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The Galleria mellonella Waxworm Infection Model for Disseminated Candidiasis
Published on: November 17, 2018
Fungal α-1,3-Glucan as a New Pathogen-Associated Molecular Pattern in the Insect Model Host Galleria mellonella
Sylwia Stączek1, Agnieszka Zdybicka-Barabas1, Iwona Wojda1
1Department of Immunobiology, Faculty of Biology and Biotechnology, Institute of Biological Sciences, Maria Curie-Skłodowska University, Akademicka 19 St., 20-033 Lublin, Poland.
Abstract:
Recognition of pathogen-associated molecular patterns (PAMPs) by appropriate pattern recognition receptors (PRRs) is a key step in activating the host immune response. The role of a fungal PAMP is attributed to β-1,3-glucan. The role of α-1,3-glucan, another fungal cell wall polysaccharide, in modulating the host immune response is not clear. This work investigates the potential of α-1,3-glucan as a fungal PAMP by analyzing the humoral immune response of the greater wax moth Galleria mellonella to Aspergillus niger α-1,3-glucan. We demonstrated that 57-kDa and 61-kDa hemolymph proteins, identified as β-1,3-glucan recognition proteins, bound to A. niger α-1,3-glucan. Other hemolymph proteins, i.e., apolipophorin I, apolipophorin II, prophenoloxidase, phenoloxidase activating factor, arylphorin, and serine protease, were also identified among α-1,3-glucan-interacting proteins. In response to α-1,3-glucan, a 4.5-fold and 3-fold increase in the gene expression of antifungal peptides galiomicin and gallerimycin was demonstrated, respectively. The significant increase in the level of five defense peptides, including galiomicin, corresponded well with the highest antifungal activity in hemolymph. Our results indicate that A. niger α-1,3-glucan is recognized by the insect immune system, and immune response is triggered by this cell wall component. Thus, the role of a fungal PAMP for α-1,3-glucan can be postulated.
Insights
Alpha-1,3-glucan, a fungal cell wall component, is recognized by the insect immune system. This recognition triggers an immune response, suggesting alpha-1,3-glucan acts as a pathogen-associated molecular pattern (PAMP).
Area of Science:
- Immunology
- Mycology
- Biochemistry
Background:
- Pathogen-associated molecular patterns (PAMPs) are recognized by pattern recognition receptors (PRRs) to activate host immune responses.
- Beta-1,3-glucan is a known fungal PAMP, but the role of alpha-1,3-glucan in immune modulation is unclear.
Purpose of the Study:
- To investigate the potential of alpha-1,3-glucan as a fungal PAMP.
- To analyze the humoral immune response of Galleria mellonella to Aspergillus niger alpha-1,3-glucan.
Main Methods:
- Proteomic analysis of hemolymph proteins interacting with A. niger alpha-1,3-glucan.
- Gene expression analysis of antifungal peptides in response to alpha-1,3-glucan.
- Assay of antifungal activity in hemolymph.
Main Results:
- Beta-1,3-glucan recognition proteins and other immune proteins bound to A. niger alpha-1,3-glucan.
- Gene expression of antifungal peptides galiomicin and gallerimycin increased significantly (4.5-fold and 3-fold, respectively).
- Increased levels of defense peptides correlated with enhanced antifungal activity in hemolymph.
Conclusions:
- Aspergillus niger alpha-1,3-glucan is recognized by the insect immune system.
- The insect immune response is triggered by this fungal cell wall component.
- Alpha-1,3-glucan can be postulated to function as a fungal PAMP.

