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Macrophage Cholesterol Depletion and Its Effect on the Phagocytosis of Cryptococcus neoformans
Published on: December 19, 2014
The Monothiol Glutaredoxin Grx4 Regulates Iron Homeostasis and Virulence in Cryptococcus neoformans
Rodgoun Attarian1,2, Guanggan Hu1, Eddy Sánchez-León1
1Michael Smith Laboratories, University of British Columbia, Vancouver, British Columbia, Canada.
Abstract:
The acquisition of iron and the maintenance of iron homeostasis are important aspects of virulence for the pathogenic fungus Cryptococcus neoformans In this study, we characterized the role of the monothiol glutaredoxin Grx4 in iron homeostasis and virulence in C. neoformans Monothiol glutaredoxins are important regulators of iron homeostasis because of their conserved roles in [2Fe-2S] cluster sensing and trafficking. We initially identified Grx4 as a binding partner of Cir1, a master regulator of iron-responsive genes and virulence factor elaboration in C. neoformans We confirmed that Grx4 binds Cir1 and demonstrated that iron repletion promotes the relocalization of Grx4 from the nucleus to the cytoplasm. We also found that a grx4 mutant lacking the GRX domain displayed iron-related phenotypes similar to those of a cir1Δ mutant, including poor growth upon iron deprivation. Importantly, the grx4 mutant was avirulent in mice, a phenotype consistent with observed defects in the key virulence determinants, capsule and melanin, and poor growth at 37°C. A comparative transcriptome analysis of the grx4 mutant and the WT strain under low-iron and iron-replete conditions confirmed a central role for Grx4 in iron homeostasis. Dysregulation of iron-related metabolism was consistent with grx4 mutant phenotypes related to oxidative stress, mitochondrial function, and DNA repair. Overall, the phenotypes of the grx4 mutant lacking the GRX domain and the transcriptome sequencing (RNA-Seq) analysis of the mutant support the hypothesis that Grx4 functions as an iron sensor, in part through an interaction with Cir1, to extensively regulate iron homeostasis.IMPORTANCE Fungal pathogens cause life-threatening diseases in humans, particularly in immunocompromised people, and there is a tremendous need for a greater understanding of pathogenesis to support new therapies. One prominent fungal pathogen, Cryptococcus neoformans, causes meningitis in people suffering from HIV/AIDS. In the present study, we focused on characterizing mechanisms by which C. neoformans senses iron availability because iron is both a signal and a key nutrient for proliferation of the pathogen in vertebrate hosts. Specifically, we characterized a monothiol glutaredoxin protein, Grx4, that functions as a sensor of iron availability and interacts with regulatory factors to control the ability of C. neoformans to cause disease. Grx4 regulates key virulence factors, and a mutant is unable to cause disease in a mouse model of cryptococcosis. Overall, our study provides new insights into nutrient sensing and the role of iron in the pathogenesis of fungal diseases.
Insights
The fungal pathogen Cryptococcus neoformans uses Grx4 protein to sense iron availability, regulating its virulence. A Grx4 mutant showed impaired iron homeostasis and was unable to cause disease in mice.
Area of Science:
- Microbiology
- Molecular Biology
- Pathogenesis
Background:
- Iron acquisition and homeostasis are critical for the virulence of pathogenic fungi like Cryptococcus neoformans.
- Monothiol glutaredoxins, such as Grx4, are known regulators of iron homeostasis due to their role in sensing and trafficking [2Fe-2S] clusters.
Purpose of the Study:
- To investigate the role of the monothiol glutaredoxin Grx4 in iron homeostasis and virulence in Cryptococcus neoformans.
- To understand the interaction between Grx4 and Cir1, a master regulator of iron-responsive genes.
Main Methods:
- Yeast two-hybrid assays to confirm Grx4-Cir1 interaction.
- Microscopy to observe Grx4 relocalization upon iron repletion.
- Phenotypic analysis of a grx4 mutant under iron-deprived conditions.
- Murine model of cryptococcosis to assess virulence.
- Comparative transcriptome analysis (RNA-Seq) of grx4 mutant and wild-type strains.
Main Results:
- Grx4 was confirmed to bind Cir1, with iron repletion causing Grx4 to relocalize from the nucleus to the cytoplasm.
- A grx4 mutant exhibited poor growth under iron deprivation and was avirulent in mice.
- The grx4 mutant showed defects in capsule and melanin production and impaired growth at 37°C.
- Transcriptome analysis revealed Grx4's central role in iron homeostasis, affecting oxidative stress, mitochondrial function, and DNA repair.
Conclusions:
- Grx4 functions as an iron sensor, partly through interaction with Cir1, to regulate iron homeostasis in Cryptococcus neoformans.
- Grx4 is essential for the virulence of Cryptococcus neoformans, impacting key virulence factors and host colonization.
- This study provides new insights into nutrient sensing mechanisms and the role of iron in fungal pathogenesis.
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