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静电相互作用对生物膜立方相稳定性的影响。

Effect of electrostatic interactions on phase stability of cubic phases of biomembranes.

作者信息

Li Shu Jie, Masum Shah Md, Yamashita Yuko, Tamba Yukihiro, Yamazaki Masahito

机构信息

Materials Science, Graduate School of Science and Engineering, Shizuoka University, 836 Oya, Shizuoka, 422-8529 Japan.

出版信息

J Biol Phys. 2002 Jun;28(2):253-66. doi: 10.1023/A:1019927614681.

Abstract

We investigated effect of electrostatic interactions due to surfacecharges on structures and stability of cubic phases of monoolein (MO)membrane using the small-angle X-ray scattering method. Firstly, wechanged the surface charge density of the membrane by usingdioleoylphosphatidic acid (DOPA). As increasing DOPA concentration in themembrane at 30 wt % lipid concentration, a Q(224) to Q(229) phasetransition occurred at 0.6 mol % DOPA, and at and above 25 mol %, DOPA/MOmembranes were in the L(α) phase. NaCl in the bulk phase reduced theeffect of DOPA. These results indicate that as the electrostaticinteractions increase, the most stable phase changes as follows: Q(224)⇒ Q(229) ⇒ L(α). The increase in DOPAconcentration reduced the absolute value of spontaneous curvature of themembrane, | H(0) |. Secondly, we changed the surface charge of themembrane by adding a de novo designed peptide, which has netpositive charges and a binding site on the electrically neutral membraneinterface. The peptide-1 (WLFLLKKK) induced a Q(224) to Q(229)phase transition in the MO membrane at low peptide concentration. As NaClconcentration increases, the MO/peptide-1 membrane changed from Q(229)to Q(224) phase. The increase in peptide-1 concentration reduced |H(0) |. Based on these results, the stability of the cubic phases and themechanism of phase transition between cubic phase and L(α) phase arediscussed.

摘要

我们使用小角X射线散射方法研究了表面电荷引起的静电相互作用对单油酸甘油酯(MO)膜立方相结构和稳定性的影响。首先,我们通过使用二油酰磷脂酸(DOPA)来改变膜的表面电荷密度。在脂质浓度为30 wt%的膜中增加DOPA浓度时,在0.6 mol% DOPA处发生了从Q(224)到Q(229)的相变,并且在25 mol%及以上时,DOPA/MO膜处于L(α)相。本体相中的NaCl降低了DOPA的作用。这些结果表明,随着静电相互作用增加,最稳定的相变化如下:Q(224)⇒Q(229)⇒L(α)。DOPA浓度的增加降低了膜的自发曲率绝对值|H(0)|。其次,我们通过添加一种从头设计的肽来改变膜的表面电荷,该肽带有净正电荷且在电中性膜界面上有一个结合位点。肽-1(WLFLLKKK)在低肽浓度下诱导MO膜中发生从Q(224)到Q(229)的相变。随着NaCl浓度增加,MO/肽-1膜从Q(229)相转变为Q(224)相。肽-1浓度的增加降低了|H(0)|。基于这些结果,讨论了立方相的稳定性以及立方相和L(α)相之间的相变机制。

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