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Updated: Mar 17, 2026

Determination of Biofilm Initiation on Virus-infected Cells by Bacteria and Fungi
Published on: July 6, 2016
Interaction of human fibronectin with Candida glabrata epithelial adhesin 6 (Epa6)
Dorota Zajac1, Justyna Karkowska-Kuleta2, Oliwia Bochenska1
1Department of Analytical Biochemistry, Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University in Krakow, Kraków, Poland.
Abstract:
Adherence of pathogens to extracellular matrix proteins and host cells is one of the essential steps in the microbial colonization of the human organism. The adhesion of C. glabrata, i.e. the second major causative agent of human disseminated candidiases after C. albicans, to the host epithelium mainly engages specific fungal cell wall proteins - epithelial adhesins (Epa) - in particular, Epa1, Epa6 and Epa7. The aim of the present study was to identify the major Epa protein involved in the interactions with the human extracellular matrix protein - fibronectin - and to present the kinetic and thermodynamic characteristics of these interactions. A relatively novel gel-free approach, i.e. the "cell surface shaving" that consists in short treatment of fungal cells with trypsin was employed to identify the C. glabrata surfaceome. Epa6 was purified, and the isolated protein was characterized in terms of its affinity to human fibronectin using a microplate ligand-binding assay and surface plasmon resonance measurements. The dissociation constants for the binding of Epa6 to fibronectin were determined to range between 9.03 × 10(-9) M and 7.22 × 10(-8) M, depending on the method used (surface plasmon resonance measurements versus the microplate ligand-binding assay, respectively). The identified fungal pathogen-human host protein-protein interactions might become a potential target for novel anticandidal therapeutic approaches.
Insights
Candida glabrata uses the Epa6 adhesin to bind to human fibronectin, a key step in infections. Understanding this interaction could lead to new antifungal therapies targeting this crucial pathogen adhesion.
Area of Science:
- Microbiology
- Biochemistry
- Immunology
Background:
- Pathogen adherence to host cells is vital for colonization.
- Candida glabrata, a major cause of candidiasis, uses epithelial adhesins (Epa) for host cell attachment.
- Fibronectin is a key extracellular matrix protein involved in host-pathogen interactions.
Purpose of the Study:
- Identify the primary Epa protein mediating C. glabrata interaction with human fibronectin.
- Characterize the kinetic and thermodynamic properties of this specific protein-protein interaction.
Main Methods:
- Employed a novel gel-free
- cell surface shaving
- technique to analyze the C. glabrata surfaceome.
- Purified the Epa6 protein for further analysis.
- Utilized microplate ligand-binding assays and surface plasmon resonance (SPR) to quantify binding affinity.
Main Results:
- Epa6 was identified as the major C. glabrata adhesin interacting with fibronectin.
- Dissociation constants (Kd) for Epa6-fibronectin binding ranged from 9.03 × 10⁻⁹ M (SPR) to 7.22 × 10⁻⁸ M (ligand-binding assay).
- These findings quantify the affinity of a specific fungal adhesin to a human host matrix protein.
Conclusions:
- Epa6 is a critical mediator of C. glabrata adherence to fibronectin.
- The characterized interactions provide a molecular basis for C. glabrata colonization.
- Targeting these specific pathogen-host protein interactions presents a promising strategy for developing novel anticandidal therapeutics.
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