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Comparison of infrared multiphoton dissociation and collision-induced dissociation of supercharged peptides in ion traps.

Journal of the American Society for Mass Spectrometry (2008-11-28)
James A Madsen, Jennifer S Brodbelt
RESUMEN

The number and types of diagnostic ions obtained by infrared multiphoton dissociation (IRMPD) and collision-induced dissociation (CID) were evaluated for supercharged peptide ions created by electrospray ionization of solutions spiked with m-nitrobenzyl alcohol. IRMPD of supercharged peptide ions increased the sequence coverage compared with that obtained by CID for all charge states investigated. The number of diagnostic ions increased with the charge state for IRMPD; however, this trend was not consistent for CID because the supercharged ions did not always yield the greatest number of diagnostic ions. Significantly different fragmentation pathways were observed for the different charge states upon CID or IRMPD with the latter yielding far more immonium ions and often fewer uninformative ammonia, water, and phosphoric acid neutral losses. Pulsed-Q dissociation resulted in an increase in the number of internal product ions, a decrease in sequence-informative ions, and reduced overall ion abundances. The enhanced sequence coverage afforded by IRMPD of supercharged ions was demonstrated for a variety of model peptides, as well as for a tryptic digest of cytochrome c.

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Sigma-Aldrich
3-Nitrobenzyl alcohol, 98%
Supelco
3-Nitrobenzyl alcohol, suitable for mass spectrometry (MS), ≥99.5%