Higashi H, Ito M, Fukaya N, Yamagata S, Yamagata T
Laboratory of Glycoconjugate Research, Mitsubishi Kasei Institute of Life Sciences, Tokyo, Japan.
Anal Biochem. 1990 May 1;186(2):355-62. doi: 10.1016/0003-2697(90)90094-p.
A two-dimensional sugar mapping method has been developed by which sensitive, reproducible, and simple analysis can be carried out on the structures and compositions of oligosaccharides released from glycosphingolipids by endoglycoceramidase. The oligosaccharides were labeled quantitatively with an ultraviolet-absorbing compound, p-aminobenzoic acid ethyl ester (ABEE). The ABEE-oligosaccharides were separated first on an amide-silica column and then on a C4-silica column by high-performance liquid chromatography. The acidic ABEE-oligosaccharides were eluted as a group at the start of the chromatography while the neutral ABEE-oligosaccharides were separated according to size and structure on an amide-silica column using an eluent without salt. The acidic oligosaccharides were separated according to size and structure when rechromatographed on the same column using an eluent containing KH2PO4. NeuAc-containing ABEE-oligosaccharides were extensively separated from the corresponding NeuGc derivatives. The ABEE-oligosaccharides separated on an amide-silica column were then chromatographed on a column of C4-silica on which lactotriose and neolacto-series oligosaccharides were clearly shown to be separated from the others. On the basis of the retention times of the individual ABEE-oligosaccharides on two separate columns, 9 neutral and 15 acidic oligosaccharides derived from glycosphingolipid standards were two-dimensionally mapped without overlapping. The gangliosides of a human chondrosarcoma tissue and glycosphingolipids of tumor tissue of FBJ virus-transformed murine osteosarcoma cells were analyzed by this method in conjunction with exoglycosidase treatment. At least 11 species of glycosphingolipids were identified in both cases.
已开发出一种二维糖图谱分析方法,通过该方法可对经内切神经酰胺酶从糖鞘脂释放的寡糖的结构和组成进行灵敏、可重复且简单的分析。寡糖用一种紫外线吸收化合物对氨基苯甲酸乙酯(ABEE)进行定量标记。首先在酰胺硅胶柱上,然后通过高效液相色谱在C4硅胶柱上分离ABEE标记的寡糖。酸性ABEE寡糖在色谱开始时作为一组被洗脱,而中性ABEE寡糖在使用无盐洗脱剂的酰胺硅胶柱上根据大小和结构进行分离。当使用含有KH2PO4的洗脱剂在同一柱上重新色谱分析时,酸性寡糖根据大小和结构进行分离。含NeuAc的ABEE寡糖与相应的NeuGc衍生物被广泛分离。在酰胺硅胶柱上分离的ABEE寡糖然后在C4硅胶柱上进行色谱分析,在该柱上乳糖三糖和新乳糖系列寡糖明显与其他寡糖分离。根据各个ABEE寡糖在两根不同柱上的保留时间,对源自糖鞘脂标准品的9种中性寡糖和15种酸性寡糖进行了二维图谱绘制,且无重叠。用该方法结合外切糖苷酶处理分析了人软骨肉瘤组织的神经节苷脂和FBJ病毒转化的小鼠骨肉瘤细胞肿瘤组织的糖鞘脂。在这两种情况下至少鉴定出11种糖鞘脂。