Takagaki K, Munakata H, Nakamura W, Matsuya H, Majima M, Endo M
Department of Biochemistry, Hirosaki University School of Medicine, 5 Zaifu-cho, Hirosaki 036-8256, Japan.
Glycobiology. 1998 Jul;8(7):719-24. doi: 10.1093/glycob/8.7.719.
Various oligosaccharides from hyaluronic acid, which have glucuronic acid or N- acetylglucosamine at the nonreducing terminal, were prepared by digestion with a combination of testicular hyaluronidase and beta-glucuronidase. These oligo saccharides were analyzed by negative-mode ion-spray mass spectrometry (MS) with an atmospheric pressure ion source. Introduction of collisionally activated dissociation tandem mass spectrometry (CAD-MS/MS) produced ions derived from cleavage of the glycosidic bonds, allowing the structure to be analyzed. The CAD-MS/MS spectrum showed an intense and characteristic fragment ion at m/z 193 for oligosaccharides having glucuronic acid at the nonreducing terminal. On the other hand, this ion was not observed in the spectra of oligosaccharides having N- acetylglucosamine at the nonreducing terminal. Therefore, the fragmentation pattern revealed by CAD-MS/MS provides useful information for distinguishing glucuronic acid and N- acetylglucosamine at the nonreducing terminal of oligosaccharides derived from hyaluronic acid and other glycosaminoglycans. This ion-spray CAD-MS/MS technique was also applied successfully to the characterization of glycosaminoglycans reconstructed by glycotechnology.
通过用睾丸透明质酸酶和β-葡萄糖醛酸酶联合消化制备了来自透明质酸的各种寡糖,这些寡糖在非还原末端具有葡萄糖醛酸或N-乙酰葡糖胺。采用大气压离子源的负离子喷雾质谱(MS)对这些寡糖进行分析。引入碰撞激活解离串联质谱(CAD-MS/MS)产生了源自糖苷键断裂的离子,从而能够对结构进行分析。对于在非还原末端具有葡萄糖醛酸的寡糖,CAD-MS/MS谱在m/z 193处显示出一个强烈且特征性的碎片离子。另一方面,在非还原末端具有N-乙酰葡糖胺的寡糖谱中未观察到该离子。因此,CAD-MS/MS揭示的碎裂模式为区分源自透明质酸和其他糖胺聚糖的寡糖非还原末端的葡萄糖醛酸和N-乙酰葡糖胺提供了有用信息。这种离子喷雾CAD-MS/MS技术也成功应用于糖技术重建的糖胺聚糖的表征。