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The Determination of Protease Specificity in Mouse Tissue Extracts by MALDI-TOF Mass Spectrometry: Manipulating PH to Cause Specificity Changes
Published on: May 25, 2018
Identification of novel secreted proteases during extracellular proteolysis by dermatophytes at acidic pH
Dev Sriranganadane1, Patrice Waridel, Karine Salamin
1Department of Dermatology, Centre Hospitalier Universitaire Vaudois, Lausanne, Switzerland.
Abstract:
The dermatophytes are a group of closely related fungi which are responsible for the great majority of superficial mycoses in humans and animals. Among various potential virulence factors, their secreted proteolytic activity attracts a lot of attention. Most dermatophyte-secreted proteases which have so far been isolated in vitro are neutral or alkaline enzymes. However, inspection of the recently decoded dermatophyte genomes revealed many other hypothetical secreted proteases, in particular acidic proteases similar to those characterized in Aspergillus spp. The validation of such genome predictions instigated the present study on two dermatophyte species, Microsporum canis and Arthroderma benhamiae. Both fungi were found to grow well in a protein medium at acidic pH, accompanied by extracellular proteolysis. Shotgun MS analysis of secreted protein revealed fundamentally different protease profiles during fungal growth in acidic versus neutral pH conditions. Most notably, novel dermatophyte-secreted proteases were identified at acidic pH such as pepsins, sedolisins and acidic carboxypeptidases. Therefore, our results not only support genome predictions, but demonstrate for the first time the secretion of acidic proteases by dermatophytes. Our findings also suggest the existence of different pathways of protein degradation into amino acids and short peptides in these highly specialized pathogenic fungi.
Insights
Dermatophyte fungi secrete acidic proteases, challenging previous understanding. This study identifies novel acidic proteases like pepsins, revealing new protein degradation pathways in these pathogenic fungi.
Area of Science:
- Mycology
- Biochemistry
- Pathogen Biology
Background:
- Dermatophytes cause superficial mycoses.
- Secreted proteases are key virulence factors.
- Previously, only neutral/alkaline proteases were well-characterized.
Purpose of the Study:
- To validate genome predictions of novel secreted proteases in dermatophytes.
- To investigate protease secretion under acidic conditions.
- To characterize the role of acidic proteases in dermatophyte pathogenesis.
Main Methods:
- Culturing Microsporum canis and Arthroderma benhamiae in protein medium at acidic and neutral pH.
- Analyzing secreted proteins using shotgun mass spectrometry (MS).
- Identifying and characterizing secreted proteases.
Main Results:
- Dermatophytes grow and exhibit extracellular proteolysis at acidic pH.
- Fundamentally different protease profiles were observed at acidic vs. neutral pH.
- Novel acidic proteases, including pepsins, sedolisins, and acidic carboxypeptidases, were identified at acidic pH.
Conclusions:
- Genome predictions of novel secreted proteases are validated.
- Dermatophytes secrete acidic proteases, a previously undocumented finding.
- Distinct protein degradation pathways exist in dermatophytes, influenced by pH.

