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Updated: Jan 30, 2026

An In Ovo Model for Testing Insulin-mimetic Compounds
Published on: April 23, 2018
Psd2 pea defensin shows a preference for mimetic membrane rafts enriched with glucosylceramide and ergosterol
Virginia Sara Grancieri Amaral1, Caroline Mota Fernandes2, Mário R Felício3
1Instituto de Bioquímica Médica, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil; Instituto de Biofísica Carlos Chagas Filho, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.
Abstract:
Psd2 is a pea defensin with 47 amino acid residues that inhibits the growth of fungal species by an uncharacterized mechanism. In this work, Psd2 interactions with model membranes mimicking the lipid compositions of different organisms were evaluated. Protein-lipid overlay assays indicated that Psd2 recognizes Fusarium solani glucosylceramide (GlcCerF.solani) and ergosterol (Erg) in addition to phosphatidylcholine (POPC) and some phosphatidylinositol species, such as PtdIns (3)P, (5)P and (3,5)P2, suggesting that these lipids may play important roles as Psd2 targets. Assays using lipid vesicles were also performed to study the behaviour and dynamics that occur after peptide-membrane interactions. Surface plasmon resonance analysis showed that Psd2 has a higher affinity for pure POPC and POPC-based vesicles containing GlcCer and Erg at a 70:30 proportion than for vesicles containing cholesterol (Chol). Partition experiments by fluorescence spectroscopy showed a decrease in Trp42 quantum yield of Psd2 in the presence of GlcCerF.solani and Erg, individually or in simultaneously enriched membranes. The partition coefficient (Kp) obtained indicated a Psd2 partition preference for this vesicles, confirmed by quenching assays using acrylamide and 5/16-doxyl-stearic acid. Furthermore, we showed that the presence of C8C9 double bonds and a methyl group at position C9 of the sphingoid base backbone of GlcCer was relevant to Psd2 activity against Aspergillus nidulans. These results are consistent with the selectivity of Psd2 against fungi and its lack of toxicity in human erythrocytes. Psd2 represents a promising natural compound for the treatment of fungal infections.
Insights
Pea defensin Psd2 targets fungal lipids like glucosylceramide and ergosterol, explaining its antifungal activity and potential as a novel treatment for fungal infections.
Area of Science:
- Biochemistry
- Molecular Biology
- Mycology
Background:
- Psd2 is a pea defensin peptide with antifungal properties.
- The mechanism of Psd2's antifungal action remains largely uncharacterized.
- Understanding Psd2-membrane interactions is crucial for elucidating its function.
Purpose of the Study:
- To investigate the interactions of Psd2 with model membranes.
- To identify specific lipids that Psd2 targets in fungal membranes.
- To explore the structural basis for Psd2's antifungal selectivity.
Main Methods:
- Protein-lipid overlay assays to identify Psd2-binding lipids.
- Lipid vesicle assays including surface plasmon resonance (SPR) and fluorescence spectroscopy.
- Partition experiments and quenching assays to quantify peptide-membrane interactions.
- Structure-activity relationship studies focusing on glucosylceramide (GlcCer) features.
Main Results:
- Psd2 preferentially binds to fungal lipids: Fusarium solani glucosylceramide (GlcCerF.solani) and ergosterol (Erg).
- Psd2 exhibits higher affinity for membranes containing GlcCer and Erg compared to cholesterol.
- Specific structural features of GlcCer, including C8C9 double bonds and a C9 methyl group, are critical for Psd2's activity against Aspergillus nidulans.
- Psd2 shows selective toxicity against fungi with no observed toxicity in human erythrocytes.
Conclusions:
- Psd2 selectively targets fungal lipids, explaining its specificity and efficacy against fungal pathogens.
- The findings provide mechanistic insights into Psd2's antifungal action.
- Psd2 is a promising natural compound for developing new antifungal therapies.
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