Alley William R, Mechref Yehia, Novotny Milos V
National Center for Glycomics and Glycoproteomics, Indiana University, Bloomington, IN 47405, USA.
Rapid Commun Mass Spectrom. 2009 Jan;23(1):161-70. doi: 10.1002/rcm.3850.
Structural characterization of a glycopeptide is not easily attained through collision-induced dissociation (CID), due to the extensive fragmentation of glycan moieties and minimal fragmentation of peptide backbones. In this study, we have exploited the potential of electron-transfer dissociation (ETD) as a complementary approach for peptide fragmentation. Model glycoproteins, including ribonuclease B, fetuin, horseradish peroxidase, and haptoglobin, were used here. In ETD, radical anions transfer an electron to the peptide backbone and induce cleavage of the N-Calpha bond. The glycan moiety is retained on the peptide backbone, being largely unaffected by the ETD process. Accordingly, ETD allows not only the identification of the amino acid sequence of a glycopeptide, but also the unambiguous assignment of its glycosylation site. When data acquired from both fragmentation techniques are combined, it is possible to characterize comprehensively the entire glycopeptide. This is being achieved with a mass spectrometer capable of alternating between CID and ETD on-the-fly during an LC/MS/MS analysis. This is demonstrated here with several tryptic glycopeptides.
由于聚糖部分的广泛碎片化以及肽主链的最小碎片化,通过碰撞诱导解离(CID)来实现糖肽的结构表征并非易事。在本研究中,我们利用了电子转移解离(ETD)作为肽碎片化的补充方法的潜力。这里使用了包括核糖核酸酶B、胎球蛋白、辣根过氧化物酶和触珠蛋白在内的模型糖蛋白。在ETD中,自由基阴离子将一个电子转移到肽主链并诱导N-Cα键的断裂。聚糖部分保留在肽主链上,在很大程度上不受ETD过程的影响。因此,ETD不仅能够鉴定糖肽的氨基酸序列,还能明确其糖基化位点。当结合从两种碎片化技术获得的数据时,就有可能全面表征整个糖肽。这可以通过一台能够在液相色谱/串联质谱(LC/MS/MS)分析过程中实时在CID和ETD之间切换的质谱仪来实现。这里用几种胰蛋白酶水解糖肽对此进行了证明。