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Membrane Adsorption Enhances Translocation of Antimicrobial Peptide Buforin 2.
- Source :
-
The journal of physical chemistry. B [J Phys Chem B] 2024 Sep 05; Vol. 128 (35), pp. 8469-8476. Date of Electronic Publication: 2024 Aug 28. - Publication Year :
- 2024
-
Abstract
- Despite ongoing research on antimicrobial peptides (AMPs) and cell-penetrating peptides (CPPs), their precise translocation mechanism remains elusive. This includes Buforin 2 (BF2), a well-known AMP, for which spontaneous translocation across the membrane has been proposed but a high barrier has been calculated. Here, we used computer simulations to investigate the effect of a nonequilibrium situation where the peptides are adsorbed on one side of the lipid bilayer, mimicking experimental conditions. We demonstrated that the asymmetric membrane adsorption of BF2 enhances its translocation across the lipid bilayer by lowering the energy barrier by tens of kJ mol <superscript>-1</superscript> . We showed that asymmetric membrane adsorption also reduced the free energy barrier of lipid flip-flop but remained unlikely even at BF2 surface saturation. These results provide insight into the driving forces behind membrane translocation of cell-penetrating peptides in nonequilibrium conditions, mimicking experiments.
- Subjects :
- Adsorption
Terpenes chemistry
Terpenes pharmacology
Molecular Dynamics Simulation
Antimicrobial Peptides chemistry
Antimicrobial Peptides pharmacology
Antimicrobial Cationic Peptides chemistry
Antimicrobial Cationic Peptides pharmacology
Antimicrobial Cationic Peptides metabolism
Cell-Penetrating Peptides chemistry
Cell-Penetrating Peptides metabolism
Thermodynamics
Cell Membrane metabolism
Cell Membrane chemistry
Proteins
Lipid Bilayers chemistry
Lipid Bilayers metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 1520-5207
- Volume :
- 128
- Issue :
- 35
- Database :
- MEDLINE
- Journal :
- The journal of physical chemistry. B
- Publication Type :
- Academic Journal
- Accession number :
- 39194157
- Full Text :
- https://doi.org/10.1021/acs.jpcb.4c04338