Conformation of alamethicin in phospholipid vesicles: Implications for insertion models
- 1 January 1988
- journal article
- research article
- Published by Wiley in Proteins-Structure Function and Bioinformatics
- Vol. 4 (2) , 89-98
- https://doi.org/10.1002/prot.340040203
Abstract
The secondary structure of alamethicin, a membrane channel-forming polypeptide, has been examined by circular dichroism spectroscopy to determine the relationship of its conformation in organic solution to its conformation in a membrane-bound state. The spectrum of alamethicin in small unilamellar dimyristoyl phosphatidylcholine vesicles is significantly different from its spectrum in 10% methanol/acetonitrile, the solvent from which it was crystallized (Fox and Richards: Nature 300:325–330, 1982), as well as its spectrum in methanol, the solvent in which NMR studies have been done (Banerjee and Chan: Biochemistry 22:3709–3713, 1983). This suggests that structural models based on studies of the molecule in organic solvents may not be entirely appropriate for the membrane-bound state. To distinguish between different models for channel formation and insertion, two different methods were used to associate the alamethicin with vesicles; in addition, the effect of oligomerization on the conformation of the membrane-bound state was investigated. These studies are consistent with a modified insertion model in which alamethicin monomers, dimers, or trimers associate with the bilayer and then spontaneously oligomerize to form a prechannel with a higher helix content. This aggregate could then “open” upon application of an appropriate gating transmembrane potential.Keywords
This publication has 43 references indexed in Scilit:
- Differential light scattering and absorption flattening optical effects are minimal in the circular dichroism spectra of small unilamellar vesiclesBiochemistry, 1984
- Structure of Alamethicin in solutionJournal of Molecular Biology, 1983
- 600 MHz proton magnetic resonance studies of natural and synthetic alamethicinFEBS Letters, 1981
- Determination of protein secondary structure in solution by vacuum ultraviolet circular dichroismJournal of Molecular Biology, 1980
- The crystal and molecular structure of the amino terminal tetrapeptide of alamethicin. A novel 310 helical conformationBiochemical and Biophysical Research Communications, 1977
- Statistical analysis of alamethicin channels in black lipid membranesThe Journal of Membrane Biology, 1974
- The nature of the voltage-dependent conductance induced by alamethicin in black lipid membranesThe Journal of Membrane Biology, 1973
- The conformation of alamethicinFEBS Letters, 1971
- Optical Rotation of Oriented Helices. III. Calculation of the Rotatory Dispersion and Circular Dichroism of the Alpha- and 310-HelixThe Journal of Chemical Physics, 1967
- The flattering of the absorption spectrum of suspensions, as compared to that of solutionsBiochimica et Biophysica Acta, 1956