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Updated: Dec 15, 2025

Staphylococcus aureus Growth using Human Hemoglobin as an Iron Source
Published on: February 7, 2013
Adaptation to iron deficiency in human pathogenic fungi
María Teresa Martínez-Pastor1, Sergi Puig2
1Departamento de Bioquímica y Biología Molecular, Universitat de València, Burjassot, Valencia, Spain.
Abstract:
Iron is an essential micronutrient for virtually all eukaryotic organisms and plays a central role during microbial infections. Invasive fungal diseases are associated with strikingly high rates of mortality, but their impact on human health is usually underestimated. Upon a fungal infection, hosts restrict iron availability in order to limit the growth and virulence of the pathogen. Here, we use two model yeasts, Saccharomyces cerevisiae and Schizosaccharomyces pombe, to delve into the response to iron deficiency of human fungal pathogens, such as Candida glabrata, Candida albicans, Aspergillus fumigatus and Cryptococcus neoformans. Fungi possess common and species-specific mechanisms to acquire iron and to control the response to iron limitation. Upon iron scarcity, fungi activate a wide range of elegant strategies to capture and import exogenous iron, mobilize iron from intracellular stores, and modulate their metabolism to economize and prioritize iron utilization. Hence, iron homeostasis genes represent remarkable virulence factors that can be used as targets for the development of novel antifungal treatments.
Insights
Fungi employ diverse strategies to manage iron scarcity during infections. Understanding these iron homeostasis mechanisms could lead to new antifungal treatments targeting fungal virulence.
Area of Science:
- Microbiology
- Molecular Biology
- Mycology
Background:
- Iron is vital for all eukaryotes, including fungi.
- Fungal infections cause high mortality, yet their impact is often underestimated.
- Host immune responses restrict iron availability to combat fungal pathogens.
Purpose of the Study:
- To investigate the iron deficiency response in human fungal pathogens.
- To explore common and specific mechanisms fungi use to acquire and manage iron.
Main Methods:
- Utilized model yeasts Saccharomyces cerevisiae and Schizosaccharomyces pombe.
- Studied iron acquisition and homeostasis in Candida glabrata, Candida albicans, Aspergillus fumigatus, and Cryptococcus neoformans.
Main Results:
- Fungi activate diverse strategies to cope with iron scarcity.
- Mechanisms include capturing external iron, mobilizing internal stores, and metabolic adjustments.
- Identified common and species-specific iron management pathways.
Conclusions:
- Iron homeostasis is crucial for fungal virulence.
- Targeting iron homeostasis genes offers a promising strategy for novel antifungal drug development.
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