Channel-forming properties of cecropins and related model compounds incorporated into planar lipid membranes.
- 1 July 1988
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 85 (14) , 5072-5076
- https://doi.org/10.1073/pnas.85.14.5072
Abstract
Cecropins, positively charged antibacterial peptides found in the cecropia moth, and synthetic peptide analogs form large time-variant and voltage-dependent ion channels in planar lipid membranes in the physiological range of concentration. Single-channel conductances of up to 2.5 nS (in 0.1 M NaCl) were observed, which suggests a channel diameter of 4 nm. Channels formed by the peptides cecropin AD and MP3 had a permeability ratio of Cl-/Na+ = 2:1 in 0.1 M NaCl. A comparative study of the three cecropins, cecropins A, B, and D, and of six synthetic analogs allowed determination of structural requirements for pore formation. Shorter amphipathic peptides did not form channels, although they adsorbed to the bilayer. A flexible segment between the N-terminal amphipathic region and the C-terminal more hydrophobic region of the peptide was required for the observation of a time-variant, voltage-dependent conductance. Cecropin AD was the most effective voltage-dependent pore-forming peptide and was also the most potent antibacterial peptide against several test organisms. A positive surface charge or cholesterol in the bilayer reduced the conductances caused by cecropin AD or MP3 by at least 5-fold. This behavior is consistent with the known insensitivity of eukaryotic cells to cecropins. Our observations suggest that the broad antibacterial activity of cecropins is due to formation of large pores in bacterial cell membranes.Keywords
This publication has 28 references indexed in Scilit:
- Structure-function relationships for a voltage-dependent ion channel: properties of COOH-terminal fragments of colicin E1.Proceedings of the National Academy of Sciences, 1983
- Synthesis of the antibacterial peptide cecropin A(1-33)Biochemistry, 1982
- Secondary structure of the cecropins: antibacterial peptides from the moth Hyalophora cecropiaFEBS Letters, 1982
- The sting. Melittin forms channels in lipid bilayersBiophysical Journal, 1981
- The potential span of photoredox reactions of porphyrins and chlorophyll at the lipid bilayer-water interfaceBiophysical Journal, 1981
- Humoral Immunity in Cecropia PupaePublished by Springer Nature ,1981
- Insect Immunity. Purification and Properties of Three Inducible Bactericidal Proteins from Hemolymph of Immunized Pupae of Hyalophora cecropiaEuropean Journal of Biochemistry, 1980
- The electrical response to light of bacteriorhodopsin in planar membranesBiophysical Journal, 1978
- Incorporation of bacteriorhodopsin into a bilayer lipid membrane; a photoelectric-spectroscopic studyFEBS Letters, 1976
- Dual mechanism for the action of cholesterol on membrane permeabilityNature, 1974