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Updated: Aug 19, 2026

Automated Measurement of Cryptococcal Species Polysaccharide Capsule and Cell Body
Published on: January 11, 2018
Iron-regulated transcription and capsule formation in the fungal pathogen Cryptococcus neoformans
Tianshun Lian1, Megan I Simmer, Cletus A D'Souza
1The Michael Smith Laboratories, Department of Microbiology and Immunology, and Faculty of Agricultural Sciences, The University of British Columbia, Vancouver, BC V6T 1Z4, Canada.
Abstract:
Cryptococcus neoformans is the leading cause of fungal meningitis in humans. Production of a polysaccharide capsule is a key virulence property for the fungus and capsule synthesis is regulated by iron levels. Given that iron acquisition is an important aspect of virulence for many pathogens, we employed serial analysis of gene expression (SAGE) to examine the transcriptome under iron-limiting and iron-replete conditions. Initially, we demonstrated by SAGE and Northern analysis that iron limitation results in an elevated transcript level for the CAP60 gene that is required for capsule production. We also identified genes encoding putative components for iron transport and homeostasis, including the FTR1 (iron permease) gene, with higher transcript levels in the low-iron condition. An FTR1 disruption mutant grows more slowly than wild-type cells in low-iron medium, and shows delayed growth and altered capsule regulation in iron-replete medium. Iron deprivation also resulted in elevated SAGE tags for putative extracellular mannoproteins and the GPI8 gene encoding a glycosylphosphatidylinositol (GPI) transamidase. The GPI8 gene appears to be essential while disruption of the CIG1 gene encoding a mannoprotein resulted in impaired growth in low-iron medium and altered capsule response to the iron-replete condition. Additionally, we found that iron-replete conditions led to elevated transcripts for genes for iron storage, nitrogen metabolism, glycolysis, mitochondrial function, lipid metabolism and calmodulin-calcineurin signalling. Overall, these studies provide the first view of the C. neoformans transcriptional response to different iron levels.
Insights
This study reveals how Cryptococcus neoformans regulates its capsule production and iron uptake. Iron levels significantly impact fungal virulence, affecting gene expression for capsule synthesis and iron transport.
Area of Science:
- Mycology
- Molecular Biology
- Pathogen Virulence
Background:
- Cryptococcus neoformans causes fungal meningitis.
- Polysaccharide capsule is a key virulence factor.
- Capsule synthesis is regulated by iron availability.
Purpose of the Study:
- To investigate the transcriptional response of C. neoformans to iron-limiting and iron-replete conditions.
- To identify genes involved in iron acquisition, capsule production, and homeostasis.
Main Methods:
- Serial analysis of gene expression (SAGE) to analyze transcriptomes.
- Northern analysis to confirm gene expression levels.
- Gene disruption to study mutant phenotypes.
Main Results:
- Iron limitation upregulates CAP60 (capsule production) and iron transport genes (e.g., FTR1).
- FTR1 disruption impairs growth in low iron and alters capsule regulation.
- Iron deprivation also increases transcripts for mannoproteins and GPI8.
- Iron-replete conditions upregulate genes for iron storage, metabolism, and signaling.
Conclusions:
- This study provides the first comprehensive view of C. neoformans transcriptional response to iron levels.
- Iron homeostasis is crucial for C. neoformans virulence, impacting capsule formation and growth.
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