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Fungal proteases and their pathophysiological effects
1Department of Environmental Health Sciences, School of Medicine, Case Western Reserve University, Location code 4940, Room WG19, 2109 Adelbert Rd., Cleveland, OH 44106, USA. ixy@case.edu
Abstract:
Proteolytic enzymes play an important role in fungal physiology and development. External digestion of protein substrates by secreted proteases is required for survival and growth of both saprophytic and pathogenic species. Extracellular serine, aspartic, and metalloproteases are considered virulence factors of many pathogenic species. New findings focus on novel membrane-associated proteases such as yapsins and ADAMs and their role in pathology. Proteases from fungi induce inflammatory responses by altering the permeability of epithelial barrier and by induction of proinflammatory cytokines through protease-activated receptors. Many fungal allergens possess proteolytic activity that appears to be essential in eliciting Th2 responses. Allergenic fungal proteases can act as adjuvants, potentiating responses to other allergens. Proteolytic enzymes from fungi contribute to inflammation through interactions with the kinin system as well as the coagulation and fibrinolytic cascades. Their effect on the host protease-antiprotease balance results from activation of endogenous proteases and degradation of protease inhibitors. Recent studies of the role of fungi in human health point to the growing importance of proteases not only as pathogenic agents in fungal infections but also in asthma, allergy, and damp building related illnesses. Proteolytic enzymes from fungi are widely used in biotechnology, mainly in food, leather, and detergent industries, in ecological bioremediation processes and to produce therapeutic peptides. The involvement of fungal proteases in diverse pathological mechanisms makes them potential targets of therapeutic intervention and candidates for biomarkers of disease and exposure.
Insights
Fungal proteases are crucial for fungal survival and pathogenesis, contributing to inflammation and allergic responses. These enzymes also have significant biotechnological applications and represent potential therapeutic targets.
Area of Science:
- Mycology
- Biochemistry
- Immunology
Background:
- Proteolytic enzymes are vital for fungal growth, nutrient acquisition, and pathogenesis.
- Secreted proteases (serine, aspartic, metalloproteases) are key virulence factors in pathogenic fungi.
- Emerging research highlights membrane-associated proteases (yapsins, ADAMs) in fungal pathology.
Purpose of the Study:
- To review the multifaceted roles of fungal proteases in physiology, pathology, and biotechnology.
- To elucidate the mechanisms by which fungal proteases contribute to host inflammation and immune responses.
- To explore the therapeutic potential and biomarker applications of fungal proteases.
Main Methods:
- Literature review of studies on fungal proteases.
- Analysis of protease involvement in fungal infections, allergies, and related diseases.
- Examination of biotechnological and therapeutic applications of fungal enzymes.
Main Results:
- Fungal proteases induce inflammation by affecting epithelial barriers and cytokine production.
- Allergenic fungal proteases are essential for Th2 responses and act as adjuvants.
- Proteases disrupt host protease-antiprotease balance and interact with host systems (kinin, coagulation).
Conclusions:
- Fungal proteases are implicated in infections, asthma, allergies, and damp building illnesses.
- These enzymes are valuable in industrial biotechnology (food, detergents) and bioremediation.
- Fungal proteases are promising targets for therapeutic interventions and disease biomarkers.
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