Brocca P, Berthault P, Sonnino S
Department of Medical Chemistry and Biochemistry, Medical School, University of Milan, Italy.
Biophys J. 1998 Jan;74(1):309-18. doi: 10.1016/S0006-3495(98)77788-4.
The solution structure of ganglioside G(M1) carbohydrate moiety at the surface of a 102-kDa lipid-modified-G(M1) micelle is investigated by high-resolution 1H-NMR in H2O. The micellar surface can be considered a cluster-like lateral distribution of the gangliosides, each single monomer being anchored in a carbohydrate-enriched model membrane matrix. 1H NOESY measurements at short mixing times reveal a rigid trisaccharide core -beta-GalNAc-(1-4)-[alpha-Neu5Ac-(2-3)]-beta-Gal- and a more flexible beta-Gal-(1-3)-beta-GalNAc- terminal glycosidic bond. In the lipid-modified G(M1) ganglioside micellar system, there is no evidence that intermolecular side-by-side carbohydrate interactions modulate, or alter in any way, the head-group spatial arrangement. Possible intermonomer interactions at the level of the branched trisaccharide portion were further investigated on mixed micelles of natural N-glycolyl- and N-acetylneuraminic acid containing G(M1) in D2O, taking advantage of the different NMR features of N-glycolyl- and N-acetylneuraminic acids, which allow discrimination between sialic acid ring proton signals. Measurements of the water/ganglioside-OH proton chemical exchange rates suggest hydroxyl group involvement at position 8 of sialic acid in strong intramolecular interaction processes.
通过在H2O中进行高分辨率1H-NMR研究了102 kDa脂质修饰的G(M1)胶束表面神经节苷脂G(M1)碳水化合物部分的溶液结构。胶束表面可被视为神经节苷脂的簇状横向分布,每个单体都锚定在富含碳水化合物的模型膜基质中。在短混合时间下进行的1H NOESY测量揭示了一个刚性的三糖核心-β-GalNAc-(1-4)-[α-Neu5Ac-(2-3)]-β-Gal-和一个更灵活的β-Gal-(1-3)-β-GalNAc-末端糖苷键。在脂质修饰的G(M1)神经节苷脂胶束系统中,没有证据表明分子间并排的碳水化合物相互作用会调节或改变头基的空间排列。利用N-羟乙酰神经氨酸和N-乙酰神经氨酸不同的NMR特征,在D2O中对含有G(M1)的天然N-羟乙酰神经氨酸和N-乙酰神经氨酸的混合胶束上进一步研究了分支三糖部分水平上可能的单体间相互作用,这使得能够区分唾液酸环质子信号。水/神经节苷脂-OH质子化学交换率的测量表明,在强烈的分子内相互作用过程中,唾液酸8位的羟基参与其中。