Enhanced Membrane Permeabilization and Antibacterial Activity of a Disulfide-Dimerized Magainin Analogue
- 14 December 2002
- journal article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 42 (2) , 402-409
- https://doi.org/10.1021/bi026328h
Abstract
A cysteine substitution analogue of magainin-2 amide (magainin-F12W, N22C; denoted here as mag-N22C), and a disulfide-linked dimer prepared by air oxidation [(mag-N22C)(2)], were compared in their ability to release carboxyfluorescein (CF) from 100-nm large unilamellar vesicles (LUV) and to kill the Gram negative bacteria Stenotrophomonas maltophilia and Escherichia coli. The disulfide-dimerized peptide showed enhanced permeabilization and antimicrobial activity, when compared with the monomeric peptide, that was particularly marked at very low peptide concentrations. The enhanced CF-releasing activity of the dimer at low concentrations in vesicles results from (i) enhanced binding to negatively charged membrane surfaces and (ii) a low concentration dependence for permeabilization in the dimer compared to the monomer. The unique properties of the dimeric peptide suggest a role for structural diversity of antimicrobial peptides in frog skin, including the recent identification of a heterodimer composed of disulfide-linked amphipathic helical peptides [Batista et al. (2001) FEBS Lett. 494, 85-89]. Disulfide-dimerization of pore-forming, positively charged, amphipathic helical peptides may be a useful general approach to the generation of peptide antimicrobials having activity at very low concentrations.Keywords
This publication has 8 references indexed in Scilit:
- Structure, Location, and Lipid Perturbations of Melittin at the Membrane InterfaceBiophysical Journal, 2001
- Lentivirus-derived antimicrobial peptides: increased potency by sequence engineering and dimerizationJournal of Antimicrobial Chemotherapy, 1999
- Generalised bilayer perturbation from peptide helix dimerisation at membrane surfaces: vesicle lysis induced by disulphide-dimerised melittin analogues.FEBS Letters, 1999
- Overcoming apoptosis: new methods for improving protein-expression systemsTrends in Biotechnology, 1998
- Structure and Dynamics of the Antibiotic Peptide PGLa in Membranes by Solution and Solid-State Nuclear Magnetic Resonance SpectroscopyBiophysical Journal, 1998
- Microbiological and Clinical Aspects of Infection Associated with Stenotrophomonas maltophiliaClinical Microbiology Reviews, 1998
- Electrical interactions of membrane active peptides at lipid/water interfacesBiophysical Chemistry, 1996
- PEPTIDES FROM FROG SKINAnnual Review of Biochemistry, 1990