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Updated: Jun 6, 2026

Automated, High-Throughput Detection of Bacterial Adherence to Host Cells
Published on: September 17, 2021
Role of host glycosphingolipids on Paracoccidioides brasiliensis adhesion
Cristina Y Ywazaki1, Paloma K Maza, Erika Suzuki
1Department of Biochemistry, Universidade Federal de São Paulo, Rua Botucatu 862, São Paulo, SP, 04023-900, Brazil.
Abstract:
Binding of yeast forms to human lung fibroblast cultures was analyzed, aiming to better understand the initial steps of Paracoccidioides brasiliensis infection in humans. A significant P. brasiliensis adhesion was observed either to fibroblasts or to their Triton X-100 insoluble fraction, which contains extracellular matrix and membrane microdomains enriched in glycosphingolipids. Since human lung fibroblasts express at cell-surface gangliosides, such as GM1, GM2, and GM3, the role of these glycosphingolipids on P. brasiliensis adhesion was analyzed by different procedures. Anti-GM3 monoclonal antibody or cholera toxin subunit B (which binds specifically to GM1) reduced significantly fungal adhesion to fibroblast cells, by 35% and 33%, respectively. Direct binding of GM1 to yeast forms of P. brasiliensis was confirmed using cholera toxin subunit B conjugated to AlexaFluor(®)488. It was also demonstrated that P. brasiliensis binds to polystyrene plates coated with galactosylceramide, lactosylceramide, trihexosylceramide, GD3, GM1, GM3, and GD1a, suggesting that glycosphingolipids presenting residues of beta-galactose or neuraminic acid at non-reducing end may act as adhesion molecules for P. brasiliensis. Conversely, no binding was detected when plates were adsorbed with glycosphingolipids that contain terminal residue of beta-N-acetylgalactosamine, such as globoside (Gb4), GM2, and asialo-GM2. In human fibroblast (WI-38 cells), GM3 and GM1 are associated with membrane rafts, which remain insoluble after treatment with Triton X-100 at 4°C. Taken together, these results strongly suggest that lung fibroblast gangliosides, GM3 and GM1, are involved in binding and/or infection by P. brasiliensis.
Insights
Paracoccidioides brasiliensis yeast binds to human lung fibroblasts by interacting with specific cell-surface gangliosides, particularly GM3 and GM1. These findings reveal key adhesion molecules involved in the initial stages of infection.
Area of Science:
- Medical Mycology
- Cell Biology
- Infectious Diseases
Background:
- Paracoccidioides brasiliensis is a fungus causing paracoccidioidomycosis, a significant human infection.
- Understanding the initial binding of P. brasiliensis yeast to host cells is crucial for elucidating infection mechanisms.
- Human lung fibroblasts express cell-surface gangliosides, which may mediate fungal adhesion.
Purpose of the Study:
- To investigate the role of human lung fibroblast glycosphingolipids in the adhesion of Paracoccidioides brasiliensis yeast.
- To identify specific gangliosides involved in the initial attachment of P. brasiliensis to host cells.
Main Methods:
- Analysis of P. brasiliensis yeast binding to human lung fibroblast cultures.
- Treatment of fibroblasts with anti-GM3 monoclonal antibody and cholera toxin subunit B (targeting GM1).
- Binding assays using P. brasiliensis yeast and polystyrene plates coated with various glycosphingolipids.
Main Results:
- Significant adhesion of P. brasiliensis to fibroblasts and their Triton X-100 insoluble fraction was observed.
- Anti-GM3 and anti-GM1 (cholera toxin subunit B) treatments reduced fungal adhesion by 35% and 33%, respectively.
- P. brasiliensis demonstrated binding to glycosphingolipids with terminal beta-galactose or neuraminic acid residues (e.g., GM1, GM3), but not to those with terminal beta-N-acetylgalactosamine.
Conclusions:
- Lung fibroblast gangliosides GM3 and GM1 are key molecules involved in the adhesion of Paracoccidioides brasiliensis yeast.
- These gangliosides, particularly those in membrane rafts, play a significant role in the initial steps of P. brasiliensis infection.
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