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Lipid-Binding Aegerolysin from Biocontrol Fungus Beauveria bassiana
Nada Kraševec1, Anastasija Panevska2, Špela Lemež1,3
1Department of Molecular Biology and Nanobiotechnology, National Institute of Chemistry, SI-1000 Ljubljana, Slovenia.
Abstract:
Fungi are the most common pathogens of insects and thus important regulators of their populations. Lipid-binding aegerolysin proteins, which are commonly found in the fungal kingdom, may be involved in several biologically relevant processes including attack and defense against other organisms. Aegerolysins act alone or together with membrane-attack-complex/perforin (MACPF)-like proteins to form transmembrane pores that lead to cell lysis. We performed an in-depth bioinformatics analysis of aegerolysins in entomopathogenic fungi and selected a candidate aegerolysin, beauveriolysin A (BlyA) from Beauveria bassiana. BlyA was expressed as a recombinant protein in Escherichia coli, and purified to further determine its functional and structural properties, including lipid-binding ability. Aegerolysins were found to be encoded in genomes of entomopathogenic fungi, such as Beauveria, Cordyceps, Metarhizium and Ophiocordyceps. Detailed bioinformatics analysis revealed that they are linked to MACPF-like genes in most genomes. We also show that BlyA interacts with an insect-specific membrane lipid. These results were placed in the context of other fungal and bacterial aegerolysins and their partner proteins. We believe that aegerolysins play a role in promoting the entomopathogenic and antagonistic activity of B. bassiana, which is an active ingredient of bioinsecticides.
Insights
Fungal aegerolysins, like beauveriolysin A from Beauveria bassiana, bind insect lipids. These proteins, often with MACPF-like partners, may enhance fungal insecticidal activity.
Area of Science:
- Mycology
- Biochemistry
- Bioinformatics
Background:
- Fungi are major insect pathogens, regulating insect populations.
- Lipid-binding aegerolysin proteins are common in fungi and implicated in inter-organismal interactions.
- Aegerolysins, with or without MACPF-like proteins, form pores leading to cell lysis.
Purpose of the Study:
- To investigate the role of aegerolysins in entomopathogenic fungi.
- To characterize beauveriolysin A (BlyA) from Beauveria bassiana, a key bioinsecticide component.
Main Methods:
- In-depth bioinformatics analysis of aegerolysins in fungal genomes.
- Expression and purification of recombinant BlyA in Escherichia coli.
- Determination of BlyA's functional properties, including lipid-binding ability.
Main Results:
- Aegerolysin genes are present in genomes of entomopathogenic fungi like Beauveria, Cordyceps, Metarhizium, and Ophiocordyceps.
- Bioinformatics analysis revealed a frequent linkage between aegerolysins and MACPF-like genes.
- Beauveriolysin A was shown to interact with an insect-specific membrane lipid.
Conclusions:
- Aegerolysins are conserved in entomopathogenic fungi and associated with MACPF-like proteins.
- Beauveriolysin A's interaction with insect lipids suggests a role in fungal pathogenesis.
- Aegerolysins likely contribute to the entomopathogenic and antagonistic activities of Beauveria bassiana, supporting its use in bioinsecticides.
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