Zarei Mostafa, Kirsch Stephan, Müthing Johannes, Bindila Laura, Peter-Katalinić Jasna
Institute for Medical Physics and Biophysics, University of Münster, Robert-Koch-Str. 31, 48149, Münster, Germany.
Anal Bioanal Chem. 2008 May;391(1):289-97. doi: 10.1007/s00216-008-1932-0. Epub 2008 Mar 9.
The coupling of nano high-performance liquid chromatography (nanoHPLC) with matrix-assisted laser desorption/ionization (MALDI) mass spectrometry (MS) via an automatic spotting roboter was developed and adapted for the first time for the analysis of complex mixtures of glycosphingolipids (GSLs). The 2,5-dihydroxybenzoic acid and 6-azo-2-thiothymine matrix systems were adjusted to concurrently meet the requirements for reproducible and homogeneous crystal formation with the liquid chromatography (LC) eluent under the variable LC solvent composition over the course gradient and high ionization efficiency of the GSL species, without the need for recrystallization. Precise adjustment of the automatic spotting parameters in terms of matrix flow rate, on-tip collection time of the matrix/LC eluent solution and the matrix spotting mode, i.e., continuous and discontinuous, was accomplished to collect individually nanoHPLC-separated species within distinct spots and consequently recover by MALDI MS screening all major and minor GSL species in the mixtures. The nanoHPLC/MALDI MS coupling protocol was developed and applied to a mixture of neutral GSLs purified from human erythrocytes and a monosialoganglioside mixture expressed by the murine MDAY-D2 cell line. Additionally, on-line nanoHPLC/MALDI doping with lithium cations of individually separated neutral GSLs was introduced to enhance data interpretation of the GSL MS pattern, while preserving the same level of information and ultimately to enhance structural assignment of components of interest. The method is demonstrated to be highly sensitive, reaching the low femtomole level of detection of individual GSL species and is highlighted as a versatile analytical tool for glycolipidomic studies. [figure: see text]
首次开发并采用自动点样机器人将纳米高效液相色谱(nanoHPLC)与基质辅助激光解吸/电离(MALDI)质谱(MS)联用,用于分析鞘糖脂(GSL)的复杂混合物。对2,5 - 二羟基苯甲酸和6 - 氮杂 - 2 - 硫代胸腺嘧啶基质系统进行了调整,以同时满足在梯度洗脱过程中可变的液相色谱(LC)溶剂组成下,与LC洗脱液形成可重现且均匀晶体的要求,以及GSL种类的高电离效率,无需重结晶。通过精确调整自动点样参数,包括基质流速、基质/LC洗脱液溶液的针尖收集时间以及基质点样模式(即连续和不连续),在不同的斑点中单独收集经nanoHPLC分离的物质,从而通过MALDI MS筛选混合物中所有主要和次要的GSL种类。开发了nanoHPLC/MALDI MS联用方案,并将其应用于从人红细胞中纯化的中性GSL混合物以及小鼠MDAY - D2细胞系表达的单唾液酸神经节苷脂混合物。此外,引入了对单独分离的中性GSL进行锂阳离子在线nanoHPLC/MALDI掺杂,以增强GSL MS图谱的数据解读,同时保持相同水平的信息,并最终增强目标成分的结构归属。该方法被证明具有高度灵敏性,可检测到低至飞摩尔水平的单个GSL种类,并被突出作为糖脂组学研究的通用分析工具。[图:见正文]