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Visualization of Candida albicans in the Murine Gastrointestinal Tract Using Fluorescent In Situ Hybridization
Published on: November 5, 2019
Pathway analysis of Candida albicans survival and virulence determinants in a murine infection model
Jeffrey M Becker1, Sarah J Kauffman, Melinda Hauser
1Department of Microbiology, University of Tennessee, Knoxville, TN 37996, USA.
Abstract:
One potentially rich source of possible targets for antifungal therapy are those Candida albicans genes deemed essential for growth under the standard culture (i.e., in vitro) conditions; however, these genes are largely unexplored as drug targets because essential genes are not experimentally amenable to conventional gene deletion and virulence studies. Using tetracycline-regulatable promoter-based conditional mutants, we investigated a murine model of candidiasis in which repressing essential genes in the host was achieved. By adding doxycycline to the drinking water starting 3 days prior to (dox - 3D) or 2 days post (dox + 2D) infection, the phenotypic consequences of temporal gene inactivation were assessed by monitoring animal survival and fungal burden in prophylaxis and acute infection settings. Of 177 selected conditional shut-off strains tested, the virulence of 102 was blocked under both repressing conditions, suggesting that the corresponding genes are essential for growth and survival in a murine host across early and established infection periods. Among these genes were those previously identified as antifungal drug targets (i.e., FKS1, ERG1, and ERG11), verifying that this methodology can be used to validate potential new targets. We also identify genes either conditionally essential or dispensable for in vitro growth but required for survival and virulence, including those in late stage ergosterol synthesis, or early steps in fatty acid or riboflavin biosynthesis. This study evaluates the role of essential genes with respect to pathogen virulence in a large-scale, systems biology context, and provides a general method for gene target validation and for uncovering unexpected antimicrobial targets.
Insights
Researchers identified essential Candida albicans genes crucial for fungal survival in mice, uncovering new antifungal drug targets. This method validates potential targets and reveals unexpected antimicrobial candidates for treating candidiasis.
Area of Science:
- Mycology
- Molecular Biology
- Infectious Diseases
Background:
- Essential genes for Candida albicans growth in vitro are largely unexplored as antifungal drug targets.
- Conventional gene deletion studies are not feasible for essential genes.
- A novel method is needed to investigate the in vivo role of essential genes.
Purpose of the Study:
- To investigate the role of essential Candida albicans genes in a murine model of candidiasis.
- To identify novel antifungal drug targets by assessing gene essentiality during infection.
- To validate a conditional mutant system for studying essential genes in vivo.
Main Methods:
- Generation of tetracycline-regulatable promoter-based conditional mutants of Candida albicans.
- Administration of doxycycline to mice to temporally inactivate essential genes.
- Assessment of fungal burden and animal survival in a murine candidiasis model.
Main Results:
- 102 out of 177 essential genes were found to be critical for Candida albicans survival and virulence in the murine host.
- The study validated known antifungal targets (FKS1, ERG1, ERG11), confirming the methodology.
- New potential targets involved in ergosterol, fatty acid, and riboflavin biosynthesis were identified.
Conclusions:
- Conditional gene inactivation in a murine model is an effective strategy for identifying essential virulence factors.
- This approach enables the validation of known and discovery of novel antimicrobial targets.
- The study provides a systems biology perspective on essential gene function in fungal pathogenesis.
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