Kushi Y, Ogura K, Rokukawa C, Handa S
Department of Biochemistry, Faculty of Medicine, Tokyo Medical and Dental University.
J Biochem. 1990 May;107(5):685-8. doi: 10.1093/oxfordjournals.jbchem.a123108.
Blood group A-active glycosphingolipids from human erythrocyte membranes were identified by the combination of thin-layer chromatography and matrix-assisted secondary ion mass spectrometry (TLC/SIMS). Partially purified lipid extracts were chromatographed by TLC and then blood group A-active glycolipids were detected by TLC-immunostaining assay using anti-A antibody. The parts of the plates which contained the same Rf area as anti-A positive spots were cut out and subjected to direct SIMS analysis. The TLC/SIMS spectra were quite similar to those obtained by ordinary SIMS. Detailed information, such as molecular weight, molecular species, ceramide portion, and oligosaccharide sequence, was obtained. Also, peracetylated blood group A-active glycolipids were analyzed in a similar manner. After the position of A-active glycolipids on a TLC plate was confirmed by in situ deacetylation and TLC-immunostaining, acetylated A-active glycolipids were also analyzed by the TLC/SIMS. Enhanced sensitivity was obtained with peracetylated glycolipids. Consequently, small amounts of unpurified bioactive glycolipids can be readily analyzed by TLC/SIMS.
通过薄层色谱法和基质辅助二次离子质谱法(TLC/SIMS)相结合,鉴定了来自人红细胞膜的血型A活性糖鞘脂。将部分纯化的脂质提取物进行薄层色谱分析,然后使用抗A抗体通过TLC免疫染色法检测血型A活性糖脂。将板上与抗A阳性斑点具有相同比移值(Rf)区域的部分切下,进行直接二次离子质谱分析。TLC/SIMS光谱与通过普通二次离子质谱获得的光谱非常相似。获得了诸如分子量、分子种类、神经酰胺部分和寡糖序列等详细信息。此外,以类似方式分析了全乙酰化的血型A活性糖脂。通过原位脱乙酰化和TLC免疫染色确认了TLC板上A活性糖脂的位置后,也通过TLC/SIMS分析了乙酰化的A活性糖脂。全乙酰化糖脂获得了更高的灵敏度。因此,通过TLC/SIMS可以轻松分析少量未纯化的生物活性糖脂。