Ong R L, Yu R K
Arch Biochem Biophys. 1986 Feb 15;245(1):157-66. doi: 10.1016/0003-9861(86)90200-6.
The 1H-NMR spectra of the oligosaccharide derived from monosialoganglioside GM1 (GM1 = beta-D-galactosyl-(1-3)-beta-D-N-acetylgalactosaminyl-(1-4)- [alpha-N-acetylneuraminyl-(2-3)-]-beta-D-galactosyl-(1-4)-b eta-D-glucosylceramide) (GM1OS) and its reduced form (GM1OS-R) have been obtained at 500 MHz in D2O. Through the combined use of one-dimensional and homonuclear two-dimensional spin-echo J-correlated (2D SECSY) spectra of GM1OS-R, the assignments for the ring protons of GM1OS are made. Data on chemical shifts and coupling constants of GM1OS including the alpha-linked neuraminic acid protons, in aqueous solution, are tabulated. Due to the very small coupling constants (less than 2 Hz) and the closeness in chemical shifts (less than 0.04 ppm) for the pair of correlated peaks in the two-dimensional spectrum, the information on the connectivities of the H5 ring protons of the neutral sugar residues is missing. Second-order coupling also blurs this information. Data are compared with those obtained for ganglioside GM1 in dimethyl sulfoxide (DMSO; the actual composition therein was 97% DMSO-d6 and 3% D2O) by T. A. W. Koerner, J. H. Prestegard, P. C. Demou, and R. K. Yu (1983, Biochemistry 22, 2676). While the heterogeneity of chemical shifts for the H5, H6a, and H6b protons diminishes in D2O, that for A-9a and A-9b remains. The latter suggests an intraneuraminic acid conformation involving the glycerol side chain unaffected by the solvent. Moreover, the chemical shifts of the III-1, III-2, and A-4 protons (and perhaps the II-4, IV-2, and A-8 protons) in D2O exhibit unusual upfield shifts compared with those in DMSO. This indicates that the intramolecular interactions between GalNAc residue III and neuraminic acid present in DMSO are weakened in D2O. The effect of temperature on the conformation is also examined and appears to be minimal (less than 0.02 ppm) in the range 22-50 degrees C.
已在500 MHz下于D2O中获得了源自单唾液酸神经节苷脂GM1(GM1 = β-D-半乳糖基-(1→3)-β-D-N-乙酰半乳糖胺基-(1→4)-[α-N-乙酰神经氨酸-(2→3)-]-β-D-半乳糖基-(1→4)-β-D-葡萄糖神经酰胺)(GM1OS)及其还原形式(GM1OS-R)的寡糖的1H-NMR谱。通过联合使用GM1OS-R的一维和同核二维自旋回波J相关(2D SECSY)谱,对GM1OS的环质子进行了归属。列出了GM1OS在水溶液中的化学位移和耦合常数数据,包括α连接的神经氨酸质子。由于二维谱中一对相关峰的耦合常数非常小(小于2 Hz)且化学位移接近(小于0.04 ppm),中性糖残基的H5环质子的连接性信息缺失。二级耦合也使该信息模糊不清。将数据与T. A. W. Koerner、J. H. Prestegard、P. C. Demou和R. K. Yu(1983年,《生物化学》22卷,2676页)在二甲基亚砜(DMSO;其中实际组成为97% DMSO-d6和3% D2O)中获得的神经节苷脂GM1的数据进行了比较。虽然在D2O中H5、H6a和H6b质子的化学位移异质性减小,但A-9a和A-9b的化学位移异质性仍然存在。后者表明涉及甘油侧链的神经氨酸内构象不受溶剂影响。此外,与在DMSO中相比,D2O中III-1、III-2和A-4质子(可能还有II-4、IV-2和A-8质子)的化学位移呈现出异常的高场位移。这表明在D2O中,DMSO中存在的GalNAc残基III与神经氨酸之间的分子内相互作用减弱。还研究了温度对构象的影响,在22至50摄氏度范围内,其影响似乎最小(小于0.02 ppm)。