Department of Chemistry, University of Warwick, Coventry, CV4 7AL, UK.
Anal Chem. 2012 Oct 16;84(20):8863-70. doi: 10.1021/ac3022778. Epub 2012 Oct 4.
The tandem mass spectrometry techniques electron-induced dissociation (EID) and collision-activated dissociation (CAD) have been compared as tools for providing detailed structural information of polyketides. Polyketides are an important class of natural products that account for a significant proportion of the drugs currently in clinical use. Three polyketide natural products, namely erythromycin A, lasalocid A, and iso-lasalocid A, were subjected to both CAD and EID, and their fragment ions were assigned with sub-part-per-million accuracy. The number of fragment ions detected through EID was much greater than for CAD, leading to a greater amount of structural information obtained for each polyketide, albeit with a decreased signal-to-noise ratio. The effect of different bound cations on the fragment pattern of the isomers lasalocid A and iso-lasalocid A was studied, with CAD and EID performed on the M + H, M + Na, M + Li, and M + NH(4) precursor ions. The lithiated species were found to produce the greatest degree of fragmentation and enabled detailed structural information on the isomers to be obtained. Multistage mass spectrometry (MS(3)) experiments, combining CAD and EID, could also be performed on the lithiated species, generating new fragment information which enables the two isomers to be distinguished. Combining CAD and EID for the structural characterization of polyketides will therefore be a useful tool for identifying and characterizing unknown polyketides and their biosynthetic intermediates.
串联质谱技术电子诱导解离(EID)和碰撞激活解离(CAD)已被比较,作为提供聚酮类详细结构信息的工具。聚酮类是一类重要的天然产物,占目前临床使用药物的很大比例。三种聚酮天然产物,即红霉素 A、拉沙洛西 A 和异拉沙洛西 A,都经过了 CAD 和 EID 处理,并对其碎片离子进行了亚 ppm 精度的分配。通过 EID 检测到的碎片离子数量远远多于 CAD,从而为每种聚酮获得了更多的结构信息,尽管信噪比降低。研究了不同结合阳离子对 lasalocid A 和 iso-lasalocid A 异构体碎片模式的影响,对 M + H、M + Na、M + Li 和 M + NH(4)前体离子进行了 CAD 和 EID。发现锂化物质产生了最大程度的碎片化,并能够获得异构体的详细结构信息。还可以对 lithiated 物质进行多级质谱(MS(3))实验,结合 CAD 和 EID,生成新的碎片信息,从而可以区分这两种异构体。因此,将 CAD 和 EID 结合用于聚酮类的结构表征将是识别和表征未知聚酮类及其生物合成中间体的有用工具。