Related Experiment Video
Updated: Aug 28, 2025

An Ex vivo Assay to Study Candida albicans Hyphal Morphogenesis in the Gastrointestinal Tract
Published on: July 1, 2020
Cek1 regulates ß(1,3)-glucan exposure through calcineurin effectors in Candida albicans
Andrew S Wagner1, Stephen W Lumsdaine1, Mikayla M Mangrum1
1Department of Microbiology, University of Tennessee at Knoxville, Knoxville, Tennessee, United States of America.
Abstract:
In order to successfully induce disease, the fungal pathogen Candida albicans regulates exposure of antigens like the cell wall polysaccharide ß(1,3)-glucan to the host immune system. C. albicans covers (masks) ß(1,3)-glucan with a layer of mannosylated glycoproteins, which aids in immune system evasion by acting as a barrier to recognition by host pattern recognition receptors. Consequently, enhanced ß(1,3)-glucan exposure (unmasking) makes fungal cells more visible to host immune cells and facilitates more robust fungal clearance. However, an understanding of how C. albicans regulates its exposure levels of ß(1,3)-glucan is needed to leverage this phenotype. Signal transduction pathways and their corresponding effector genes mediating these changes are only beginning to be defined. Here, we report that the phosphatase calcineurin mediates unmasking of ß(1,3)-glucan in response to inputs from the Cek1 MAPK pathway and in response to caspofungin exposure. In contrast, calcineurin reduces ß-glucan exposure in response to high levels of extracellular calcium. Thus, depending on the input, calcineurin acts as a switchboard to regulate ß(1,3)-glucan exposure levels. By leveraging these differential ß(1,3)-glucan exposure phenotypes, we identified two novel effector genes in the calcineurin regulon, FGR41 and C1_11990W_A, that encode putative cell wall proteins and mediate masking/unmasking. Loss of either effector caused unmasking and attenuated virulence during systemic infection in mice. Furthermore, immunosuppression restored the colonization decrease seen in mice infected with the fgr41Δ/Δ mutant to wild-type levels, demonstrating a reliance on the host immune system for virulence attenuation. Thus, calcineurin and its downstream regulon are general regulators of unmasking.
Insights
Candida albicans regulates exposure of fungal antigens like ß(1,3)-glucan to evade the immune system. The phosphatase calcineurin acts as a switchboard, controlling this antigen exposure and impacting fungal virulence.
Area of Science:
- Mycology
- Immunology
- Molecular Biology
Background:
- * Candida albicans* evades host immunity by masking cell wall antigens, such as ß(1,3)-glucan, with mannoproteins.
- * Unmasking* of ß(1,3)-glucan increases fungal visibility to immune cells, enhancing clearance.
- * Understanding the regulation of ß(1,3)-glucan exposure is crucial for developing anti-fungal strategies.
Purpose of the Study:
- * To investigate the role of calcineurin in regulating ß(1,3)-glucan exposure in *C. albicans*.
- * To identify downstream effector genes involved in the calcineurin-mediated masking/unmasking.
- * To assess the impact of calcineurin and its effectors on fungal virulence.
Main Methods:
- * Investigated calcineurin's role using genetic manipulation and exposure to caspofungin and high calcium.
- * Identified effector genes (FGR41, C1_11990W_A) in the calcineurin regulon.
- * Assessed virulence in a mouse model of systemic infection, including experiments with immunosuppression.
Main Results:
- * Calcineurin mediates ß(1,3)-glucan unmasking in response to the Cek1 MAPK pathway and caspofungin.
- * Calcineurin reduces ß-glucan exposure when extracellular calcium is high.
- * Loss of effector genes FGR41 or C1_11990W_A resulted in unmasking and attenuated virulence.
- * Attenuated virulence in *fgr41Δ/Δ* mutants was reversed by immunosuppression, indicating immune system dependence.
Conclusions:
- * Calcineurin acts as a regulatory switch for ß(1,3)-glucan exposure in *C. albicans*.
- * Novel effector genes FGR41 and C1_11990W_A are key regulators of masking/unmasking and virulence.
- * Calcineurin and its regulon are critical for controlling fungal virulence through immune system interaction.
More Related Videos
09:44Small-Scale Plasma Membrane Preparation for the Analysis of Candida albicans Cdr1-mGFPHis
Published on: June 13, 2021
09:24Use of In Vivo Imaging to Screen for Morphogenesis Phenotypes in Candida albicans Mutant Strains During Active Infection in a Mammalian Host
Published on: October 12, 2022
Related Concept Videos
cAMP-dependent Protein Kinase Pathways
Calmodulin-dependent Signaling
The Ca2+-CaM complex does not have enzymatic activity by itself. Instead, the complex binds downstream target proteins, including membrane proteins or enzymes,...
Inhibition of Cdk Activity
GPCRs Regulate Adenylyl Cylase Activity
Global Regulatory Systems
Caspases