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A Density Functional Theory (DFT) Study on Gas-Phase Proton Transfer Reactions of Derivatized and Underivatized Peptide Ions generated by Matrix-assisted Laser Desorption Ionization

BRANCIA F
•
STENER, MAURO
•
MAGISTRATO A.
2009
  • journal article

Periodico
JOURNAL OF THE AMERICAN SOCIETY FOR MASS SPECTROMETRY
Abstract
In this study, classic molecular dynamics (MD) simulations followed by density functional theory (DFT) calculations are employed to calculate the proton transfer reaction enthalpy shifts for native and derivatized peptide ions in the MALDI plume. First, absolute protonation and deprotonation enthalpies are calculated for native peptides (RPPGF and AFLDASR), the corresponding hexyl esters and three common matrices α-cyano-4-hydroxycinnamic acid (4HCCA), 2,5-dihydroxybenzoic acid (DHB), and 6 aza-2-thiothymine (ATT). From the proton exchange reaction calculations, protonation and deprotonation of the neutral peptides are thermodynamically favorable in the gas phase as long as the corresponding protonated/deprotonated matrix ions are present in the plume. Moreover, the gain in proton affinity shown by the ester ions suggests that the increase in ion yield is likely to be related to an easier proton transfer from the matrix to the peptide.
DOI
10.1016/j.jasms.2009.03.008
WOS
WOS:000268035800012
Archivio
http://hdl.handle.net/11368/2278210
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-67649380512
http://www.sciencedirect.com/science/article/pii/S1044030509001603
Diritti
metadata only access
Soggetti
  • Density Functional Th...

  • classical molecular d...

  • proton transfer

  • MALDI

Web of Science© citazioni
7
Data di acquisizione
Mar 28, 2024
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