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Infection stages of the dermatophyte pathogen Trichophyton: microscopic characterization and proteolytic enzymes
Gil Kaufman1, Benjamin A Horwitz, Lea Duek
1Department of Molecular Microbiology, Faculty of Medicine, Haifa, Israel.
Abstract:
Dermatophytes are pathogenic fungi that infect human skin, nails and hair and cause dermatophytosis. Trichophyton mentagrophytes is one of the most widespread species that belong to this group. Infection of the skin tissues include several stages, i.e., adhesion to the surface of the skin, invasion into the sublayers by the penetration of fungal elements and secretion of enzymes that degrade the skin components. In this study we have followed the morphology of the fungal elements, such as arthroconidia and hyphae, during the adhesion and invasion stages. Skin explants were inoculated with the dermatophyte and observed by scanning electron microscopy (SEM) and transmission electron microscopy (TEM). Skin explants were also inoculated with a transgenic isolate of T. mentagrophytes expressing the green fluorescent protein (GFP). The infected sublayers were investigated by confocal scanning laser microscopy (CSLM). As an adaptation to the tissue environment, the dermatophyte produced long fibrils when it is on the open surface of the stratum corneum, while short and thin fibrils are produced inside the dense sublayers. The short and long projections might have a role in adhesion. Invasion may be produced by mechanical and biochemical means. Invasion of the tissue showed hyphal branching and growth in multiple directions. The proteolytic profile was assayed by substrate gel and proteolytic activity. Two serine proteases of similar molecular weight were secreted during growth on the epidermal matrix components keratin and elastin. The dermatophyte may use the proteolytic enzymes to invade the surface and also the deep layer of the skin in immunocompromised patients. Dermatophytes, which are well adapted infectious agents, seem to use their mechanical and biochemical capabilities to invade the skin tissue effectively.
Insights
Dermatophytes like Trichophyton mentagrophytes invade skin using physical projections and enzymes. This study reveals fungal adaptations for adhesion and invasion, aiding dermatophytosis development.
Area of Science:
- Medical Mycology
- Infectious Diseases
- Dermatology
Background:
- Dermatophytes cause skin, nail, and hair infections (dermatophytosis).
- Trichophyton mentagrophytes is a common dermatophyte species.
- Skin infection involves fungal adhesion, invasion, and tissue degradation.
Purpose of the Study:
- To investigate the morphological adaptations of Trichophyton mentagrophytes during skin infection.
- To understand the mechanisms of fungal adhesion and invasion into skin tissues.
- To identify enzymes involved in dermatophyte invasion.
Main Methods:
- Scanning electron microscopy (SEM) and transmission electron microscopy (TEM) for morphology.
- Confocal scanning laser microscopy (CSLM) for observing transgenic GFP-expressing T. mentagrophytes in skin explants.
- Assay of proteolytic activity on epidermal matrix components (keratin, elastin).
Main Results:
- Dermatophytes exhibit distinct fibril production (long on surface, short internally) for adhesion.
- Invasion involves hyphal branching and growth in multiple directions.
- Two serine proteases were secreted, targeting keratin and elastin, suggesting a role in tissue degradation.
Conclusions:
- Trichophyton mentagrophytes employs morphological adaptations and secreted enzymes for effective skin invasion.
- These mechanisms are crucial for dermatophyte pathogenesis, particularly in immunocompromised individuals.
- Fungal mechanical and biochemical strategies enable successful colonization of skin tissues.
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