a Target Discovery Institute, Nuffield Department of Medicine , University of Oxford , Oxford , UK.
b Biological Sciences and the Institute for Life Sciences , University of Southampton , Southampton, SO17 1BJ , UK.
Expert Rev Proteomics. 2018 May;15(5):391-412. doi: 10.1080/14789450.2018.1468756. Epub 2018 May 23.
Viral diseases contribute much to human and animal suffering and enormous efforts are directed at developing appropriate vaccines for protection. Glycoproteins constitute much of the viral surfaces and are obvious targets for such vaccine development. This review describes mass spectrometric methods used for the structural determination of these compounds. Areas covered: The review describes the structures of the N- and O-linked glycans found on glycoproteins and mass spectrometric methods for their ionization and fragmentation. The steps, such as determination of glycan attachment sites and the structures of the attached glycans following their release from the glycoproteins are described and examples are given of the uses of the various analytical methods using mainly influenza, Ebola and HIV as representative examples. Also included are tables listing work on many other viruses. Expert commentary: Recent technological advances, such as the introduction of ion mobility techniques, have greatly improved analyses in this area and have enabled larger amounts of information to be gathered in shorter time periods on ever smaller amounts of material. Such techniques should greatly accelerate the discovery of vaccine targets and lead to the production of vaccines for diseases not currently available.
病毒疾病给人类和动物带来了巨大的痛苦,人们正在努力开发适当的疫苗来进行预防。糖蛋白构成了病毒表面的很大一部分,是此类疫苗开发的明显目标。本文综述了用于这些化合物结构测定的质谱方法。
本文综述了糖蛋白上发现的 N-和 O-连接聚糖的结构以及用于其电离和碎片化的质谱方法。描述了从糖蛋白上释放聚糖并确定糖基连接位点以及连接聚糖的结构的步骤,并举例说明了使用各种分析方法的情况,主要以流感、埃博拉和 HIV 作为代表性示例。还列出了许多其他病毒的相关工作。
最近的技术进步,例如引入离子淌度技术,极大地改善了该领域的分析,并能够在更短的时间内从更小的量的材料中收集更多的信息。这些技术应该大大加速疫苗靶标的发现,并导致针对目前尚无疫苗的疾病的疫苗的生产。