Charge transfer dissociation of a branched glycan with alkali and alkaline earth metal adducts

被引:8
作者
Sasiene, Zachary J. [1 ]
Ropartz, David [2 ,3 ]
Rogniaux, Helene [2 ,3 ]
Jackson, Glen P. [1 ,4 ]
机构
[1] West Virginia Univ, C Eugene Bennett Dept Chem, Morgantown, WV 26506 USA
[2] INRAE, UR BIA, F-44316 Nantes, France
[3] INRAE, BIBS Facil, F-44316 Nantes, France
[4] West Virginia Univ, Dept Forens & Investigative Sci, Morgantown, WV 26506 USA
来源
JOURNAL OF MASS SPECTROMETRY | 2021年 / 56卷 / 07期
基金
美国国家科学基金会;
关键词
fundamentals; high-energy fragmentation; metal adduct; oligosaccharide; radical-induced fragmentation; TANDEM MASS-SPECTROMETRY; LINKAGE POSITION DETERMINATION; ELECTRON-CAPTURE DISSOCIATION; ASSISTED-LASER-DESORPTION/IONIZATION; INFRARED MULTIPHOTON DISSOCIATION; COLLISION-INDUCED FRAGMENTATION; ACTIVATED DISSOCIATION; OLIGOSACCHARIDES; IONIZATION; GLYCOSYLATION;
D O I
10.1002/jms.4774
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Alkali and alkaline earth metal adducts of a branched glycan, XXXG, were analyzed with helium charge transfer dissociation (He-CTD) and low-energy collision-induced dissociation (LE-CID) to investigate if metalation would impact the type of fragments generated and the structural characterization of the analyte. The studied adducts included 1+ and 2+ precursors involving one or more of the cations: H+, Na+, K+, Ca2+, and Mg2+. Regardless of the metal adduct, He-CTD generated abundant and numerous glycosidic and cross-ring cleavages that were structurally informative and able to identify the 1,4-linkage and 1,6-branching patterns. In contrast, the LE-CID spectra mainly contained glycosidic cleavages, consecutive fragments, and numerous neutral losses, which complicated spectral interpretation. LE-CID of [M + K + H](2+) and [M + Na](+) precursors generated a few cross-ring cleavages, but they were not sufficient to identify the 1,4-linkage and 1,6-branching pattern of the XXXG xyloglucan. He-CTD predominantly generated 1+ fragments from 1+ precursors and 2+ product ions from 2+ precursors, although both LE-CID and He-CTD were able to generate 1+ product ions from 2+ adducts of magnesium and calcium. The singly charged fragments derive from the loss of H+ from the metalated product ions and the formation of a protonated complementary product ion; such observations are similar to previous reports for magnesium and calcium salts undergoing electron capture dissociation (ECD) activation. However, during He-CTD, the [M + Mg](2+) precursor generated more singly charged product ions than [M + Ca](2+), either because Mg has a higher second ionization potential than Ca or because of conformational differences and the locations of the charging adducts during fragmentation. He-CTD of the [M + 2Na](2+) and the [M + 2 K](2+) precursors generated singly charged product ions from the loss of a sodium ion and potassium ion, respectively. In summary, although the metal ions influence the mass and charge state of the observed product ions, the metal ions had a negligible effect on the types of cross-ring cleavages observed.
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页数:10
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共 55 条
[1]   Electron capture dissociation of oligosaccharides ionized with alkali, alkaline earth, and transition metals [J].
Adamson, Julie T. ;
Hakansson, Kristina .
ANALYTICAL CHEMISTRY, 2007, 79 (07) :2901-2910
[2]   Characterization of New Oligosaccharides Obtained by An Enzymatic Cleavage of the Exopolysaccharide Produced by the Deep-Sea Bacterium Alteromonas infernus Using its Cell Extract [J].
Akoumany, Katy ;
Zykwinska, Agata ;
Sinquin, Corinne ;
Marchand, Laetitia ;
Fanuel, Mathieu ;
Ropartz, David ;
Rogniaux, Helene ;
Pipelier, Muriel ;
Delbarre-Ladrat, Christine ;
Colliec-Jouault, Sylvia .
MOLECULES, 2019, 24 (19)
[3]   Tandem mass spectrometry of alkali cationized polysaccharides in a quadrupole ion trap [J].
Asam, MR ;
Glish, GL .
JOURNAL OF THE AMERICAN SOCIETY FOR MASS SPECTROMETRY, 1997, 8 (09) :987-995
[4]   Fast side-chain losses in keV ion-induced dissociation of protonated peptides [J].
Bari, Sadia ;
Hoekstra, Ronnie ;
Schlatholter, Thomas .
INTERNATIONAL JOURNAL OF MASS SPECTROMETRY, 2011, 299 (01) :64-70
[5]   Peptide fragmentation by keV ion-induced dissociation [J].
Bari, Sadia ;
Hoekstra, Ronnie ;
Schlatholter, Thomas .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2010, 12 (14) :3376-3383
[6]   Discrimination of β-1,4-and β-1,3-Linkages in Native Oligosaccharides via Charge Transfer Dissociation Mass Spectrometry [J].
Buck-Wiese, Hagen ;
Fanuel, Mathieu ;
Liebeke, Manuel ;
Hoang, Kim Le Mai ;
Pardo-Vargas, Alonso ;
Seeberger, Peter H. ;
Hehemann, Jan-Hendrik ;
Rogniaux, Helene ;
Jackson, Glen P. ;
Ropartz, David .
JOURNAL OF THE AMERICAN SOCIETY FOR MASS SPECTROMETRY, 2020, 31 (06) :1249-1259
[7]   Cationized Carbohydrate Gas-Phase Fragmentation Chemistry [J].
Bythell, Benjamin J. ;
Abutokaikah, Maha T. ;
Wagoner, Ashley R. ;
Guan, Shanshan ;
Rabus, Jordan M. .
JOURNAL OF THE AMERICAN SOCIETY FOR MASS SPECTROMETRY, 2017, 28 (04) :688-703
[8]   Fragmentation reactions in the mass spectrometry analysis of neutral oligosaccharides [J].
Cancilla, MT ;
Wang, AW ;
Voss, LR ;
Lebrilla, CB .
ANALYTICAL CHEMISTRY, 1999, 71 (15) :3206-3218
[9]   GlycoWorkbench: A tool for the computer-assisted annotation of mass spectra of Glycans [J].
Ceroni, Alessio ;
Maass, Kai ;
Geyer, Hildegard ;
Geyer, Rudolf ;
Dell, Anne ;
Haslam, Stuart M. .
JOURNAL OF PROTEOME RESEARCH, 2008, 7 (04) :1650-1659
[10]   Fragmentation of Positively-Charged Biological Ions Activated with a Beam of High-Energy Cations [J].
Chingin, Konstantin ;
Makarov, Alexander ;
Denisov, Eduard ;
Rebrov, Oleksii ;
Zubarev, Roman A. .
ANALYTICAL CHEMISTRY, 2014, 86 (01) :372-379