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Published on: December 14, 2017
Requirement for Candida albicans Sun41 in biofilm formation and virulence
Carmelle T Norice1, Frank J Smith, Norma Solis
1Department of Microbiology, Columbia University, New York, NY, USA.
Abstract:
The cell wall of Candida albicans lies at the crossroads of pathogenicity and therapeutics. It contributes to pathogenicity through adherence and invasion; it is the target of both chemical and immunological antifungal strategies. We have initiated a dissection of cell wall function through targeted insertional mutagenesis of cell wall-related genes. Among 25 such genes, we were unable to generate homozygous mutations in 4, and they may be essential for viability. We created homozygous mutations in the remaining 21 genes. Insertion mutations in SUN41, Orf19.5412, Orf19.1277, MSB2, Orf19.3869, and WSC1 caused hypersensitivity to the cell wall inhibitor caspofungin, while two different ecm33 insertions caused mild caspofungin resistance. Insertion mutations in SUN41 and Orf19.5412 caused biofilm defects. Through analysis of homozygous sun41Delta/sun41Delta deletion mutants and sun41Delta/sun41Delta+pSUN41-complemented strains, we verified that Sun41 is required for biofilm formation and normal caspofungin tolerance. The sun41Delta/sun41Delta mutant had altered expression of four cell wall damage response genes, thus suggesting that it suffers a cell wall structural defect. Sun41 is required for inducing disease, because the mutant was severely attenuated in mouse models of disseminated and oropharyngeal candidiasis. Although the mutant produced aberrant hyphae, it had no defect in damaging endothelial or epithelial cells, unlike many other hypha-defective mutants. We suggest that the sun41Delta/sun41Delta cell wall defect is the primary cause of its attenuated virulence. As a small fungal surface protein with predicted glucosidase activity, Sun41 represents a promising therapeutic target.
Insights
Candida albicans cell wall protein Sun41 is crucial for fungal virulence and biofilm formation. Disrupting SUN41 attenuates infection in mice, identifying it as a potential therapeutic target for candidiasis.
Area of Science:
- Mycology
- Medical Mycology
- Molecular Biology
Background:
- The cell wall of *Candida albicans* is vital for its pathogenicity and a target for antifungal therapies.
- Understanding cell wall gene functions is key to developing new treatments.
Purpose of the Study:
- To investigate the function of cell wall-related genes in *Candida albicans* using insertional mutagenesis.
- To identify novel therapeutic targets by dissecting the role of specific genes in fungal virulence and drug resistance.
Main Methods:
- Targeted insertional mutagenesis of 25 cell wall-related genes in *Candida albicans*.
- Assessing mutant phenotypes, including caspofungin sensitivity, biofilm formation, and virulence in mouse models.
- Analyzing gene expression related to cell wall damage response.
Main Results:
- Mutations in SUN41 and other genes led to hypersensitivity to caspofungin and biofilm defects.
- The *sun41* deletion mutant showed impaired biofilm formation and reduced tolerance to caspofungin.
- The *sun41* mutant exhibited significantly attenuated virulence in mouse models of candidiasis, despite aberrant hyphae formation.
Conclusions:
- Sun41 is essential for *Candida albicans* biofilm formation, caspofungin tolerance, and virulence.
- The *sun41* deletion mutant's cell wall defect is the primary cause of its reduced virulence.
- Sun41, a surface protein with predicted glucosidase activity, is a promising therapeutic target for candidiasis.
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