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Published on: March 24, 2017
Epitope Shaving Promotes Fungal Immune Evasion
Delma S Childers1, Gabriela Mol Avelar2, Judith M Bain2
1Aberdeen Fungal Group, Institute of Medical Sciences, University of Aberdeen, Aberdeen, United Kingdom delma.childers@abdn.ac.uk a.j.p.brown@exeter.ac.uk.
Abstract:
The cell wall provides a major physical interface between fungal pathogens and their mammalian host. This extracellular armor is critical for fungal cell homeostasis and survival. Fungus-specific cell wall moieties, such as β-1,3-glucan, are recognized as pathogen-associated molecular patterns (PAMPs) that activate immune-mediated clearance mechanisms. We have reported that the opportunistic human fungal pathogen Candida albicans masks β-1,3-glucan following exposure to lactate, hypoxia, or iron depletion. However, the precise mechanism(s) by which C. albicans masks β-1,3-glucan has remained obscure. Here, we identify a secreted exoglucanase, Xog1, that is induced in response to lactate or hypoxia. Xog1 functions downstream of the lactate-induced β-glucan "masking" pathway to promote β-1,3-glucan "shaving." Inactivation of XOG1 blocks most but not all β-1,3-glucan masking in response to lactate, suggesting that other activities contribute to this phenomenon. Nevertheless, XOG1 deletion attenuates the lactate-induced reductions in phagocytosis and cytokine stimulation normally observed for wild-type cells. We also demonstrate that the pharmacological inhibition of exoglucanases undermines β-glucan shaving, enhances the immune visibility of the fungus, and attenuates its virulence. Our study establishes a new mechanism underlying environmentally induced PAMP remodeling that can be manipulated pharmacologically to influence immune recognition and infection outcomes.IMPORTANCE The immune system plays a critical role in protecting us against potentially fatal fungal infections. However, some fungal pathogens have evolved evasion strategies that reduce the efficacy of our immune defenses. Previously, we reported that the fungal pathogen Candida albicans exploits specific host-derived signals (such as lactate and hypoxia) to trigger an immune evasion strategy that involves reducing the exposure of β-glucan at its cell surface. Here, we show that this phenomenon is mediated by the induction of a major secreted exoglucanase (Xog1) by the fungus in response to these host signals. Inactivating XOG1-mediated "shaving" of cell surface-exposed β-glucan enhances immune responses against the fungus. Furthermore, inhibiting exoglucanase activity pharmacologically attenuates C. albicans virulence. In addition to revealing the mechanism underlying a key immune evasion strategy in a major fungal pathogen of humans, our work highlights the potential therapeutic value of drugs that block fungal immune evasion.
Insights
The opportunistic fungal pathogen Candida albicans uses a secreted enzyme, Xog1, to mask its cell wall components, reducing immune detection. Inhibiting this enzyme enhances immune responses and reduces fungal virulence, offering a potential therapeutic strategy.
Area of Science:
- Mycology
- Immunology
- Biochemistry
Background:
- The fungal cell wall is a critical interface for host-pathogen interactions.
- Pathogen-associated molecular patterns (PAMPs) on fungal cell walls, like β-1,3-glucan, trigger host immune responses.
- Candida albicans employs immune evasion strategies by masking β-1,3-glucan under specific host conditions.
Purpose of the Study:
- To elucidate the mechanism by which Candida albicans masks β-1,3-glucan in response to host-derived signals.
- To identify key enzymes involved in the β-1,3-glucan masking process.
- To evaluate the therapeutic potential of targeting this immune evasion mechanism.
Main Methods:
- Induction of Xog1 exoglucanase in response to lactate or hypoxia.
- Genetic inactivation of the XOG1 gene in Candida albicans.
- Assessment of β-1,3-glucan exposure on the fungal cell surface.
- Measurement of phagocytosis and cytokine stimulation by immune cells.
- Pharmacological inhibition of exoglucanase activity.
Main Results:
- A secreted exoglucanase, Xog1, was identified and shown to be induced by lactate and hypoxia.
- Xog1 mediates the 'shaving' of β-1,3-glucan from the fungal cell surface, contributing to masking.
- XOG1 deletion partially blocked β-1,3-glucan masking and attenuated reductions in phagocytosis and cytokine stimulation.
- Pharmacological inhibition of exoglucanases increased fungal immune visibility and reduced virulence.
Conclusions:
- The study reveals Xog1 as a key mediator of environmentally induced PAMP remodeling in Candida albicans.
- Targeting exoglucanase activity represents a promising therapeutic strategy to enhance antifungal immunity and combat infections.
- Understanding and manipulating fungal immune evasion mechanisms are crucial for developing effective treatments against fungal pathogens.

