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模型膜系统中糖鞘脂的分子相互作用和热致行为。

Molecular interactions and thermotropic behavior of glycosphingolipids in model membrane systems.

作者信息

Maggio B, Fidelio G D, Cumar F A, Yu R K

出版信息

Chem Phys Lipids. 1986 Dec 15;42(1-3):49-63. doi: 10.1016/0009-3084(86)90042-3.

Abstract

The oligosaccharide chain of glycosphingolipids (GSLs) has a marked influence on their thermotropic behavior, intermolecular packing and surface electrical potential. The transition temperature and enthalpy of GSLs decrease proportionally to the complexity of the polar head group and show a linear dependence with the intermolecular spacings. Interactions occurring among GSLs and phospholipids induce changes of the molecular area and surface potential that depend on the type of GSLs. Increasing proportions of phospholipids perturb the thermodynamic properties of the GSLs up to a point where phase separated phospholipid domains separate out but no phase separation of pure GSLs occurs. Heterogeneous equilibria among different structures occur for some systems. Large changes of the molecular free energy, eccentricity, asymmetry ratio and phase state of the GSLs-containing structure can be triggered by small changes of the molecular parameters, lipid composition and lateral surface pressure. The thermotropic behavior of GSLs is considerably perturbed by myelin basic protein. Phase separation occurs depending on the amount of protein and type of GSLs. The protein induces a decrease of the lipid molecular area, the more so the more complex the oligosaccharide chain in the GSLs. These membrane systems can not be described only on the basis of the individual properties of the molecules involved in a simple causal manner. Still scarcely explored long range thermodynamic, geometric and field effects that belong simultaneously to the intervening molecules, to the morphological properties of the structure involved and to the aqueous environment, are important determinants of their behavior.

摘要

糖鞘脂(GSLs)的寡糖链对其热致行为、分子间堆积和表面电势有显著影响。GSLs的转变温度和焓与极性头部基团的复杂性成比例降低,并与分子间间距呈线性相关。GSLs与磷脂之间发生的相互作用会引起分子面积和表面电势的变化,这取决于GSLs的类型。磷脂比例的增加会扰乱GSLs的热力学性质,直至出现相分离的磷脂结构域分离出来,但纯GSLs不会发生相分离的程度。对于某些系统,不同结构之间会出现非均相平衡。分子参数、脂质组成和侧向表面压力的微小变化可引发含GSLs结构的分子自由能、偏心率、不对称比和相态的巨大变化。髓鞘碱性蛋白会极大地扰乱GSLs的热致行为。相分离的发生取决于蛋白质的量和GSLs的类型。该蛋白质会导致脂质分子面积减小,GSLs中寡糖链越复杂,这种减小就越明显。这些膜系统不能仅以简单的因果关系基于所涉及分子的个体性质来描述。同时属于介入分子、所涉及结构的形态性质和水环境的尚未充分探索的长程热力学、几何和场效应,是其行为的重要决定因素。

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