Li Shu Jie, Masum Shah Md, Yamashita Yuko, Tamba Yukihiro, Yamazaki Masahito
Materials Science, Graduate School of Science and Engineering, Shizuoka University, 836 Oya, Shizuoka, 422-8529 Japan.
J Biol Phys. 2002 Jun;28(2):253-66. doi: 10.1023/A:1019927614681.
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.
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。