Zamfir Alina D, Vukelic Zeljka, Schneider Andrea, Sisu Eugen, Dinca Nicolae, Ingendoh Arnd
Department of Chemistry and Biology, Aurel Vlaicu University of Arad, Revolutiei Blvd. 77, 310130-Arad, Romania.
J Biomol Tech. 2007 Sep;18(4):188-93.
A powerful method for detailed structural analysis based on electrospray ionization high-capacity ion-trap multiple-stage mass spectrometry (MS) is for the first time introduced in glycolipidomics. The method was optimized for accurate structural elucidation of human brain gangliosides and specifically applied to normal adult human hippocampus-associated structures. The multiple-stage MS experiments reported here allowed for a complete structural characterization of the oligosaccharide moiety of a GM1 ganglioside species. This was achieved by elucidating the sequence and identification of the GM1a structural isomer from the sialic acid attachment site at the neutral oligosaccharide chain. Moreover, the determination of the d18:1/18:0 sphingoid base/fatty acid composition of the ceramide moiety could be confirmed by this method. The novel protocol developed here proves high potential for rapid, reliable, and reproducible investigation of complex lipid-linked carbohydrates such as polysialylated gangliosides or species carrying some other groups that easily cleave off.
一种基于电喷雾电离高容量离子阱多级质谱(MS)的详细结构分析的强大方法首次被引入糖脂组学。该方法针对人脑神经节苷脂的精确结构解析进行了优化,并特别应用于正常成人大脑海马相关结构。本文报道的多级MS实验能够对GM1神经节苷脂种类的寡糖部分进行完整的结构表征。这是通过从中性寡糖链上的唾液酸连接位点阐明GM1a结构异构体的序列并进行鉴定来实现的。此外,该方法还可以确认神经酰胺部分的d18:1/18:0鞘氨醇碱基/脂肪酸组成。这里开发的新方案证明了在快速、可靠和可重复研究复杂的脂质连接碳水化合物方面具有很高的潜力,如多唾液酸化神经节苷脂或携带一些其他易于裂解基团的种类。