Harvey David J, Crispin Max, Bonomelli Camille, Scrivens Jim H
Oxford Glycobiology Institute, Department of Biochemistry, University of Oxford, South Parks Road, Oxford, OX1 3QU, UK.
Department of Biological Sciences, University of Warwick, Coventry, CV47AL, UK.
J Am Soc Mass Spectrom. 2015 Oct;26(10):1754-67. doi: 10.1007/s13361-015-1163-5. Epub 2015 Jul 24.
Many samples of complex mixtures of N-glycans released from small amounts of material, such as glycoproteins from viruses, present problems for mass spectrometric analysis because of the presence of contaminating material that is difficult to remove by conventional methods without involving sample loss. This study describes the use of ion mobility for extraction of glycan profiles from such samples and for obtaining clean CID spectra when targeted m/z values capture additional ions from those of the target compound. N-glycans were released enzymatically from within SDS-PAGE gels, from the representative recombinant glycoprotein, gp120 of the human immunodeficiency virus, and examined by direct infusion electrospray in negative mode followed by ion mobility with a Waters Synapt G2 mass spectrometer (Waters MS-Technologies, Manchester, UK). Clean profiles of singly, doubly, and triply charged N-glycans were obtained from samples in cases where the raw electrospray spectra displayed only a few glycan ions as the result of low sample concentration or the presence of contamination. Ion mobility also enabled uncontaminated CID spectra to be obtained from glycans when their molecular ions displayed coincidence with ions from fragments or multiply charged ions with similar m/z values. This technique proved to be invaluable for removing extraneous ions from many CID spectra. The presence of such ions often produces spectra that are difficult to interpret. Most CID spectra, even those from abundant glycan constituents, benefited from such clean-up, showing that the extra dimension provided by ion mobility was invaluable for studies of this type.
从少量物质(如病毒糖蛋白)释放的N-聚糖复杂混合物的许多样品,由于存在难以通过常规方法去除且不涉及样品损失的污染物,给质谱分析带来了问题。本研究描述了离子淌度在从此类样品中提取聚糖谱以及当目标m/z值捕获到目标化合物以外的其他离子时获得纯净碰撞诱导解离(CID)光谱方面的应用。N-聚糖通过酶法从SDS-聚丙烯酰胺凝胶中释放出来,来源于代表性的重组糖蛋白——人类免疫缺陷病毒的gp120,并通过负模式直接进样电喷雾,随后使用沃特世Synapt G2质谱仪(英国曼彻斯特的沃特世质谱技术公司)进行离子淌度分析。在原始电喷雾光谱由于样品浓度低或存在污染物而仅显示少数聚糖离子的情况下,从样品中获得了单电荷、双电荷和三电荷N-聚糖的纯净谱图。当聚糖的分子离子与来自碎片或具有相似m/z值的多电荷离子的离子重合时,离子淌度还能使聚糖获得未受污染的CID光谱。该技术被证明对于从许多CID光谱中去除外来离子非常有价值。这些离子的存在常常产生难以解释的光谱。大多数CID光谱,即使是来自丰富聚糖成分的光谱,都受益于这种清理,这表明离子淌度提供的额外维度对于此类研究非常有价值。