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Adsorption of divalent cations to bilayer membranes containing phosphatidylserine.

The Journal of General Physiology · 1981 · Vol. 77(4) · pp. 445–473
Stuart McLaughlinN K MulrineThomas GresalfiGerard VaioAbbie C. Mclaughlin

Abstract

The Stern equation, a combination of the Langmuir adsorption isotherm, the Boltzmann relation, and the Grahame equation from the theory of the diffuse double layer, provides a simple theoretical framework for describing the adsorption of charged molecules to surfaces. The ability of this equation to describe the adsorption of divalent cations to membranes containing brain phosphatidylserine (PS) was tested in the following manner. Charge reversal measurements were first made to determine the intrinsic 1:1 association constants of the divalent cations with the anionic PS molecules: when the net charge of a PS vesicle is zero one-half of the available sites are occupied by divalent cations. The intrinsic association constant, therefore, is equal to the reciprocal of the divalent cation concentration at which the mobility of a PS vesicle reverses sign. The Stern equation with this association constant is capable of accurately describing both the zeta potential data obtained with PS vesicles at other concentrations of the divalent cations and the data obtained with with vesicles formed from mixtures of PS and zwitterionic phospholipids. Independent measurements of the number of ions adsorbed to sonicated PS vesicles were made with a calcium-sensitive electrode. The results agreed with the zeta potential results obtained with multilamellar vesicles. When membranes are formed at 20 degrees C in 0.1 M NaCl, the intrinsic 1:1 association constants of Ni, Co, Mn, Ba, Sr, Ca, and Mg with PS are 40, 28, 25, 20, 14, 12, and 8 M-1, respectively.

Lipid Membrane Structure and BehaviorErythrocyte Function and PathophysiologyMolecular Sensors and Ion DetectionDivalentChemistryVesicleMembraneAdsorptionBilayerInorganic chemistryCrystallographyAnalytical Chemistry (journal)Chromatography

MeSH terms

Cations, DivalentGlyceridesLipid BilayersMathematicsPhosphatidylcholinesPhosphatidylethanolaminesPhosphatidylserinesSodium Chloride

Funding

  • National Science Foundation
  • U.S. Department of Energy
Citations
417
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Divalent Ions and the Surface Potential of Charged Phospholipid Membranes
The Journal of General Physiology · 1971 · 640 citations
Cochleate lipid cylinders: formation by fusion of unilamellar lipid vesicles
Biochimica et Biophysica Acta (BBA) - Biomembranes · 1975 · 542 citations
Calculation of the electrophoretic mobility of a spherical colloid particle
Journal of Colloid and Interface Science · 1966 · 832 citations
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Journal of The Electrochemical Society · 1962 · 1,065 citations
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