Structural assignment of isomeric 2‐aminopyridine‐derivatized monosialylated biantennary N‐linked oligosaccharides using negative‐ion multistage tandem mass spectral matching
- 28 December 2005
- journal article
- research article
- Published by Wiley in Rapid Communications in Mass Spectrometry
- Vol. 20 (3) , 412-418
- https://doi.org/10.1002/rcm.2320
Abstract
To investigate the possibility of structural assignment based on negative‐ion tandem multistage (MSn) mass spectral matching, four isomers of 2‐aminopyridine (PA)‐derivatized monosialylated oligosaccharides (i.e., complex‐type N‐glycans with an α2‐3‐ or α2‐6‐linked sialic acid on α1‐6 or α1‐3 antennae) were analyzed using high‐performance liquid chromatography/electrospray ion trap time‐of‐flight mass spectrometry (HPLC/ESI‐IT‐TOFMS). The negative ion [M–2H]2− is observed predominantly in the MS1 spectra without the loss of a sialic acid. The MS2 spectra derived from it are sufficiently reproducible that MS2 spectral matching based on correlation coefficients can be applied to the assignment of these isomers. The isomers containing a sialic acid on α1‐6 or α1‐3 antennae can be distinguished by MS2 spectral matching, but the α2‐3 and α2‐6 linkage types of sialic acid cannot be distinguished by their MS2 spectra. However, MS3 spectra derived from fragment ions containing a sialic acid (i.e., C4‐ and D‐type ions) clearly differentiate the α2‐3 and α2‐6 linkage types of sialic acid in their MS3 spectral patterns. This difference might be rationalized in terms of a proton transfer from the reducing‐end mannose to the negatively charged sialic acid. These two moieties are very close in the structural conformations of the precursor C4‐type fragment ions of α2‐6 linkage type, as predicted by molecular mechanics calculations. Thus, negative‐ion MSn (n = 2, 3) spectral matching was demonstrated to be useful for the structural assignment of these four monosialylated PA N‐glycan isomers. Copyright © 2006 John Wiley & Sons, Ltd.Keywords
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