Adamson Julie T, Håkansson Kristina
Department of Chemistry, University of Michigan, 930 North University Avenue, Ann Arbor, Michigan 48109-1055, USA.
Anal Chem. 2007 Apr 1;79(7):2901-10. doi: 10.1021/ac0621423. Epub 2007 Mar 1.
We extend the application of electron capture dissociation (ECD) (which requires at least two charges) to oligosaccharides without basic functionalities by utilizing alkali, alkaline earth, and transition metals (Na+, K+, Ca2+, Ba2+, Mg2+, Mn2+, Co2+, and Zn2+) as charge carriers in electrospray ionization. Both linear and branched oligosaccharides were examined, including maltoheptoase, p-lacto-N-hexaose, and an N-linked glycan from human alpha1-acid glycoprotein. For comparison, infrared multiphoton dissociation (IRMPD) was also applied to all oligosaccharide species. We show that, for certain metal-adducted oligosaccharides, particularly maltoheptaose, cross-ring cleavage, which can provide saccharide linkage information, is the dominant fragmentation pathway in ECD. By contrast, glycosidic cleavages dominate in IRMPD although cross-ring fragmentation was also observed to varying degrees depending on metal ion type. The branched N-linked glycan did not fragment as easily following ECD compared to the linear oligosaccharides, presumably due to intramolecular noncovalent interactions. However, this limitation was partially overcome with a combined ECD/IRMPD approach (activated ion ECD). For all metal-adducted oligosaccharides, complementary structural information was obtained with ECD as compared to IRMPD. Our results demonstrate that ECD of metal-adducted oligosaccharides is a valuable tool for structural characterization of oligosaccharides.
我们通过在电喷雾电离中利用碱金属、碱土金属和过渡金属(Na+、K+、Ca2+、Ba2+、Mg2+、Mn2+、Co2+和Zn2+)作为电荷载体,将电子捕获解离(ECD,其需要至少两个电荷)的应用扩展到没有碱性官能团的寡糖。研究了线性和支链寡糖,包括麦芽七糖、β-乳糖-N-己糖以及来自人α1-酸性糖蛋白的N-连接聚糖。为了进行比较,还对所有寡糖种类应用了红外多光子解离(IRMPD)。我们表明,对于某些金属加合的寡糖,特别是麦芽七糖,能够提供糖连接信息的跨环裂解是ECD中的主要碎裂途径。相比之下,糖苷裂解在IRMPD中占主导地位,尽管根据金属离子类型不同程度地也观察到了跨环碎裂。与线性寡糖相比,支链N-连接聚糖在ECD后不容易碎裂,推测是由于分子内非共价相互作用。然而,通过ECD/IRMPD联合方法(活化离子ECD)部分克服了这一限制。对于所有金属加合的寡糖,与IRMPD相比,ECD获得了互补的结构信息。我们的结果表明,金属加合寡糖的ECD是寡糖结构表征的有价值工具。