Phosphopeptide/Phosphoprotein Mapping by Electron Capture Dissociation Mass Spectrometry

Of methods for dissociation of multiply charged peptide and protein ions, electron capture dissociation (ECD) has the advantages of cleaving between a high proportion of amino acids, without loss of such posttranslational modifications as glycosylation and carboxylation. Here this capability is succ...

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Veröffentlicht in:Analytical chemistry (Washington) 2001-01, Vol.73 (1), p.19-22
Hauptverfasser: Shi, Stone D.-H, Hemling, Mark E, Carr, Steven A, Horn, David M, Lindh, Ingemar, McLafferty, Fred W
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Sprache:eng
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Zusammenfassung:Of methods for dissociation of multiply charged peptide and protein ions, electron capture dissociation (ECD) has the advantages of cleaving between a high proportion of amino acids, without loss of such posttranslational modifications as glycosylation and carboxylation. Here this capability is successfully extended to phosphorylation, for which collisionally activated dissociation (CAD) can cause extensive loss of H3PO4 and HPO3. As shown here, these losses are minimal in ECD spectra, an advantage for measuring the degree of phosphorylation. For phosphorylated peptides, ECD and CAD spectra give complementary backbone cleavages for identifying modification sites. For a 24-kDa heterogeneous phosphoprotein, bovine β-casein, activated ion ECD cleaved 87 of 208 backbone bonds that identified a phosphorylation site at Ser-15, and localized three more among Ser-17,-18, -19, and -22 and Thr-24, and the last among four other sites. This is the first direct site-specific characterization of this key posttranslational modification on a protein without its prior degradation, such as proteolysis.
ISSN:0003-2700
1520-6882
DOI:10.1021/ac000703z