinal Tract
Published on: July 1, 2020
Zinc Limitation Induces a Hyper-Adherent Goliath Phenotype in Candida albicans
Dhara Malavia1, Laura E Lehtovirta-Morley1,2, Omran Alamir1
1Medical Research Council Centre for Medical Mycology at the University of Aberdeen, Aberdeen Fungal Group, Aberdeen, United Kingdom.
Abstract:
Pathogenic microorganisms often face acute micronutrient limitation during infection due to the action of host-mediated nutritional immunity. The human fungal pathogen Candida albicans is polymorphic and its morphological plasticity is one of its most widely recognized pathogenicity attributes. Here we investigated the effect of zinc, iron, manganese, and copper limitation on C. albicans morphology. Restriction of zinc specifically resulted in the formation of enlarged, spherical yeasts, a phenotype which we term Goliath cells. This cellular response to zinc restriction was conserved in C. albicans, C. dubliniensis and C. tropicalis, but not in C. parapsilosis, C. lusitaniae or Debaryomyces hansenii, suggesting that it may have emerged in the last common ancestor of these related pathogenic species. Cell wall analysis revealed proportionally more chitin exposure on the Goliath cell surface. Importantly, these cells were hyper-adherent, suggesting a possible role in pathogenicity. Interestingly, the zincophore-encoding gene PRA1 was expressed by Goliath cells in zinc limited media and lack of Pra1 inhibited both cellular enlargement and adhesion. Goliath cells represent a further layer of Candida phenotypic plasticity.
Insights
Zinc limitation causes pathogenic fungi like Candida albicans to form "Goliath cells." These enlarged, hyper-adherent cells, with increased chitin, suggest a new fungal survival strategy during host nutritional immunity.
Area of Science:
- Mycology
- Pathogen Biology
- Cellular Morphology
Background:
- Pathogenic microbes face nutrient scarcity from host nutritional immunity.
- Candida albicans exhibits morphological plasticity, a key virulence factor.
Purpose of the Study:
- Investigate the impact of zinc, iron, manganese, and copper limitation on Candida albicans morphology.
- Characterize the novel cellular response to zinc restriction.
Main Methods:
- Culturing Candida albicans under various micronutrient limitations.
- Microscopy to observe cell morphology.
- Cell wall analysis (chitin exposure).
- Gene expression analysis (PRA1).
Main Results:
- Zinc restriction induced enlarged, spherical yeast cells, termed "Goliath cells."
- This Goliath cell phenotype was conserved in related Candida species but not others.
- Goliath cells showed increased cell wall chitin and hyper-adhesion.
- PRA1 gene expression was linked to Goliath cell formation and adhesion.
Conclusions:
- Zinc limitation triggers a specific morphological adaptation in certain Candida species.
- Goliath cells, with enhanced adhesion, represent a novel pathogenic trait.
- The PRA1 gene plays a role in this zinc-deficiency-induced response.
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