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与模型磷脂双层相邻的静电势计算。

Calculations of the electrostatic potential adjacent to model phospholipid bilayers.

作者信息

Peitzsch R M, Eisenberg M, Sharp K A, McLaughlin S

机构信息

Department of Physiology and Biophysics, HSC, SUNY Stony Brook 11794, USA.

出版信息

Biophys J. 1995 Mar;68(3):729-38. doi: 10.1016/S0006-3495(95)80253-5.

Abstract

We used the nonlinear Poisson-Boltzmann equation to calculate electrostatic potentials in the aqueous phase adjacent to model phospholipid bilayers containing mixtures of zwitterionic lipids (phosphatidylcholine) and acidic lipids (phosphatidylserine or phosphatidylglycerol). The aqueous phase (relative permittivity, epsilon r = 80) contains 0.1 M monovalent salt. When the bilayers contain < 11% acidic lipid, the -25 mV equipotential surfaces are discrete domes centered over the negatively charged lipids and are approximately twice the value calculated using Debye-Hückel theory. When the bilayers contain > 25% acidic lipid, the -25 mV equipotential profiles are essentially flat and agree well with the values calculated using Gouy-Chapman theory. When the bilayers contain 100% acidic lipid, all of the equipotential surfaces are flat and agree with Gouy-Chapman predictions (including the -100 mV surface, which is located only 1 A from the outermost atoms). Even our model bilayers are not simple systems: the charge on each lipid is distributed over several atoms, these partial charges are non-coplanar, there is a 2 A ion-exclusion region (epsilon r = 80) adjacent to the polar headgroups, and the molecular surface is rough. We investigated the effect of these four factors using smooth (or bumpy) epsilon r = 2 slabs with embedded point charges: these factors had only minor effects on the potential in the aqueous phase.

摘要

我们使用非线性泊松-玻尔兹曼方程来计算与含有两性离子脂质(磷脂酰胆碱)和酸性脂质(磷脂酰丝氨酸或磷脂酰甘油)混合物的模型磷脂双层相邻的水相中的静电势。水相(相对介电常数,εr = 80)含有0.1 M单价盐。当双层膜中酸性脂质含量<11%时,-25 mV等势面是位于带负电脂质上方的离散圆顶,其值约为使用德拜-休克尔理论计算值的两倍。当双层膜中酸性脂质含量>25%时,-25 mV等势分布基本平坦,与使用古伊-查普曼理论计算的值吻合良好。当双层膜中酸性脂质含量为100%时,所有等势面都是平坦的,与古伊-查普曼预测结果一致(包括-100 mV表面,其仅距离最外层原子1 Å)。即使我们的模型双层膜也不是简单的系统:每个脂质上的电荷分布在几个原子上,这些部分电荷是非共面的,在极性头部基团相邻处有一个2 Å的离子排斥区域(εr = 80),并且分子表面是粗糙的。我们使用嵌入点电荷的光滑(或凹凸不平)的εr = 2平板研究了这四个因素的影响:这些因素对水相中的电势只有微小影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b92/1281797/b61fe5f56397/biophysj00064-0009-a.jpg

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