The transcription factor Ndt80 is a repressor of Candida parapsilosis virulence attributes
Joana Branco1,2, Cláudia Martins-Cruz1, Lisa Rodrigues3,4
1Division of Microbiology, Department of Pathology, Faculty of Medicine, University of Porto , Porto, Portugal.
Abstract:
Candida parapsilosis is an emergent opportunistic yeast among hospital settings that affects mainly neonates and immunocompromised patients. Its most remarkable virulence traits are the ability to adhere to prosthetic materials, as well as the formation of biofilm on abiotic surfaces. The Ndt80 transcription factor was identified as one of the regulators of biofilm formation by C. parapsilosis; however, its function in this process was not yet clarified. By knocking out NDT80 (CPAR2-213640) gene, or even just one single copy of the gene, we observed substantial alterations of virulence attributes, including morphogenetic changes, adhesion and biofilm growth profiles. Both ndt80Δ and ndt80ΔΔ mutants changed colony and cell morphologies from smooth, yeast-shaped to crepe and pseudohyphal elongated forms, exhibiting promoted adherence to polystyrene microspheres and notably, forming a higher amount of biofilm compared to wild-type strain. Interestingly, we identified transcription factors Ume6, Cph2, Cwh41, Ace2, Bcr1, protein kinase Mkc1 and adhesin Als7 to be under Ndt80 negative regulation, partially explaining the phenotypes displayed by the ndt80ΔΔ mutant. Furthermore, ndt80ΔΔ pseudohyphae adhered more rapidly and were more resistant to murine macrophage attack, becoming deleterious to such cells after phagocytosis. Unexpectedly, our findings provide the first evidence for a direct role of Ndt80 as a repressor of C. parapsilosis virulence attributes. This finding shows that C. parapsilosis Ndt80 functionally diverges from its homolog in the close related fungal pathogen C. albicans.
Insights
The Ndt80 transcription factor represses virulence in Candida parapsilosis, contrary to its role in Candida albicans. Deleting NDT80 enhances yeast adhesion, biofilm formation, and resistance to immune cells.
Area of Science:
- Medical Mycology
- Molecular Biology
- Infectious Diseases
Background:
- Candida parapsilosis is an opportunistic yeast causing hospital-acquired infections, particularly in neonates and immunocompromised individuals.
- Key virulence factors include adherence to prosthetics and biofilm formation.
- The Ndt80 transcription factor's role in C. parapsilosis virulence was previously unclear.
Purpose of the Study:
- To elucidate the function of the Ndt80 transcription factor in Candida parapsilosis virulence.
- To investigate the impact of NDT80 gene deletion on yeast morphology, adhesion, and biofilm formation.
Main Methods:
- Gene knockout of NDT80 (CPAR2-213640) in C. parapsilosis, creating both heterozygous (ndt80Δ) and homozygous (ndt80ΔΔ) mutants.
- Analysis of morphogenetic changes, adherence to polystyrene microspheres, and biofilm biomass.
- Identification of Ndt80-regulated genes, including transcription factors and adhesins.
Main Results:
- NDT80 deletion led to significant alterations in virulence, including changes to yeast and pseudohyphal forms.
- ndt80Δ and ndt80ΔΔ mutants showed increased adherence and biofilm formation compared to wild-type.
- Ndt80 negatively regulates key virulence factors such as Ume6, Cph2, Cwh41, Ace2, Bcr1, Mkc1, and Als7.
- ndt80ΔΔ pseudohyphae exhibited enhanced adherence, resistance to macrophage attack, and increased pathogenicity.
Conclusions:
- Ndt80 acts as a repressor of virulence attributes in Candida parapsilosis.
- This function contrasts with the role of Ndt80 in the related pathogen Candida albicans.
- Ndt80 is a potential target for controlling C. parapsilosis infections.
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