Hydrogen bond mediated stabilization of the salt bridge structure for the glycine dimer anion

Open Access
Authors
  • E.R. Williams
Publication date 2015
Journal Physical Chemistry Chemical Physics
Volume | Issue number 17 | 45
Pages (from-to) 30642-30647
Organisations
  • Faculty of Science (FNWI) - Van 't Hoff Institute for Molecular Sciences (HIMS)
Abstract
The formation of a salt bridge in deprotonated glycine dimer anions in a solvent-free environment is investigated using both infrared multiple photon dissociation spectroscopy between 600 and 1800 cm(-1) and theory. The zwitterionic and nonzwitterionic forms of glycine in this complex are computed to be nearly iso-energetic, yet predominantly the zwitterionic form is observed experimentally. The zwitterion stability is attributed to both the Coulombic attraction and the high stabilization from intramolecular hydrogen bonding that drives the energetic cost of proton transfer in a solvent free environment. These results show that there is a fine balance between the stabilities of these two forms of the anion. Elucidating the role of intrinsic factors, such as hydrogen bonding, can lead to a better understanding of the stabilities of salt bridges in the interiors of large proteins or at protein interfaces.
Document type Article
Note With supplementary information
Language English
Published at https://doi.org/10.1039/c5cp06120b
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