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Augmented Enterocyte Damage During Candida albicans and Proteus mirabilis Coinfection
Maria Joanna Niemiec1,2, Mario Kapitan1,2, Maximilian Himmel1
1Leibniz Institute for Natural Product Research and Infection Biology - Hans Knöll Institute, Jena, Germany.
Abstract:
The human gut acts as the main reservoir of microbes and a relevant source of life-threatening infections, especially in immunocompromised patients. There, the opportunistic fungal pathogen Candida albicans adapts to the host environment and additionally interacts with residing bacteria. We investigated fungal-bacterial interactions by coinfecting enterocytes with the yeast Candida albicans and the Gram-negative bacterium Proteus mirabilis resulting in enhanced host cell damage. This synergistic effect was conserved across different P. mirabilis isolates and occurred also with non-albicans Candida species and C. albicans mutants defective in filamentation or candidalysin production. Using bacterial deletion mutants, we identified the P. mirabilis hemolysin HpmA to be the key effector for host cell destruction. Spatially separated coinfections demonstrated that synergism between Candida and Proteus is induced by contact, but also by soluble factors. Specifically, we identified Candida-mediated glucose consumption and farnesol production as potential triggers for Proteus virulence. In summary, our study demonstrates that coinfection of enterocytes with C. albicans and P. mirabilis can result in increased host cell damage which is mediated by bacterial virulence factors as a result of fungal niche modification via nutrient consumption and production of soluble factors. This supports the notion that certain fungal-bacterial combinations have the potential to result in enhanced virulence in niches such as the gut and might therefore promote translocation and dissemination.
Insights
Coinfection with Candida albicans and Proteus mirabilis enhances gut cell damage. Bacterial hemolysin HpmA and fungal nutrient consumption drive this synergistic virulence, increasing infection risk.
Area of Science:
- Microbiology
- Pathogenesis
- Host-microbe interactions
Background:
- The human gut harbors microbes and is a source of infections, particularly in immunocompromised individuals.
- The opportunistic fungus Candida albicans interacts with gut bacteria, influencing host environments.
Purpose of the Study:
- To investigate the synergistic effects of coinfecting enterocytes with Candida albicans and Proteus mirabilis.
- To identify the mechanisms underlying enhanced host cell damage during fungal-bacterial coinfection.
Main Methods:
- Coinfection models using enterocytes with Candida albicans and Proteus mirabilis isolates.
- Utilized bacterial deletion mutants to identify key virulence factors.
- Investigated the role of direct contact and soluble factors in synergistic effects.
Main Results:
- Coinfection led to significantly enhanced host cell damage compared to single infections.
- Proteus mirabilis hemolysin HpmA was identified as a critical factor in host cell destruction.
- Candida-mediated glucose consumption and farnesol production were identified as triggers for Proteus virulence.
Conclusions:
- Fungal-bacterial coinfections, specifically C. albicans and P. mirabilis, can increase host cell damage.
- Bacterial virulence factors, modulated by fungal niche modification, mediate this enhanced pathogenesis.
- These findings highlight the potential for synergistic virulence in gut coinfections, promoting translocation and dissemination.

