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Electrostatic interactions among hydrophobic ions in lipid bilayer membranes
- Publication Year :
- 1978
-
Abstract
- We have shown that the absorption of tetraphenylborate into black lipid membranes formed from either bacterial phosphatidylethanolamine or glycerolmonooleate produces concentration-dependent changes in the electrostatic potential between the membrane interior and the bulk aqueous phases. These potential changes were studied by a variety of techniques: voltage clamp, charge pulse, and "probe" measurements on black lipid membranes; electrophroetic mobility measurements on phospholipid vesicles; and surface potential measurements on phospholipid monolayers. The magnitude of the potential changes indicates that tetraphenylborate absorbs into a region of the membrane with a low dielectric constant, where it produces substantial boundary potentials, as first suggested by Markin et al. (1971). Many features of our data can be explained by a simple three-capacitor model, which we develop in a self-consistent manner. Some discrepancies between our data and the simple model suggest that discrete charge phenomena may be important within these thin membranes.
- Subjects :
- Boron Compounds
Glycerol
Voltage clamp
Tetraphenylborate
Analytical chemistry
Phospholipid
Biophysics
Oleic Acids
Models, Biological
chemistry.chemical_compound
Monolayer
Electrochemistry
Lipid bilayer
Ions
Bacteria
Chemistry
Phosphatidylethanolamines
Biological membrane
Membranes, Artificial
Electrostatics
Kinetics
Membrane
Chemical physics
Potentiometry
Research Article
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....c8a181341bff0fc4d9531da8abd4f38e