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神经节苷脂中极性头部基团的构型与相互作用。

Configuration and interaction of the polar head group in gangliosides.

作者信息

Maggio B, Cumar F A, Caputto R

出版信息

Biochem J. 1980 Sep 1;189(3):435-40. doi: 10.1042/bj1890435.

Abstract
  1. The interactions of gangliosides with Ca(2+) and some polar-head-group requirements for establishment of particular interactions with phosphatidylcholine were studied in monolayers at the air/145mm-NaCl interface. 2. Ganglioside-Ca(2+) interactions, as revealed by surface-potential measurements, depended on the position occupied by sialosyl residues in the oligosaccharide chain. The interactions with Ca(2+) of the single sialosyl residue of monosialogangliosides occurred above 0.1mm-CaCl(2), whereas the interaction of the cation with additional sialosyl groups in di- or tri-sialogangliosides depended on the carbohydrate residue to which the sialosyl moiety was attached. The sialosyl residue bound in sialosyl-sialosyl linkage interacted very little with Ca(2+). The sialosyl residue attached to the terminal galactose of the neutral tetrasaccharide chain interacted with Ca(2+) above 1mum-CaCl(2). 3. Experiments with mixed monolayers containing dihexadecyl phosphate and hexadecyltrimethylammonium indicated that for the occurrence of interactions of polysialogangliosides with phosphatidylcholine characterized by reductions in molecular packing and surface potential both charged groups of the phospholipid and sialosyl residues with particular dipolar properties in the ganglioside are participating. 4. Possible configurations that can explain the behaviour in monolayers were inspected with space-filling molecular models. The position of the carboxylate group of sialosyl residues with respect to the interface and to the sialosyl molecular plane can explain the different orientation of the dipole-moment vector of this residue, which depends on the position to which it is linked in the oligosaccharide chain. Favoured interactions of polysialogangliosides with phosphatidylcholine may result from a configuration allowing a partial matching of two oppositely oriented electrical vectors contributed by the zwitterionic phosphocholine group and particular sialosyl groups.
摘要
  1. 在空气/145mM氯化钠界面的单分子层中,研究了神经节苷脂与Ca(2+)的相互作用以及与磷脂酰胆碱建立特定相互作用的一些极性头部基团要求。2. 表面电位测量显示,神经节苷脂与Ca(2+)的相互作用取决于寡糖链中唾液酸残基占据的位置。单唾液酸神经节苷脂单个唾液酸残基与Ca(2+)的相互作用发生在0.1mM氯化钙以上,而二唾液酸或三唾液酸神经节苷脂中阳离子与额外唾液酸基团的相互作用则取决于唾液酸部分连接的碳水化合物残基。以唾液酸-唾液酸键结合的唾液酸残基与Ca(2+)的相互作用非常小。连接在中性四糖链末端半乳糖上的唾液酸残基在1μM氯化钙以上与Ca(2+)相互作用。3. 含有磷酸二己酯和十六烷基三甲基铵的混合单分子层实验表明,对于多唾液酸神经节苷脂与磷脂酰胆碱以分子堆积和表面电位降低为特征的相互作用的发生,磷脂的两个带电基团和神经节苷脂中具有特定偶极性质的唾液酸残基都参与其中。4. 用空间填充分子模型检查了可以解释单分子层行为的可能构型。唾液酸残基的羧基相对于界面和唾液酸分子平面的位置可以解释该残基偶极矩矢量的不同取向,这取决于它在寡糖链中连接的位置。多唾液酸神经节苷脂与磷脂酰胆碱的有利相互作用可能源于一种构型,该构型允许两性离子磷酸胆碱基团和特定唾液酸基团贡献的两个相反取向的电矢量部分匹配。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/edc1/1162021/d7fe9ee30446/biochemj00418-0062-a.jpg

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