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Updated: Aug 11, 2026

One-step Extraction and Zymographic Analysis of Bacterial Gelatinases
Published on: August 1, 2025
Pseudallescheria boydii releases metallopeptidases capable of cleaving several proteinaceous compounds
Bianca A Silva1, Marcia R Pinto, Rosangela M A Soares
1Departamento de Microbiologia Geral, Instituto de Microbiologia Prof. Paulo de Góes (IMPPG), Centro de Ciências da Saúde (CCS), Bloco I, Universidade Federal do Rio de Janeiro (UFRJ), Rio de Janeiro, RJ, Brazil.
Abstract:
Pseudallescheria boydii is an opportunistic filamentous fungus that causes serious infections in humans. Virulence attributes expressed by P. boydii are unknown. Conversely, peptidases are incriminated as virulence factors in several pathogenic fungi. Here we investigated the extracellular peptidase profile in P. boydii. After growth on Sabouraud for 7 days, mycelia of P. boydii were incubated for 20 h in PBS-glucose. The cell-free PBS-glucose supernatant was submitted to SDS-PAGE and 12 secretory polypeptides were observed. Two of these polypeptides (28 and 35 kD) presented proteolytic activity when BSA was used as a copolymerized substrate. The extracellular peptidases were most active in acidic pH (5.5) and fully inhibited by 1,10-phenanthroline, a zinc-metallopeptidase inhibitor. Other metallo-, cysteine, serine and aspartic proteolytic inhibitors did not significantly alter these activities. To confirm that these enzymes belong to the metallo-type peptidases, the apoenzymes were obtained by dialysis against chelating agents, and supplementation with different cations, especially Cu(2+) and Zn(2+), restored their activities. Except for gelatin, both metallopeptidases hydrolyzed various co-polymerized substrates, including human serum albumin, casein, hemoglobin and IgG. Additionally, the metallopeptidases were able to cleave different soluble proteinaceous substrates such as extracellular matrix components and sialylated proteins. All these hydrolyses were inhibited by 1,10-phenanthroline. Interestingly, Scedosporium apiospermum (the anamorph of P. boydii) produced a distinct extracellular peptidase profile. Collectively, our results demonstrated for the first time the expression of acidic extracellular metallopeptidases in P. boydii capable of degrading several proteinaceous compounds that could help the fungus to escape from natural human barriers and defenses.
Insights
Pseudallescheria boydii secretes acidic metallopeptidases that degrade human proteins. These enzymes may help the fungus overcome host defenses during infections.
Area of Science:
- Medical Mycology
- Enzymology
- Fungal Pathogenesis
Background:
- Pseudallescheria boydii is an opportunistic fungus causing human infections.
- Peptidases are known virulence factors in pathogenic fungi.
- The virulence attributes of P. boydii remain largely unknown.
Purpose of the Study:
- To investigate the extracellular peptidase profile of P. boydii.
- To characterize the enzymatic activity and substrate specificity of secreted peptidases.
- To determine the potential role of these peptidases in fungal virulence.
Main Methods:
- Fungal culture and supernatant collection.
- SDS-PAGE to identify secretory polypeptides.
- Proteolytic activity assays using various substrates and inhibitors.
- Enzyme characterization including pH optima and metal ion dependency.
Main Results:
- Two extracellular metallopeptidases (28 and 35 kD) were identified with peak activity at acidic pH (5.5).
- These enzymes were inhibited by 1,10-phenanthroline and required Zn(2+) or Cu(2+) for activity.
- The metallopeptidases degraded various protein substrates, including human serum albumin, IgG, and extracellular matrix components.
Conclusions:
- P. boydii expresses acidic extracellular metallopeptidases.
- These enzymes can degrade host protein substrates, potentially aiding fungal invasion and immune evasion.
- The peptidase profile of P. boydii differs from its anamorph, Scedosporium apiospermum.
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