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Updated: Jul 15, 2026

Bio-energetics Investigation of Candida albicans Using Real-time Extracellular Flux Analysis
Published on: March 19, 2019
Disruption of Candida albicans IFF4 gene involves modifications of the cell electrical surface properties
Marie Kempf1, Véronique Apaire-Marchais, Patrick Saulnier
1Groupe d'Etude des Interactions Hôte-Parasite, UPRES EA 3142, UFR des Sciences Pharmaceutiques et d'Ingénierie de la Santé, 16 Bd Daviers, 49045 Angers Cedex, France.
Abstract:
During the past two decades, the prevalence of candidiasis has increased markedly and Candida albicans has now become one of the most important causes of nosocomial infections, especially after colonization of inert surfaces such as catheters or prostheses. In a previous report, we demonstrated the overexpression of 35 unidentified genes in response to adherence of C. albicans germ tubes to plastic. Therefore, a bioinformatic analysis was performed searching for genes encoding surface proteins potentially involved in adherence. Nineteen genes were thus selected, and one of them, CaIFF4, was further investigated. The deduced protein of this CaIFF4 gene revealed a glycosylphosphatidylinositol (GPI)-anchored site as well as the presence of a N-terminal signal peptide. Disruption of both alleles of CaIFF4 gene from C. albicans parent strain BWP17 was performed by PCR method. Then investigations of properties of null mutant for CaIFF4 gene showed a decrease of adherence of germ tubes to plastic in comparison to the parent strain BWP17. Besides, electrophoretic mobilities of germ tubes of CaIFF4 null mutant and of parental strain BWP17 were measured. Data were then analysed with soft particles analysis theory. Results point out a less important electrophoretic mobility of germ tubes of CaIFF4 null mutant in comparison to germ tubes of BWP17 parental strain.
Insights
Candida albicans adherence to plastic surfaces is reduced when the CaIFF4 gene is disrupted. This gene encodes a surface protein that impacts germ tube adhesion and electrophoretic mobility, crucial for understanding nosocomial infections.
Area of Science:
- Mycology
- Molecular Biology
- Biochemistry
Background:
- Nosocomial candidiasis, often caused by Candida albicans, is increasing.
- Candida albicans colonizes inert surfaces like catheters, leading to infections.
- Previous studies identified gene overexpression during Candida albicans germ tube adherence to plastic.
Purpose of the Study:
- To identify genes encoding surface proteins involved in Candida albicans adherence.
- To investigate the role of the CaIFF4 gene in Candida albicans adherence to plastic.
Main Methods:
- Bioinformatic analysis to select candidate genes.
- Gene disruption of CaIFF4 in Candida albicans using PCR.
- Assessing germ tube adherence and electrophoretic mobility of null mutants.
Main Results:
- CaIFF4 gene encodes a GPI-anchored surface protein.
- Disruption of CaIFF4 significantly decreased germ tube adherence to plastic.
- CaIFF4 null mutants exhibited reduced electrophoretic mobility compared to the parent strain.
Conclusions:
- The CaIFF4 gene product is important for Candida albicans adherence to plastic.
- CaIFF4 influences cell surface properties, affecting adhesion and mobility.
- Targeting CaIFF4 may offer strategies to combat Candida albicans-associated nosocomial infections.
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