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Hydrogen Bonding and Solvation of a Proline-Based Peptide Model in Salt Solutions

The hydrogen bonding of water and water/salt mixtures around the proline-based tripeptide model glycyl-l-prolyl-glycinamide·HCl (GPG-NH(2)) is investigated here by multi-wavelength UV resonance Raman spectroscopy (UVRR) to clarify the role of ion–peptide interactions in affecting the conformational...

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Autores principales: Catalini, Sara, Rossi, Barbara, Tortora, Mariagrazia, Foggi, Paolo, Gessini, Alessandro, Masciovecchio, Claudio, Bruni, Fabio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8400059/
https://www.ncbi.nlm.nih.gov/pubmed/34440568
http://dx.doi.org/10.3390/life11080824
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author Catalini, Sara
Rossi, Barbara
Tortora, Mariagrazia
Foggi, Paolo
Gessini, Alessandro
Masciovecchio, Claudio
Bruni, Fabio
author_facet Catalini, Sara
Rossi, Barbara
Tortora, Mariagrazia
Foggi, Paolo
Gessini, Alessandro
Masciovecchio, Claudio
Bruni, Fabio
author_sort Catalini, Sara
collection PubMed
description The hydrogen bonding of water and water/salt mixtures around the proline-based tripeptide model glycyl-l-prolyl-glycinamide·HCl (GPG-NH(2)) is investigated here by multi-wavelength UV resonance Raman spectroscopy (UVRR) to clarify the role of ion–peptide interactions in affecting the conformational stability of this peptide. The unique sensitivity and selectivity of the UVRR technique allow us to efficiently probe the hydrogen bond interaction between water molecules and proline residues in different solvation conditions, along with its influence on trans to cis isomerism in the hydrated tripeptide. The spectroscopic data suggest a relevant role played by the cations in altering the solvation shell at the carbonyl site of proline(.), while the fluoride and chloride anions were found to promote the establishment of the strongest interactions on the [Formula: see text] site of proline. This latter effect is reflected in the greater stabilization of the trans conformers of the tripeptide in the presence of these specific ions. The molecular view provided by UVRR experiments was complemented by the results of circular dichroism (CD) measurements that show a strong structural stabilizing effect on the β-turn motif of GPG-NH(2) observed in the presence of KF as a co-solute.
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spelling pubmed-84000592021-08-29 Hydrogen Bonding and Solvation of a Proline-Based Peptide Model in Salt Solutions Catalini, Sara Rossi, Barbara Tortora, Mariagrazia Foggi, Paolo Gessini, Alessandro Masciovecchio, Claudio Bruni, Fabio Life (Basel) Article The hydrogen bonding of water and water/salt mixtures around the proline-based tripeptide model glycyl-l-prolyl-glycinamide·HCl (GPG-NH(2)) is investigated here by multi-wavelength UV resonance Raman spectroscopy (UVRR) to clarify the role of ion–peptide interactions in affecting the conformational stability of this peptide. The unique sensitivity and selectivity of the UVRR technique allow us to efficiently probe the hydrogen bond interaction between water molecules and proline residues in different solvation conditions, along with its influence on trans to cis isomerism in the hydrated tripeptide. The spectroscopic data suggest a relevant role played by the cations in altering the solvation shell at the carbonyl site of proline(.), while the fluoride and chloride anions were found to promote the establishment of the strongest interactions on the [Formula: see text] site of proline. This latter effect is reflected in the greater stabilization of the trans conformers of the tripeptide in the presence of these specific ions. The molecular view provided by UVRR experiments was complemented by the results of circular dichroism (CD) measurements that show a strong structural stabilizing effect on the β-turn motif of GPG-NH(2) observed in the presence of KF as a co-solute. MDPI 2021-08-12 /pmc/articles/PMC8400059/ /pubmed/34440568 http://dx.doi.org/10.3390/life11080824 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Catalini, Sara
Rossi, Barbara
Tortora, Mariagrazia
Foggi, Paolo
Gessini, Alessandro
Masciovecchio, Claudio
Bruni, Fabio
Hydrogen Bonding and Solvation of a Proline-Based Peptide Model in Salt Solutions
title Hydrogen Bonding and Solvation of a Proline-Based Peptide Model in Salt Solutions
title_full Hydrogen Bonding and Solvation of a Proline-Based Peptide Model in Salt Solutions
title_fullStr Hydrogen Bonding and Solvation of a Proline-Based Peptide Model in Salt Solutions
title_full_unstemmed Hydrogen Bonding and Solvation of a Proline-Based Peptide Model in Salt Solutions
title_short Hydrogen Bonding and Solvation of a Proline-Based Peptide Model in Salt Solutions
title_sort hydrogen bonding and solvation of a proline-based peptide model in salt solutions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8400059/
https://www.ncbi.nlm.nih.gov/pubmed/34440568
http://dx.doi.org/10.3390/life11080824
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