Zwitterionization of glycine in water environment: Stabilization mechanism and NMR spectral signatures

dc.creatorValverde, Danillo Pires
dc.creatorLudwig, Zélia Maria da Costa
dc.creatorCosta, Célia Regina da
dc.creatorLudwig, Valdemir Eneias
dc.creatorGeorg, Herbert de Castro
dc.date.accessioned2024-01-17T14:05:18Z
dc.date.available2024-01-17T14:05:18Z
dc.date.issued2018
dc.description.abstractAt physiological conditions, myriads of biomolecules (e.g., amino acids, peptides, and proteins) exist predominantly in the zwitterionic structural form and their biological functions will result in these conditions. However these geometrical structures are inaccessible energetically in the gas phase, and at this point, stabilization of amino-acids in physiological conditions is still under debate. In this paper, the electronic properties of a glycine molecule in the liquid environment were studied by performing a relaxation of the glycine geometry in liquid water using the free energy gradient method combined with a sequential quantum mechanics/molecular mechanics approach. A series of Monte Carlo Metropolis simulations of the glycine molecule embedded in liquid water, followed by only a quantum mechanical calculation in each of them were carried out. Both the local and global liquid environments were emphasized to obtain nuclear magnetic resonance (NMR) parameters for the glycine molecule in liquid water. The results of the equilibrium structure in solution and the systematic study of the hydrogen bonds were used to discard the direct proton transfer from the carboxyl group to the ammonium group of the glycine molecule in water solution. The calculations of the Density Functional Theory (DFT) were performed to study the polarization of the solvent in the parameters of nuclear magnetic resonance of the glycine molecule in liquid water. DFT calculations predicted isotropic chemical changes on the H, C, N, and O atoms of glycine in liquid water solution which agree with the available experimental data.
dc.identifier.citationVALVERDE, Danillo et al. Zwitterionization of glycine in water environment: stabilization mechanism and NMR spectral signatures. Journal of Chemical Physics, College Park, v. 148, n. 2, e024305, 2018. DOI: 10.1063/1.5006645. Disponível em: https://pubs.aip.org/aip/jcp/article/148/2/024305/196322/Zwitterionization-of-glycine-in-water-environment. Acesso em: 18 set. 2023.
dc.identifier.doi10.1063/1.5006645
dc.identifier.issn0021-9606
dc.identifier.issne- 1089-7690
dc.identifier.urihttps://pubs.aip.org/aip/jcp/article/148/2/024305/196322/Zwitterionization-of-glycine-in-water-environment
dc.language.isoeng
dc.publisher.countryEstados unidos
dc.rightsAcesso Restrito
dc.titleZwitterionization of glycine in water environment: Stabilization mechanism and NMR spectral signatures
dc.typeArtigo

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