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Production and Visualization of Bacterial Spheroplasts and Protoplasts to Characterize Antimicrobial Peptide Localization
Published on: August 11, 2018
Mechanism of Initial Stage of Pore Formation Induced by Antimicrobial Peptide Magainin 2
Moynul Hasan1, Mohammad Abu Sayem Karal1, Victor Levadnyy1,2
1Integrated Bioscience Section, Graduate School of Science and Technology , Shizuoka University , Shizuoka 422-8529 , Japan.
Abstract:
Antimicrobial peptide magainin 2 forms pores in lipid bilayers, a property that is considered the main cause of its bactericidal activity. Recent data suggest that tension or stretching of the inner monolayer plays an important role in magainin 2-induced pore formation in lipid bilayers. Here, to elucidate the mechanism of magainin 2-induced pore formation, we investigated the effect on pore formation of asymmetric lipid distribution in two monolayers. First, we developed a method to prepare giant unilamellar vesicles (GUVs) composed of dioleoylphosphatidylglycerol (DOPG), dioleoylphosphatidylcholine (DOPC), and lyso-PC (LPC) in the inner monolayer and of DOPG/DOPC in the outer monolayer. We consider that in these GUVs, the lipid packing in the inner monolayer was larger than that in the outer monolayer. Next, we investigated the interaction of magainin 2 with these GUVs with an asymmetric distribution of LPC using the single GUV method, and found that the rate constant of magainin 2-induced pore formation, kp, decreased with increasing LPC concentration in the inner monolayer. We constructed a quantitative model of magainin 2-induced pore formation, whereby the binding of magainin 2 to the outer monolayer of a GUV induces stretching of the inner monolayer, causing pore formation. A theoretical equation defining kp as a function of magainin 2 surface concentration, X, reasonably explains the experimental relationship between kp and X. This model quantitatively explains the effect on kp of the LPC concentration in the inner monolayer. On the basis of these results, we discuss the mechanism of the initial stage of magainin 2-induced pore formation.
Insights
Antimicrobial peptide magainin 2 pore formation in lipid bilayers is influenced by inner monolayer tension. Increasing lyso-PC (LPC) in the inner layer of giant unilamellar vesicles (GUVs) decreased pore formation rate, supporting a tension-based mechanism.
Area of Science:
- Biophysics
- Membrane Biology
- Antimicrobial Peptides
Background:
- Antimicrobial peptides like magainin 2 are crucial for combating bacteria.
- Magainin 2's pore-forming activity in lipid bilayers is key to its bactericidal effect.
- Lipid monolayer tension is increasingly recognized as a factor in magainin 2-induced pore formation.
Purpose of the Study:
- To elucidate the mechanism of magainin 2-induced pore formation.
- To investigate the impact of asymmetric lipid distribution on pore formation.
- To quantify the relationship between lipid packing and magainin 2 activity.
Main Methods:
- Development of giant unilamellar vesicles (GUVs) with asymmetric lipid distribution (LPC in the inner monolayer).
- Utilizing the single GUV method to study magainin 2 interactions.
- Constructing and validating a quantitative model for magainin 2-induced pore formation.
Main Results:
- Magainin 2-induced pore formation rate (kₚ) decreased with increasing LPC concentration in the inner monolayer.
- A quantitative model successfully explained the experimental relationship between kₚ, magainin 2 surface concentration, and LPC concentration.
- The model supports a mechanism where magainin 2 binding induces inner monolayer stretching, leading to pore formation.
Conclusions:
- Lipid packing asymmetry significantly influences magainin 2 pore formation.
- Inner monolayer tension, modulated by lipid composition, is a critical factor in the initial stages of magainin 2-induced pore formation.
- The developed model provides a quantitative framework for understanding magainin 2's membrane interaction mechanism.
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