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Updated: Nov 3, 2025

Determination of the Gas-phase Acidities of Oligopeptides
Published on: June 24, 2013
Unusually high α-proton acidity of prolyl residues in cyclic peptides
Oliver R Maguire1, Bethany Taylor1, Eleanor M Higgins1
1Department of Chemistry, Durham University South Road Durham DH1 3LE UK annmarie.odonoghue@durham.ac.uk.
Abstract:
The acidity of the α-proton in peptides has an essential role in numerous biochemical reactions and underpins their stereochemical integrity, which is critical to their biological function. We report a detailed kinetic and computational study of the acidity of the α-proton in two cyclic peptide systems: diketopiperazine (DKP) and triketopiperazine (TKP). The kinetic acidity (protofugality) of the α-protons were determined though hydrogen deuterium exchange studies in aqueous solutions. The acidities of the α-proton in prolyl residues were increased by 3-89 fold relative to other amino acid residues (prolyl > glycyl ≫ alanyl > tyrosyl). Experimental and computational evidence for the stereoelectronic origins of this enhanced prolyl reactivity is presented. TKPs were 106-fold more reactive than their DKP analogues towards deprotonation, which we attribute to the advanced development of aromaticity in the earlier transition state for proton transfer in these cases. A Brønsted linear free energy analysis of the reaction data was conducted to provide estimates of α-proton pK as.
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