Back to Search Start Over

Comprehensive Gas-Phase Peptide Ion Structure Studies Using Ion Mobility Techniques: Part 2. Gas-Phase Hydrogen/Deuterium Exchange for Ion Population Estimation

Authors :
Mahdiar Khakinejad
Samaneh Ghassabi Kondalaji
Stephen J. Valentine
Amirmahdi Tafreshian
Source :
Journal of the American Society for Mass Spectrometry. 28:960-970
Publication Year :
2017
Publisher :
American Chemical Society (ACS), 2017.

Abstract

Gas-phase hydrogen/deuterium exchange (HDX) using D2O reagent and collision cross-section (CCS) measurements are utilized to monitor the ion conformers of the model peptide acetyl-PAAAAKAAAAKAAAAKAAAAK. The measurements are carried out on a home-built ion mobility instrument coupled to a linear ion trap mass spectrometer containing electron transfer dissociation (ETD) capabilities. ETD is utilized to obtain per-residue deuterium uptake data for select ion conformers, and a new algorithm is presented for interpreting the HDX data. Using molecular dynamics (MD) production data and a hydrogen accessibility scoring (HAS)-number of effective collisions (NEC) model, hypothetical HDX behavior is attributed to various in-silico candidate (CCS match) structures. The HAS-NEC model is applied to all candidate structures, and non-negative linear regression is employed to determine structure contributions resulting in the best match to deuterium uptake. The accuracy of the HAS-NEC model is tested with the comparison of predicted and experimental isotopic envelopes for several of the observed c-ions. It is proposed that gas-phase HDX can be utilized effectively as a second criterion (after CCS matching) for filtering suitable MD candidate structures. In this study, the second step of structure elucidation, 13 nominal structures were selected (from a pool of 300 candidate structures) and each with a population contribution proposed for these ions.

Details

ISSN :
10440305
Volume :
28
Database :
OpenAIRE
Journal :
Journal of the American Society for Mass Spectrometry
Accession number :
edsair.doi.dedup.....eddde4bebdb3825a741294e777cef22f
Full Text :
https://doi.org/10.1007/s13361-017-1641-z