Cargando…

(1)H-NMR Karplus Analysis of Molecular Conformations of Glycerol under Different Solvent Conditions: A Consistent Rotational Isomerism in the Backbone Governed by Glycerol/Water Interactions

Glycerol is a symmetrical, small biomolecule with high flexibility in molecular conformations. Using a (1)H-NMR spectroscopic Karplus analysis in our way, we analyzed a rotational isomerism in the glycero backbone which generates three kinds of staggered conformers, namely gt (gauche-trans), gg (gau...

Descripción completa

Detalles Bibliográficos
Autores principales: Nishida, Yoshihiro, Aono, Reina, Dohi, Hirofumi, Ding, Wuxiao, Uzawa, Hirotaka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9916874/
https://www.ncbi.nlm.nih.gov/pubmed/36769086
http://dx.doi.org/10.3390/ijms24032766
_version_ 1784886232368545792
author Nishida, Yoshihiro
Aono, Reina
Dohi, Hirofumi
Ding, Wuxiao
Uzawa, Hirotaka
author_facet Nishida, Yoshihiro
Aono, Reina
Dohi, Hirofumi
Ding, Wuxiao
Uzawa, Hirotaka
author_sort Nishida, Yoshihiro
collection PubMed
description Glycerol is a symmetrical, small biomolecule with high flexibility in molecular conformations. Using a (1)H-NMR spectroscopic Karplus analysis in our way, we analyzed a rotational isomerism in the glycero backbone which generates three kinds of staggered conformers, namely gt (gauche-trans), gg (gauche-gauche), and tg (trans-gauche), at each of sn-1,2 and sn-2,3 positions. The Karplus analysis has disclosed that the three rotamers are consistently equilibrated in water keeping the relation of ‘gt:gg:tg = 50:30:20 (%)’ at a wide range of concentrations (5 mM~540 mM). The observed relation means that glycerol in water favors those symmetric conformers placing 1,2,3-triol groups in a gauche/gauche geometry. We have found also that the rotational isomerism is remarkably changed when the solvent is replaced with DMSO-d(6) or dimethylformamide (DMF-d(7)). In these solvents, glycerol gives a relation of ‘gt:gg:tg = 40:30:30 (%)’, which means that a remarkable shift occurs in the equilibrium between gt and tg conformers. By this shift, glycerol turns to also take non-symmetric conformers orienting one of the two vicinal diols in an antiperiplanar geometry.
format Online
Article
Text
id pubmed-9916874
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-99168742023-02-11 (1)H-NMR Karplus Analysis of Molecular Conformations of Glycerol under Different Solvent Conditions: A Consistent Rotational Isomerism in the Backbone Governed by Glycerol/Water Interactions Nishida, Yoshihiro Aono, Reina Dohi, Hirofumi Ding, Wuxiao Uzawa, Hirotaka Int J Mol Sci Article Glycerol is a symmetrical, small biomolecule with high flexibility in molecular conformations. Using a (1)H-NMR spectroscopic Karplus analysis in our way, we analyzed a rotational isomerism in the glycero backbone which generates three kinds of staggered conformers, namely gt (gauche-trans), gg (gauche-gauche), and tg (trans-gauche), at each of sn-1,2 and sn-2,3 positions. The Karplus analysis has disclosed that the three rotamers are consistently equilibrated in water keeping the relation of ‘gt:gg:tg = 50:30:20 (%)’ at a wide range of concentrations (5 mM~540 mM). The observed relation means that glycerol in water favors those symmetric conformers placing 1,2,3-triol groups in a gauche/gauche geometry. We have found also that the rotational isomerism is remarkably changed when the solvent is replaced with DMSO-d(6) or dimethylformamide (DMF-d(7)). In these solvents, glycerol gives a relation of ‘gt:gg:tg = 40:30:30 (%)’, which means that a remarkable shift occurs in the equilibrium between gt and tg conformers. By this shift, glycerol turns to also take non-symmetric conformers orienting one of the two vicinal diols in an antiperiplanar geometry. MDPI 2023-02-01 /pmc/articles/PMC9916874/ /pubmed/36769086 http://dx.doi.org/10.3390/ijms24032766 Text en © 2023 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
Nishida, Yoshihiro
Aono, Reina
Dohi, Hirofumi
Ding, Wuxiao
Uzawa, Hirotaka
(1)H-NMR Karplus Analysis of Molecular Conformations of Glycerol under Different Solvent Conditions: A Consistent Rotational Isomerism in the Backbone Governed by Glycerol/Water Interactions
title (1)H-NMR Karplus Analysis of Molecular Conformations of Glycerol under Different Solvent Conditions: A Consistent Rotational Isomerism in the Backbone Governed by Glycerol/Water Interactions
title_full (1)H-NMR Karplus Analysis of Molecular Conformations of Glycerol under Different Solvent Conditions: A Consistent Rotational Isomerism in the Backbone Governed by Glycerol/Water Interactions
title_fullStr (1)H-NMR Karplus Analysis of Molecular Conformations of Glycerol under Different Solvent Conditions: A Consistent Rotational Isomerism in the Backbone Governed by Glycerol/Water Interactions
title_full_unstemmed (1)H-NMR Karplus Analysis of Molecular Conformations of Glycerol under Different Solvent Conditions: A Consistent Rotational Isomerism in the Backbone Governed by Glycerol/Water Interactions
title_short (1)H-NMR Karplus Analysis of Molecular Conformations of Glycerol under Different Solvent Conditions: A Consistent Rotational Isomerism in the Backbone Governed by Glycerol/Water Interactions
title_sort (1)h-nmr karplus analysis of molecular conformations of glycerol under different solvent conditions: a consistent rotational isomerism in the backbone governed by glycerol/water interactions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9916874/
https://www.ncbi.nlm.nih.gov/pubmed/36769086
http://dx.doi.org/10.3390/ijms24032766
work_keys_str_mv AT nishidayoshihiro 1hnmrkarplusanalysisofmolecularconformationsofglycerolunderdifferentsolventconditionsaconsistentrotationalisomerisminthebackbonegovernedbyglycerolwaterinteractions
AT aonoreina 1hnmrkarplusanalysisofmolecularconformationsofglycerolunderdifferentsolventconditionsaconsistentrotationalisomerisminthebackbonegovernedbyglycerolwaterinteractions
AT dohihirofumi 1hnmrkarplusanalysisofmolecularconformationsofglycerolunderdifferentsolventconditionsaconsistentrotationalisomerisminthebackbonegovernedbyglycerolwaterinteractions
AT dingwuxiao 1hnmrkarplusanalysisofmolecularconformationsofglycerolunderdifferentsolventconditionsaconsistentrotationalisomerisminthebackbonegovernedbyglycerolwaterinteractions
AT uzawahirotaka 1hnmrkarplusanalysisofmolecularconformationsofglycerolunderdifferentsolventconditionsaconsistentrotationalisomerisminthebackbonegovernedbyglycerolwaterinteractions