Literature DB >> 23836377

Combined use of post-ion mobility/collision-induced dissociation and chemometrics for b fragment ion analysis.

Behrooz Zekavat1, Mahsan Miladi, Christopher Becker, Sharon M Munisamy, Touradj Solouki.   

Abstract

Although structural isomers may yield indistinguishable ion mobility (IM) arrival times and similar fragment ions in tandem mass spectrometry (MS), it is demonstrated that post-IM/collision-induced dissociation MS (post-IM/CID MS) combined with chemometrics can enable independent study of the IM-overlapped isomers. The new approach allowed us to investigate the propensity of selected b type fragment ions from AlaAlaAlaHisAlaAlaAla-NH2 (AAA(His)AAA) heptapeptide to form different isomers. Principle component analysis (PCA) of the unresolved post-IM/CID profiles indicated the presence of two different isomer types for b4(+), b5(+), and b6(+) and a single isomer type for b7(+) fragments of AAA(His)AAA. We employed a simple-to-use interactive self-modeling mixture analysis (SIMPLISMA) to calculate the total IM profiles and CID mass spectra of b fragment isomers. The deconvoluted CID mass spectra showed discernible fragmentation patterns for the two isomers of b4(+), b5(+), and b6(+) fragments. Under our experimental conditions, calculated percentages of the "cyclic" isomers (at the 95% confidence level for n = 3) for b4(+), b5(+), and b6(+) were 61 (± 5)%, 36 (± 5)%, and 48 (± 2)%, respectively. Results from the SIMPLISMA deconvolution of b5(+) species resembled the CID MS patterns of fully resolved IM profiles for the two b5(+) isomers. The "cyclic" isomers for each of the two-component b fragment ions were less susceptible to ion fragmentation than their "linear" counterparts.

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Year:  2013        PMID: 23836377     DOI: 10.1007/s13361-013-0673-2

Source DB:  PubMed          Journal:  J Am Soc Mass Spectrom        ISSN: 1044-0305            Impact factor:   3.109


  35 in total

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3.  Effect of the His residue on the cyclization of b ions.

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  8 in total

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2.  Evidence for sequence scrambling and divergent H/D exchange reactions of doubly-charged isobaric b-type fragment ions.

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4.  DNA Oligonucleotide Fragment Ion Rearrangements Upon Collision-Induced Dissociation.

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5.  Loss of internal backbone carbonyls: additional evidence for sequence-scrambling in collision-induced dissociation of y-type ions.

Authors:  Brett Harper; Mahsan Miladi; Touradj Solouki
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6.  Automated deconvolution of overlapped ion mobility profiles.

Authors:  Matthew Brantley; Behrooz Zekavat; Brett Harper; Rachel Mason; Touradj Solouki
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7.  Competing noncovalent host-guest interactions and H/D exchange: reactions of benzyloxycarbonyl-proline glycine dipeptide variants with ND3.

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Review 8.  Ion mobility-mass spectrometry: time-dispersive instrumentation.

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  8 in total

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