Hase S, Ikenaka T, Matsushima Y
J Biochem. 1981 Aug;90(2):407-14. doi: 10.1093/oxfordjournals.jbchem.a133487.
The sensitivity of a fluorescence labeling method ((1979). J. Biochem. 85, 989--994; 995--1002) for structure analyses of asparagine-linked sugar moieties of glycoproteins was increased by using HPLC with a fluorescence detector. Sugar moieties were separated from polypeptide portions by hydrazinolysis. Free amino groups thus exposed were acetylated and the reducing ends of sugar chains were reductively aminated with a fluorescent reagent, 2-aminopyridine, by the use of sodium cyanoborohydride. The pyridylamino derivatives were purified on a Dowex 1 column to eliminate undesired substances. The separation and identification of the pyridylamino derivatives were carried out by HPLC with a column of C18 reversed phase or gel permeation phase. As little as 0.1 pmol of pyridylamino derivatives can be detected. Ten microgram of Taka-amylase A was easily detected by this system. The method was also applied to some other glycoproteins.
通过使用配备荧光检测器的高效液相色谱法(HPLC),提高了一种用于糖蛋白中天冬酰胺连接糖部分结构分析的荧光标记方法的灵敏度((1979). J. Biochem. 85, 989 - 994; 995 - 1002)。通过肼解将糖部分与多肽部分分离。由此暴露的游离氨基被乙酰化,糖链的还原端用荧光试剂2 - 氨基吡啶通过氰基硼氢化钠进行还原胺化。吡啶基氨基衍生物在Dowex 1柱上纯化以去除不需要的物质。吡啶基氨基衍生物的分离和鉴定通过使用C18反相柱或凝胶渗透柱的HPLC进行。低至0.1 pmol的吡啶基氨基衍生物都可以被检测到。该系统很容易检测到10微克的高峰淀粉酶A。该方法也应用于其他一些糖蛋白。