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首页> 外文期刊>Archives of Biochemistry and Biophysics >Relevance of lipid polar headgroups on boron-mediated changes in membrane physical properties
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Relevance of lipid polar headgroups on boron-mediated changes in membrane physical properties

机译:脂质极性头基与硼介导的膜物理性质变化的相关性

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摘要

Using liposomes composed of either brain phosphatidylcholine (PC), or binary mixtures of PC and phosphatidylserine (PS), galactolipids (GL), phosphatidylinositol (PI), cardiolipin (CL), phosphatidic acid (PA), or phosphatidylethanolamine (PE), we investigated the effects of graded amounts of boric acid (B, 0.5-1000 mu M) on the following membrane physical properties: (a) surface potential, (b) lipid rearrangement through lateral phase separation, (c) fluidity, and (d) hydration. Incubation of the different populations of vesicles with B was associated with a small, but statistically significant, increase in membrane surface potential in PC, PC:PS, PC:GL, PC:PI, PC:PA, and PC:PE liposomes. B-induced lipid lateral rearrangement through lateral phase separation in PC, PC:PA, and PC:PE liposomes; but had no effects on PC:PS, PC:GL, and PC:PI liposomes. In PC liposomes B affected membrane fluidity at the water-lipid interface without affecting the hydrophobic core of the bilayer. In all the other binary liposomes studied, B increased membrane fluidity in both, the hydrophobic portion of the membrane and in the anionic domains. The above was associated with a decrease in the fluidity of the cationic domains. B (10-1000 mu M) decreased membrane hydration regardless the composition of the liposomes. The obtained results demonstrate the ability of B to interact with membranes, and induce changes in membrane physical properties. Importantly, the extent of B-membrane interactions and the consequent effects were dependent on the nature of the lipid molecule; as such, B had greater affinity with lipids containing polyhydroxylated moieties such as GL and PI. These differential interactions may result in different B-induced modulations of membrane-associated processes in cells. (c) 2005 Elsevier Inc. All rights reserved.
机译:使用由脑磷脂酰胆碱(PC)或PC与磷脂酰丝氨酸(PS),半乳糖脂(GL),磷脂酰肌醇(PI),心磷脂(CL),磷脂酸(PA)或磷脂酰乙醇胺(PE)的二元混合物组成的脂质体研究了硼酸分级(B,0.5-1000μM)对以下膜物理性质的影响:(a)表面电势,(b)通过侧相分离进行脂质重排,(c)流动性和(d)保湿。用B孵育不同的囊泡群体与PC,PC:PS,PC:GL,PC:PI,PC:PA和PC:PE脂质体中膜表面电位的微小增加(但具有统计学意义)相关。 B通过PC,PC:PA和PC:PE脂质体中的横向相分离引起的脂质横向重排;但对PC:PS,PC:GL和PC:PI脂质体没有影响。在PC脂质体B中,水脂质界面上的膜流动性受到影响,而不会影响双层的疏水核。在所有其他研究的二元脂质体中,B在膜的疏水部分和阴离子域中均增加了膜的流动性。以上与阳离子结构域的流动性降低有关。 B(10-1000μM)降低了膜水合作用,无论脂质体的组成如何。获得的结果证明了B与膜相互作用并诱导膜物理性质变化的能力。重要的是,B膜相互作用的程度及其结果取决于脂质分子的性质。因此,B与含有多羟基化部分的脂质例如GL和PI具有更大的亲和力。这些不同的相互作用可能导致细胞中膜相关过程的不同B诱导调节。 (c)2005 Elsevier Inc.保留所有权利。

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