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磷脂/神经节苷脂GM1双层膜之间的长程和短程相互作用。

Long- and short-range interactions between phospholipid/ganglioside GM1 bilayers.

作者信息

McIntosh T J, Simon S A

机构信息

Department of Cell Biology, Duke University Medical Center, Durham, North Carolina 27710.

出版信息

Biochemistry. 1994 Aug 30;33(34):10477-86. doi: 10.1021/bi00200a032.

Abstract

The structure and interactive properties of liquid-crystalline egg phosphatidylcholine (EPC) bilayers containing the ganglioside GM1 and its uncharged analogue, asialoGM1 (AGM1), have been obtained by X-ray diffraction analysis of osmotically stressed liposomes. Both electron density profiles and reciprocal space modeling indicate that (1) the incorporation of up to 30 mol % GM1 into EPC bilayers has little effect on bilayer organization and (2) the oligosaccharide portion of the GM1 molecule extends at least 12 A beyond the EPC head group into the fluid space, implying that the GM1 head group is nearly fully extended from the bilayer surface. Pressure-distance relations for EPC:GM1 bilayers in 100 mM ionic strength buffer show that, for large bilayer separations, the interbilayer repulsive pressure decays exponentially with a decay length and magnitude expected for electrostatic repulsion arising from the charged GM1. However, at interbilayer separations of < or = 30 A for 7:3 and 8:2 EPC:GM1 and < or = 22 A for 9:1 EPC:GM1, the pressure-distance curves have distinct upward breaks, with the sharpness of this break depending strongly on the amount of GM1 in the bilayer. For 7:3 EPC:GM1 bilayers, the break is quite sharp so that the distance between bilayers does not decrease below 28 A with further increases in applied pressure. For EPC:GM1 8:2 and 9:1 bilayers, the upward break becomes softer with decreasing GM1 concentration. For uncharged EPC:AGM1 bilayers, the repulsive pressure extends only to an equilibrium fluid separation of about 36 A, but has a similar behavior to the pressure-distance data for EPC:GM1 for separations below 20 A. We argue that the nonelectrostatic repulsive pressures arise primarily from the steric interactions between the hydrated oligosaccharide head groups that protrude from the bilayer surface.

摘要

通过对渗透压应激脂质体进行X射线衍射分析,获得了含有神经节苷脂GM1及其不带电荷类似物脱唾液酸GM1(AGM1)的液晶态鸡蛋磷脂酰胆碱(EPC)双层膜的结构和相互作用特性。电子密度分布图和倒易空间模型均表明:(1)向EPC双层膜中掺入高达30 mol%的GM1对双层膜结构影响不大;(2)GM1分子的寡糖部分至少延伸至EPC头部基团之外12 Å进入流体空间,这意味着GM1头部基团几乎完全从双层膜表面伸展出来。在100 mM离子强度缓冲液中EPC:GM1双层膜的压力-距离关系表明,对于较大的双层膜间距,双层膜间的排斥压力呈指数衰减,其衰减长度和幅度符合由带电荷的GM1产生的静电排斥预期。然而,对于7:3和8:2的EPC:GM1双层膜,双层膜间距≤30 Å时,以及对于9:1的EPC:GM1双层膜,双层膜间距≤22 Å时,压力-距离曲线有明显的向上转折处,该转折的尖锐程度强烈依赖于双层膜中GM1的含量。对于7:3的EPC:GM1双层膜,转折非常尖锐以至于随着施加压力的进一步增加,双层膜之间的距离不会减小到28 Å以下。对于EPC:GM1 8:2和9:1双层膜,随着GM1浓度降低,向上的转折变得更平缓。对于不带电荷的EPC:AGM1双层膜,排斥压力仅延伸至约36 Å的平衡流体间距,但对于小于20 Å的间距,其与EPC:GM1的压力-距离数据具有相似的行为。我们认为非静电排斥压力主要源于从双层膜表面突出的水合寡糖头部基团之间的空间相互作用。

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