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Published on: July 28, 2011
Insights into the host-pathogen interaction: C. albicans manipulation of macrophage pyroptosis
Teresa R O'Meara1, Leah E Cowen1
1Department of Molecular Genetics, University of Toronto, Toronto, Ontario, Canada.
Abstract:
The innate immune system is the first defense against invasive fungal infections, including those caused by Candida albicans. Although C. albicans can exist as a commensal, it can also cause systemic or mucosal infections, especially when the innate immune system is impaired. A key aspect of the interaction between C. albicans and innate immune cells is the ability of C. albicans to induce macrophage pyroptosis, an inflammatory cell death program. The induction of pyroptosis is temporally coupled to a morphological transition between yeast and filamentous growth. However, the relationship between fungal morphogenesis and activation of macrophage pyroptosis is complex. Although most C. albicans mutants with defects in filamentation are also unable to induce macrophage pyroptosis, filamentation is neither necessary nor sufficient for activation of pyroptosis. In our study [O'Meara et al., 2018 mBio], we set out to map the genetic circuitry in both the fungus and the host macrophage that leads to pyroptosis, and determine the impact of altered pyroptosis on infection. We identified 98 C. albicans genes that were dispensable for filamentation in the macrophage but important for enabling the fungus to activate macrophage pyroptosis. Using these mutants, we demonstrated that pyroptosis is required for robust neutrophil accumulation at the site of C. albicans infection. We also showed that, in contrast to previous work, inflammasome priming and activation can be decoupled in the response to C. albicans infection, and that phagolysosomal rupture is not the inflammasome activating signal. Our work provides the most comprehensive analysis of C. albicans interactions with host cells to date, and reveals new factors governing the outcomes of this interaction.
Insights
This study reveals key Candida albicans genes that trigger inflammatory macrophage pyroptosis, a crucial defense against fungal infections. Understanding this interaction improves knowledge of immune responses to invasive candidiasis.
Area of Science:
- Immunology
- Mycology
- Microbial Pathogenesis
Background:
- The innate immune system is critical for defense against fungal pathogens like Candida albicans.
- Candida albicans can cause severe infections, particularly in immunocompromised individuals.
- Macrophage pyroptosis, an inflammatory cell death, is induced by Candida albicans, but its link to fungal morphology is complex.
Purpose of the Study:
- To map the genetic factors in Candida albicans and host macrophages that regulate pyroptosis.
- To investigate the impact of altered pyroptosis on the host's response to Candida albicans infection.
- To clarify the relationship between fungal morphogenesis and pyroptosis activation.
Main Methods:
- Genetic screening of Candida albicans mutants for genes affecting pyroptosis induction.
- Analysis of host-pathogen interactions within macrophages.
- Assessment of neutrophil recruitment and inflammasome activation during infection.
Main Results:
- Identified 98 Candida albicans genes important for pyroptosis but not filamentation.
- Demonstrated that pyroptosis is essential for neutrophil accumulation at infection sites.
- Showed inflammasome priming and activation can be separated and that phagolysosomal rupture is not the trigger.
Conclusions:
- Discovered novel Candida albicans virulence factors involved in pyroptosis.
- Pyroptosis plays a critical role in orchestrating the innate immune response to Candida albicans.
- Provides a comprehensive understanding of Candida albicans-host immune cell interactions.
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