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Published on: June 4, 2017
Identification of aero-allergens from Rhizopus oryzae: an immunoproteomic approach
Gaurab Sircar1, Himadri S Chakrabarti, Bodhisattwa Saha
1Division of Plant Biology, Bose Institute (Main Campus), 93/1 Acharya Prafulla Chandra Road, Kolkata-700009, India.
Abstract:
Airborne fungal spores bearing allergens are the causative agent for inducing immediate hypersensitive reaction in sensitive individuals. In this study the potential aeroallergens have been reported for the first time from Rhizopus oryzae a common airborne mold. Clinical data based on SPT was further confirmed by ELISA. IgE reactive bands were revealed by one-dimensional immunoblotting. A 44 kDa major reactive band was found in all immunoblots. For precise identification of allergens, an immuno-proteomic approach was taken with a combination of 2-Dimensional gel electrophoresis and Mass-spectrometry. 2D map of spore-mycelial protein was confronted with pooled sera and several IgE reactive spots were detected, most of which were glycoproteins and except for one, which has no antigenic determinacy after metaperiodate modification. Each of those spots was identified by MALDI-TOF-TOF. Some bioinformatic approaches were taken to predict the signal peptide and subcellular localization of each protein. Major 44 kDa allergen was identified as Aspartyl endopeptidase. Sequence information was extracted from MS/MS spectra of two tryptic peptides generated from the 44 kDa endopeptidase. Multiple alignments with other reported aspartyl protease allergens showed significant homology. Allergenicity assessment of this protein was performed in silico and identified as a potential putative allergen.
Insights
Airborne fungal spores from Rhizopus oryzae cause allergic reactions. Researchers identified a major 44 kDa allergen, Aspartyl endopeptidase, using an immunoproteomic approach, confirming its potential as a significant aeroallergen.
Area of Science:
- Mycology
- Allergology
- Immunology
Background:
- Airborne fungal spores are common triggers of immediate hypersensitivity reactions.
- Rhizopus oryzae is a prevalent airborne mold with potential allergenic properties.
Purpose of the Study:
- To identify and characterize potential aeroallergens from Rhizopus oryzae.
- To investigate the allergenic potential of R. oryzae spores and mycelia.
Main Methods:
- Skin prick testing (SPT) and Enzyme-Linked Immunosorbent Assay (ELISA) for clinical evaluation.
- One-dimensional immunoblotting to detect IgE reactive components.
- Proteomic analysis using 2-Dimensional gel electrophoresis and Mass Spectrometry (MALDI-TOF-TOF).
Main Results:
- A major 44 kDa IgE-reactive band was identified in R. oryzae extracts.
- Immunoproteomic analysis revealed several IgE-binding spots, primarily glycoproteins.
- The major 44 kDa allergen was identified as Aspartyl endopeptidase, showing homology to other aspartyl protease allergens.
Conclusions:
- Aspartyl endopeptidase from Rhizopus oryzae is identified as a major aeroallergen.
- This finding contributes to understanding fungal allergies and developing diagnostic tools.
