Substituent effects on the gas-phase fragmentation reactions of protonated peptides containing benzylamine-derivatized lysyl residues

被引:2
|
作者
Simon, E. S.
Papoulias, P. G.
Andrews, P. C.
机构
[1] Univ Michigan, Dept Biol Chem, Ann Arbor, MI 48103 USA
[2] Univ Michigan, Dept Bioinformat, Ann Arbor, MI 48103 USA
[3] Univ Michigan, Dept Chem, Ann Arbor, MI 48103 USA
关键词
PROTEIN; DISSOCIATION; CONSTANTS; PATHWAYS; REAGENT; ENERGY;
D O I
10.1002/rcm.6141
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Motivated by the need for chemical strategies designed to tune peptide fragmentation to selective cleavage reactions, benzyl ring substituent influence on the relative formation of carbocation elimination (CCE) products from peptides with benzylamine-derivatized lysyl residues has been examined using collision-induced dissociation (CID) tandem mass spectrometry. Unsubstituted benzylamine-derivatized peptides yield a mixture of products derived from amide backbone cleavage and CCE. The latter involves side-chain cleavage of the derivatized lysyl residue to form a benzylic carbocation [C7H7]+ and an intact peptide product ion [(MHn)n+ (C7H7)+](n-1)+. The CCE pathway is contingent upon protonation of the secondary e-amino group (Ne) of the derivatized lysyl residue. Using the Hammett methodology to evaluate the electronic contributions of benzyl ring substituents on chemical reactivity, a direct correlation was observed between changes in the CCE product ion intensity ratios (relative to backbone fragmentation) and the Hammett substituent constants, s, of the corresponding substituents. There was no correlation between the substituent-influenced gas-phase proton affinity of Ne and the relative ratios of CCE product ions. However, a strong correlation was observed between the p orbital interaction energies (Delta Eint) of the eliminated benzylic carbocation and the logarithm of the relative ratios, indicating the predominant factor in the CCE pathway is the substituent effect on the level of hyperconjugation and resonance stability of the eliminated benzylic carbocation. This work effectively demonstrates the applicability of s (and Delta Eint) as substituent selection parameters for the design of benzyl-based peptide-reactive reagents which tune CCE product formation as desired for specific applications. Copyright (c) 2012 John Wiley & Sons, Ltd.
引用
收藏
页码:631 / 638
页数:8
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