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Stress adaptation in a pathogenic fungus
Alistair J P Brown1, Susan Budge, Despoina Kaloriti
1School of Medical Sciences, University of Aberdeen, Institute of Medical Sciences, Foresterhill, Aberdeen AB25 2ZD, UK.
Abstract:
Candida albicans is a major fungal pathogen of humans. This yeast is carried by many individuals as a harmless commensal, but when immune defences are perturbed it causes mucosal infections (thrush). Additionally, when the immune system becomes severely compromised, C. albicans often causes life-threatening systemic infections. A battery of virulence factors and fitness attributes promote the pathogenicity of C. albicans. Fitness attributes include robust responses to local environmental stresses, the inactivation of which attenuates virulence. Stress signalling pathways in C. albicans include evolutionarily conserved modules. However, there has been rewiring of some stress regulatory circuitry such that the roles of a number of regulators in C. albicans have diverged relative to the benign model yeasts Saccharomyces cerevisiae and Schizosaccharomyces pombe. This reflects the specific evolution of C. albicans as an opportunistic pathogen obligately associated with warm-blooded animals, compared with other yeasts that are found across diverse environmental niches. Our understanding of C. albicans stress signalling is based primarily on the in vitro responses of glucose-grown cells to individual stresses. However, in vivo this pathogen occupies complex and dynamic host niches characterised by alternative carbon sources and simultaneous exposure to combinations of stresses (rather than individual stresses). It has become apparent that changes in carbon source strongly influence stress resistance, and that some combinatorial stresses exert non-additive effects upon C. albicans. These effects, which are relevant to fungus-host interactions during disease progression, are mediated by multiple mechanisms that include signalling and chemical crosstalk, stress pathway interference and a biological transistor.
Insights
Candida albicans, a human fungal pathogen, exhibits unique stress responses. Understanding its adaptation to host environments is key to combating infections.
Area of Science:
- Medical Mycology
- Microbial Pathogenesis
- Molecular Biology
Background:
- Candida albicans is a major human fungal pathogen causing mucosal and systemic infections.
- Its pathogenicity is linked to virulence factors and fitness attributes, including stress responses.
- Stress signaling pathways in C. albicans have evolved distinct regulatory circuitry compared to model yeasts.
Purpose of the Study:
- To investigate the influence of carbon sources and combined stresses on C. albicans stress resistance.
- To understand the mechanisms underlying non-additive stress effects relevant to host-pathogen interactions.
Main Methods:
- In vitro analysis of C. albicans responses to various carbon sources and stress combinations.
- Investigating signaling and chemical crosstalk, stress pathway interference, and biological transistor mechanisms.
Main Results:
- Carbon source availability significantly impacts C. albicans stress resistance.
- Combinatorial stresses can exert non-additive effects on the pathogen.
- Multiple mechanisms mediate these complex stress responses.
Conclusions:
- C. albicans exhibits dynamic stress adaptation influenced by environmental factors like carbon source.
- Understanding these complex stress responses is crucial for developing effective antifungal strategies.
- The pathogen's evolved regulatory circuitry facilitates adaptation to host niches.
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