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Investigation of the Molecular Details of the Interactions of Selenoglycosides and Human Galectin-3

Human galectin-3 (hGal-3) is involved in a variety of biological processes and is implicated in wide range of diseases. As a result, targeting hGal-3 for clinical applications has become an intense area of research. As a step towards the development of novel hGal-3 inhibitors, we describe a study of...

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Autores principales: Raics, Mária, Balogh, Álex Kálmán, Kishor, Chandan, Timári, István, Medrano, Francisco J., Romero, Antonio, Go, Rob Marc, Blanchard, Helen, Szilágyi, László, E. Kövér, Katalin, Fehér, Krisztina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8910297/
https://www.ncbi.nlm.nih.gov/pubmed/35269646
http://dx.doi.org/10.3390/ijms23052494
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author Raics, Mária
Balogh, Álex Kálmán
Kishor, Chandan
Timári, István
Medrano, Francisco J.
Romero, Antonio
Go, Rob Marc
Blanchard, Helen
Szilágyi, László
E. Kövér, Katalin
Fehér, Krisztina
author_facet Raics, Mária
Balogh, Álex Kálmán
Kishor, Chandan
Timári, István
Medrano, Francisco J.
Romero, Antonio
Go, Rob Marc
Blanchard, Helen
Szilágyi, László
E. Kövér, Katalin
Fehér, Krisztina
author_sort Raics, Mária
collection PubMed
description Human galectin-3 (hGal-3) is involved in a variety of biological processes and is implicated in wide range of diseases. As a result, targeting hGal-3 for clinical applications has become an intense area of research. As a step towards the development of novel hGal-3 inhibitors, we describe a study of the binding of two Se-containing hGal-3 inhibitors, specifically that of di(β-D-galactopyranosyl)selenide (SeDG), in which two galactose rings are linked by one Se atom and a di(β-D-galactopyranosyl)diselenide (DSeDG) analogue with a diseleno bond between the two sugar units. The binding affinities of these derivatives to hGal-3 were determined by (15)N-(1)H HSQC NMR spectroscopy and fluorescence anisotropy titrations in solution, indicating a slight decrease in the strength of interaction for SeDG compared to thiodigalactoside (TDG), a well-known inhibitor of hGal-3, while DSeDG displayed a much weaker interaction strength. NMR and FA measurements showed that both seleno derivatives bind to the canonical S face site of hGal-3 and stack against the conserved W181 residue also confirmed by X-ray crystallography, revealing canonical properties of the interaction. The interaction with DSeDG revealed two distinct binding modes in the crystal structure which are in fast exchange on the NMR time scale in solution, explaining a weaker interaction with hGal-3 than SeDG. Using molecular dynamics simulations, we have found that energetic contributions to the binding enthalpies mainly differ in the electrostatic interactions and in polar solvation terms and are responsible for weaker binding of DSeDG compared to SeDG. Selenium-containing carbohydrate inhibitors of hGal-3 showing canonical binding modes offer the potential of becoming novel hydrolytically stable scaffolds for a new class of hGal-3 inhibitors.
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spelling pubmed-89102972022-03-11 Investigation of the Molecular Details of the Interactions of Selenoglycosides and Human Galectin-3 Raics, Mária Balogh, Álex Kálmán Kishor, Chandan Timári, István Medrano, Francisco J. Romero, Antonio Go, Rob Marc Blanchard, Helen Szilágyi, László E. Kövér, Katalin Fehér, Krisztina Int J Mol Sci Article Human galectin-3 (hGal-3) is involved in a variety of biological processes and is implicated in wide range of diseases. As a result, targeting hGal-3 for clinical applications has become an intense area of research. As a step towards the development of novel hGal-3 inhibitors, we describe a study of the binding of two Se-containing hGal-3 inhibitors, specifically that of di(β-D-galactopyranosyl)selenide (SeDG), in which two galactose rings are linked by one Se atom and a di(β-D-galactopyranosyl)diselenide (DSeDG) analogue with a diseleno bond between the two sugar units. The binding affinities of these derivatives to hGal-3 were determined by (15)N-(1)H HSQC NMR spectroscopy and fluorescence anisotropy titrations in solution, indicating a slight decrease in the strength of interaction for SeDG compared to thiodigalactoside (TDG), a well-known inhibitor of hGal-3, while DSeDG displayed a much weaker interaction strength. NMR and FA measurements showed that both seleno derivatives bind to the canonical S face site of hGal-3 and stack against the conserved W181 residue also confirmed by X-ray crystallography, revealing canonical properties of the interaction. The interaction with DSeDG revealed two distinct binding modes in the crystal structure which are in fast exchange on the NMR time scale in solution, explaining a weaker interaction with hGal-3 than SeDG. Using molecular dynamics simulations, we have found that energetic contributions to the binding enthalpies mainly differ in the electrostatic interactions and in polar solvation terms and are responsible for weaker binding of DSeDG compared to SeDG. Selenium-containing carbohydrate inhibitors of hGal-3 showing canonical binding modes offer the potential of becoming novel hydrolytically stable scaffolds for a new class of hGal-3 inhibitors. MDPI 2022-02-24 /pmc/articles/PMC8910297/ /pubmed/35269646 http://dx.doi.org/10.3390/ijms23052494 Text en © 2022 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
Raics, Mária
Balogh, Álex Kálmán
Kishor, Chandan
Timári, István
Medrano, Francisco J.
Romero, Antonio
Go, Rob Marc
Blanchard, Helen
Szilágyi, László
E. Kövér, Katalin
Fehér, Krisztina
Investigation of the Molecular Details of the Interactions of Selenoglycosides and Human Galectin-3
title Investigation of the Molecular Details of the Interactions of Selenoglycosides and Human Galectin-3
title_full Investigation of the Molecular Details of the Interactions of Selenoglycosides and Human Galectin-3
title_fullStr Investigation of the Molecular Details of the Interactions of Selenoglycosides and Human Galectin-3
title_full_unstemmed Investigation of the Molecular Details of the Interactions of Selenoglycosides and Human Galectin-3
title_short Investigation of the Molecular Details of the Interactions of Selenoglycosides and Human Galectin-3
title_sort investigation of the molecular details of the interactions of selenoglycosides and human galectin-3
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8910297/
https://www.ncbi.nlm.nih.gov/pubmed/35269646
http://dx.doi.org/10.3390/ijms23052494
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