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Osmolyte-Like Stabilizing Effects of Low GdnHCl Concentrations on d-Glucose/d-Galactose-Binding Protein

The ability of d-glucose/d-galactose-binding protein (GGBP) to reversibly interact with its ligands, glucose and galactose, makes this protein an attractive candidate for sensing elements of glucose biosensors. This potential is largely responsible for attracting researchers to study the conformatio...

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Autores principales: Fonin, Alexander V., Golikova, Alexandra D., Zvereva, Irina A., D’Auria, Sabato, Staiano, Maria, Uversky, Vladimir N., Kuznetsova, Irina M., Turoverov, Konstantin K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5618657/
https://www.ncbi.nlm.nih.gov/pubmed/28925982
http://dx.doi.org/10.3390/ijms18092008
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author Fonin, Alexander V.
Golikova, Alexandra D.
Zvereva, Irina A.
D’Auria, Sabato
Staiano, Maria
Uversky, Vladimir N.
Kuznetsova, Irina M.
Turoverov, Konstantin K.
author_facet Fonin, Alexander V.
Golikova, Alexandra D.
Zvereva, Irina A.
D’Auria, Sabato
Staiano, Maria
Uversky, Vladimir N.
Kuznetsova, Irina M.
Turoverov, Konstantin K.
author_sort Fonin, Alexander V.
collection PubMed
description The ability of d-glucose/d-galactose-binding protein (GGBP) to reversibly interact with its ligands, glucose and galactose, makes this protein an attractive candidate for sensing elements of glucose biosensors. This potential is largely responsible for attracting researchers to study the conformational properties of this protein. Previously, we showed that an increase in the fluorescence intensity of the fluorescent dye 6-bromoacetyl-2-dimetylaminonaphtalene (BADAN) is linked to the holo-form of the GGBP/H152C mutant in solutions containing sub-denaturing concentrations of guanidine hydrochloride (GdnHCl). It was hypothesized that low GdnHCl concentrations might lead to compaction of the protein, thereby facilitating ligand binding. In this work, we utilize BADAN fluorescence spectroscopy, intrinsic protein UV fluorescence spectroscopy, and isothermal titration calorimetry (ITC) to show that the sub-denaturing GdnHCl concentrations possess osmolyte-like stabilizing effects on the structural dynamics, conformational stability, and functional activity of GGBP/H152C and the wild type of this protein (wtGGBP). Our data are consistent with the model where low GdnHCl concentrations promote a shift in the dynamic distribution of the protein molecules toward a conformational ensemble enriched in molecules with a tighter structure and a more closed conformation. This promotes the increase in the configurational complementarity between the protein and glucose molecules that leads to the increase in glucose affinity in both GGBP/H152C and wtGGBP.
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spelling pubmed-56186572017-09-30 Osmolyte-Like Stabilizing Effects of Low GdnHCl Concentrations on d-Glucose/d-Galactose-Binding Protein Fonin, Alexander V. Golikova, Alexandra D. Zvereva, Irina A. D’Auria, Sabato Staiano, Maria Uversky, Vladimir N. Kuznetsova, Irina M. Turoverov, Konstantin K. Int J Mol Sci Article The ability of d-glucose/d-galactose-binding protein (GGBP) to reversibly interact with its ligands, glucose and galactose, makes this protein an attractive candidate for sensing elements of glucose biosensors. This potential is largely responsible for attracting researchers to study the conformational properties of this protein. Previously, we showed that an increase in the fluorescence intensity of the fluorescent dye 6-bromoacetyl-2-dimetylaminonaphtalene (BADAN) is linked to the holo-form of the GGBP/H152C mutant in solutions containing sub-denaturing concentrations of guanidine hydrochloride (GdnHCl). It was hypothesized that low GdnHCl concentrations might lead to compaction of the protein, thereby facilitating ligand binding. In this work, we utilize BADAN fluorescence spectroscopy, intrinsic protein UV fluorescence spectroscopy, and isothermal titration calorimetry (ITC) to show that the sub-denaturing GdnHCl concentrations possess osmolyte-like stabilizing effects on the structural dynamics, conformational stability, and functional activity of GGBP/H152C and the wild type of this protein (wtGGBP). Our data are consistent with the model where low GdnHCl concentrations promote a shift in the dynamic distribution of the protein molecules toward a conformational ensemble enriched in molecules with a tighter structure and a more closed conformation. This promotes the increase in the configurational complementarity between the protein and glucose molecules that leads to the increase in glucose affinity in both GGBP/H152C and wtGGBP. MDPI 2017-09-19 /pmc/articles/PMC5618657/ /pubmed/28925982 http://dx.doi.org/10.3390/ijms18092008 Text en © 2017 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Fonin, Alexander V.
Golikova, Alexandra D.
Zvereva, Irina A.
D’Auria, Sabato
Staiano, Maria
Uversky, Vladimir N.
Kuznetsova, Irina M.
Turoverov, Konstantin K.
Osmolyte-Like Stabilizing Effects of Low GdnHCl Concentrations on d-Glucose/d-Galactose-Binding Protein
title Osmolyte-Like Stabilizing Effects of Low GdnHCl Concentrations on d-Glucose/d-Galactose-Binding Protein
title_full Osmolyte-Like Stabilizing Effects of Low GdnHCl Concentrations on d-Glucose/d-Galactose-Binding Protein
title_fullStr Osmolyte-Like Stabilizing Effects of Low GdnHCl Concentrations on d-Glucose/d-Galactose-Binding Protein
title_full_unstemmed Osmolyte-Like Stabilizing Effects of Low GdnHCl Concentrations on d-Glucose/d-Galactose-Binding Protein
title_short Osmolyte-Like Stabilizing Effects of Low GdnHCl Concentrations on d-Glucose/d-Galactose-Binding Protein
title_sort osmolyte-like stabilizing effects of low gdnhcl concentrations on d-glucose/d-galactose-binding protein
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5618657/
https://www.ncbi.nlm.nih.gov/pubmed/28925982
http://dx.doi.org/10.3390/ijms18092008
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