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Azole drug import into the pathogenic fungus Aspergillus fumigatus
Brooke D Esquivel1, Adam R Smith1, Martin Zavrel1
1University of Missouri-Kansas City, School of Biological Sciences, Cell Biology and Biophysics, Kansas City, Missouri, USA.
Abstract:
The fungal pathogen Aspergillus fumigatus causes serious illness and often death when it invades tissues, especially in immunocompromised individuals. The azole class of drugs is the most commonly prescribed treatment for many fungal infections and acts on the ergosterol biosynthesis pathway. One common mechanism of acquired azole drug resistance in fungi is the prevention of drug accumulation to toxic levels in the cell. While drug efflux is a well-known resistance strategy, reduced azole import would be another strategy to maintain low intracellular azole levels. Recently, azole uptake in Candida albicans and other yeasts was analyzed using [(3)H]fluconazole. Defective drug import was suggested to be a potential mechanism of drug resistance in several pathogenic fungi, including Cryptococcus neoformans, Candida krusei, and Saccharomyces cerevisiae. We have adapted and developed an assay to measure azole accumulation in A. fumigatus using radioactively labeled azole drugs, based on previous work done with C. albicans. We used this assay to study the differences in azole uptake in A. fumigatus isolates under a variety of drug treatment conditions, with different morphologies and with a select mutant strain with deficiencies in the sterol uptake and biosynthesis pathway. We conclude that azole drugs are specifically selected and imported into the fungal cell by a pH- and ATP-independent facilitated diffusion mechanism, not by passive diffusion. This method of drug transport is likely to be conserved across most fungal species.
Insights
Aspergillus fumigatus imports azole antifungal drugs via facilitated diffusion, not passive uptake. This specific import mechanism is crucial for understanding and combating azole resistance in fungal infections.
Area of Science:
- Mycology
- Medical Mycology
- Antifungal Drug Resistance
Background:
- Aspergillus fumigatus is a significant fungal pathogen, particularly dangerous for immunocompromised individuals.
- Azole drugs are primary treatments for fungal infections, targeting ergosterol biosynthesis.
- Drug efflux is a known resistance mechanism; reduced drug import is another potential strategy.
Purpose of the Study:
- To develop and utilize an assay for measuring azole accumulation in A. fumigatus.
- To investigate azole uptake mechanisms in A. fumigatus under various conditions.
- To explore the role of drug import in azole resistance.
Main Methods:
- Adaptation and development of a radioactively labeled azole drug assay.
- Analysis of azole accumulation in A. fumigatus isolates.
- Testing under diverse drug treatments, morphologies, and with a sterol pathway mutant.
Main Results:
- Azole drugs are specifically selected and imported into fungal cells.
- The import mechanism is pH- and ATP-independent facilitated diffusion.
- This transport is distinct from passive diffusion.
Conclusions:
- Azole drug import in A. fumigatus occurs via facilitated diffusion.
- This specific import mechanism is likely conserved across fungal species.
- Understanding this pathway is key for developing new antifungal strategies.
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