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Updated: Aug 12, 2025

Th17 Inflammation Model of Oropharyngeal Candidiasis in Immunodeficient Mice
Published on: February 18, 2015
Candida albicans oropharyngeal infection is an exception to iron-based nutritional immunity
Norma V Solis1, Rohan S Wakade2, Scott G Filler1,3
1Division of Infectious Diseases, Lundquist Institute for Biomedical Innovation at Harbor-UCLA Medical Center, Torrance, CA.
Abstract:
Candida albicans is a commensal of the human gastrointestinal tract and one of the most causes of human fungal disease, including mucosal infections such as oropharyngeal candidiasis and disseminated infections of the bloodstream and deep organs. We directly compared the in vivo transcriptional profile of C. albicans during oral infection and disseminated infection of the kidney to identify niche specific features. Although the expression of a set of environmentally responsive genes were correlated in the two infection sites (Pearson R 2 , 0.6), XXX genes were differentially expressed. Virulence associated genes such as hyphae-specific transcripts were expressed similarly in the two sites. Genes expressed during growth in a poor carbon source ( ACS1 and PCK1 ) were upregulated in oral tissue relative to kidney. Most strikingly, C. albicans in oral tissue shows the transcriptional hallmarks of an iron-replete state while in the kidney it is in the expected iron starved state. Interestingly, C. albicans expresses genes associated with a low zinc environment in both niches. Consistent with these expression data, deletion of two transcription factors that activate iron uptake genes ( SEF1 , HAP5 ) have no effect on virulence in a mouse model of oral candidiasis. During microbial infection, the host sequesters iron and other metal nutrients to suppress growth of the pathogen in a process called nutritional immunity. Our results indicate that C. albicans is subject to iron and zinc nutritional immunity during disseminated infection but is exempted from iron nutritional immunity during oral infection.
Insights
Candida albicans experiences iron nutritional immunity in kidney infections but not oral infections. This fungal pathogen adapts differently to nutrient availability in distinct host environments.
Area of Science:
- Mycology
- Infectious Diseases
- Host-Pathogen Interactions
Background:
- Candida albicans is a common human commensal and opportunistic fungal pathogen causing mucosal and disseminated infections.
- Understanding how C. albicans adapts to different host niches is crucial for developing targeted therapies.
Approach:
- Directly compared in vivo transcriptional profiles of C. albicans during oral and kidney infections in a mouse model.
- Analyzed differential gene expression, focusing on virulence factors and nutrient acquisition genes.
- Investigated the role of iron and zinc nutritional immunity in distinct infection sites.
Key Points:
- While some gene expression correlated between oral and kidney sites, many genes were differentially expressed.
- C. albicans exhibits an iron-replete transcriptional state in oral tissue but an iron-starved state in the kidney.
- Genes associated with poor carbon sources were upregulated in oral tissue.
- Low zinc environment gene expression was observed in both niches.
- Deletion of iron uptake regulators (SEF1, HAP5) did not impact oral candidiasis virulence.
Conclusions:
- C. albicans is subjected to iron and zinc nutritional immunity during disseminated kidney infection.
- The fungus is largely exempt from iron nutritional immunity during oral infection.
- Niche-specific nutrient availability significantly influences C. albicans gene expression and virulence potential.
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