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双层膜中钙与神经节苷脂的相互作用。

The interaction of calcium with gangliosides in bilayer membranes.

作者信息

McDaniel R, McLaughlin S

出版信息

Biochim Biophys Acta. 1985 Oct 10;819(2):153-60. doi: 10.1016/0005-2736(85)90169-5.

Abstract

We studied the binding of calcium to bilayer membranes formed from mixtures of phosphatidylcholine and mono-, di-, or trisialoganglioside by measuring its effect on the electrophoretic mobility of multilamellar vesicles and the conductance of planar bilayers. In 0.001 M monovalent salt solutions the surface potential of the membranes is large and micromolar concentrations of calcium have a significant effect on the mobility and conductance. In 0.1 M monovalent salt solutions the surface potential is small and millimolar concentrations of calcium are required to affect these parameters. The strong apparent binding of calcium we observed at low ionic strength could be due to the nonspecific accumulation of calcium in the electrical diffuse double layer. To distinguish between this nonspecific effect and binding of calcium to the membrane, we substituted dimethonium for calcium. Dimethonium is a divalent cation that screens negative charges but does not bind to lipids. We also examined the effect of replacing phosphatidylcholine by monoolein: calcium binds to phosphatidylcholine but not to monoolein. We describe our electrophoretic mobility results by combining the Poisson-Boltzmann and Navier-Stokes equations with the Langmuir adsorption isotherm. We conclude that calcium binds weakly to gangliosides with an intrinsic association constant of less than 100 M-1, which is similar to the association constant of calcium with phospholipids.

摘要

我们通过测量钙对多层囊泡电泳迁移率和平面双层膜电导的影响,研究了钙与由磷脂酰胆碱和单唾液酸、二唾液酸或三唾液酸神经节苷脂混合物形成的双层膜的结合情况。在0.001 M单价盐溶液中,膜的表面电位较大,微摩尔浓度的钙对迁移率和电导有显著影响。在0.1 M单价盐溶液中,表面电位较小,需要毫摩尔浓度的钙才能影响这些参数。我们在低离子强度下观察到的钙的强烈表观结合可能是由于钙在电扩散双层中的非特异性积累。为了区分这种非特异性效应和钙与膜的结合,我们用二甲基铵替代钙。二甲基铵是一种二价阳离子,可屏蔽负电荷但不与脂质结合。我们还研究了用单油酸甘油酯替代磷脂酰胆碱的效果:钙与磷脂酰胆碱结合但不与单油酸甘油酯结合。我们通过将泊松-玻尔兹曼方程和纳维-斯托克斯方程与朗缪尔吸附等温线相结合来描述我们的电泳迁移率结果。我们得出结论,钙与神经节苷脂的结合较弱,内在缔合常数小于100 M⁻¹,这与钙与磷脂的缔合常数相似。

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