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复杂天然糖鞘脂在多组分模型膜中的寡糖行为

Oligosaccharide behavior of complex natural glycosphingolipids in multicomponent model membranes.

作者信息

Singh D M, Shan X, Davis J H, Jones D H, Grant C W

机构信息

Department of Biochemistry, University of Western Ontario, London, Canada.

出版信息

Biochemistry. 1995 Jan 17;34(2):451-63. doi: 10.1021/bi00002a009.

Abstract

Wideline 2H NMR of model membranes was used to consider the molecular consequences of factors often suggested as modulators of complex glycosphingolipid oligosaccharide arrangement and motional characteristics at cell surfaces. GM1, asialo-GM1, and globoside were studied as examples of plasma membrane recognition sites. The experimental approach involved substitution of deuterons (D) for protons at specific locations within the carbohydrate chains. Deuterated glycolipids were then dispersed at 7-10 mol% in unsonicated bilayers of 1-palmitoyl-2-oleoylphosphatidylcholine. Factors tested for their significance to carbohydrate chain conformation and dynamics included glycolipid natural alkyl and acyl chain variability, membrane fluidity, and the presence of cholesterol and a charged sugar residue (neuraminic acid). Effects of Ca2+ and membrane-associated protein were briefly considered. Two distinct strategies were employed in substituting deuterons for selected protons of carbohydrate residues. Neither approach necessitated alteration of the glycolipid natural fatty acid composition. (i) Protons of the exocyclic hydroxymethyl group on the terminal Gal residue of GM1 and asialo-GM1, and on the terminal N-acetylgalactosamine (GalNAc) residue of globoside, were replaced with deuterium (producing -CDHOH) by an enzymatic oxidation/reduction cycle. This represents the first application of such an approach to deuteration of complex neutral glycolipids. Spectral results were compared to those obtained for the similarly-deuterated monoglycosyl lipid, galactosylceramide (GalCer), with natural fatty acid composition. Efficacy of this labeling method may in principle be influenced by structural variations within a given glycolipid family. Also, asymmetric rotation of the deuterated group made it less attractive than the second method for relating spectral features to receptor geometry. (ii) A general synthetic, nonenzymatic method was investigated for replacing amino sugar N-acetyl groups with deuterated acetate (-COCD3). The acetate group of the GalNAc residue of globoside, GM1, and asialo-GM1, as well as that on neuraminic acid in GM1, was replaced with -COCD3. This second method afforded better signal-to-noise--an important consideration for 2H NMR. The NMR technique employed had the potential for detecting changes of as little as 10% in oligosaccharide orientation or motional order. Each glycolipid demonstrated clear evidence of preferred average oligosaccharide conformations in all (fluid) membrane environments examined. The most striking observation was that, in fluid matrices, conformation and motional order of the complex oligosaccharide chains were only modestly influenced by factors tested, including natural variation in the glycolipid hydrocarbon chains, membrane fluidity, temperature, and the presence of cholesterol or the N-acetylneuraminic acid (NeuAc) residue on GM1.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

利用模型膜的宽谱线2H NMR来研究一些常被认为是细胞表面复合糖鞘脂寡糖排列和运动特征调节剂的因素所产生的分子效应。以GM1、脱唾液酸GM1和红细胞糖苷脂作为质膜识别位点的示例进行研究。实验方法包括在碳水化合物链的特定位置用氘(D)取代质子。然后将氘代糖脂以7 - 10摩尔百分比分散在1 - 棕榈酰 - 2 - 油酰磷脂酰胆碱的未超声处理双层膜中。测试其对碳水化合物链构象和动力学重要性的因素包括糖脂天然烷基和酰基链的变异性、膜流动性以及胆固醇和带电荷糖残基(神经氨酸)的存在。简要考虑了Ca2 +和膜相关蛋白的影响。在将氘取代碳水化合物残基的选定质子时采用了两种不同的策略。两种方法都无需改变糖脂的天然脂肪酸组成。(i)GM1和脱唾液酸GM1末端Gal残基上的环外羟甲基质子,以及红细胞糖苷脂末端N - 乙酰半乳糖胺(GalNAc)残基上的质子,通过酶促氧化/还原循环被氘取代(产生 - CDHOH)。这是这种方法首次应用于复合中性糖脂的氘代。将光谱结果与具有天然脂肪酸组成的类似氘代单糖基脂质半乳糖神经酰胺(GalCer)所获得的结果进行比较。这种标记方法的有效性原则上可能受给定糖脂家族内结构变化的影响。此外,氘代基团的不对称旋转使得它在将光谱特征与受体几何形状相关联方面不如第二种方法有吸引力。(ii)研究了一种通用的合成非酶促方法,用氘代乙酸盐( - COCD3)取代氨基糖的N - 乙酰基。红细胞糖苷脂、GM1和脱唾液酸GM1的GalNAc残基的乙酰基,以及GM1中神经氨酸上的乙酰基,都被 - COCD3取代。第二种方法提供了更好的信噪比 - 这是2H NMR的一个重要考虑因素。所采用的NMR技术有潜力检测到寡糖取向或运动有序性低至10%的变化。在所有检查的(流体)膜环境中,每种糖脂都显示出复合寡糖存在优选平均构象的明确证据。最引人注目的观察结果是,在流体基质中,复合寡糖链的构象和运动有序性仅受到所测试因素的适度影响,这些因素包括糖脂烃链的天然变化、膜流动性、温度以及GM1上胆固醇或N - 乙酰神经氨酸(NeuAc)残基的存在。(摘要截取自400字)

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