Cargando…

The Carbohydrate-Binding Site in Galectin-3 Is Preorganized To Recognize a Sugarlike Framework of Oxygens: Ultra-High-Resolution Structures and Water Dynamics

[Image: see text] The recognition of carbohydrates by proteins is a fundamental aspect of communication within and between living cells. Understanding the molecular basis of carbohydrate–protein interactions is a prerequisite for the rational design of synthetic ligands. Here we report the high- to...

Descripción completa

Detalles Bibliográficos
Autores principales: Saraboji, Kadhirvel, Håkansson, Maria, Genheden, Samuel, Diehl, Carl, Qvist, Johan, Weininger, Ulrich, Nilsson, Ulf J., Leffler, Hakon, Ryde, Ulf, Akke, Mikael, Logan, Derek T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2011
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3255464/
https://www.ncbi.nlm.nih.gov/pubmed/22111949
http://dx.doi.org/10.1021/bi201459p
_version_ 1782221007753314304
author Saraboji, Kadhirvel
Håkansson, Maria
Genheden, Samuel
Diehl, Carl
Qvist, Johan
Weininger, Ulrich
Nilsson, Ulf J.
Leffler, Hakon
Ryde, Ulf
Akke, Mikael
Logan, Derek T.
author_facet Saraboji, Kadhirvel
Håkansson, Maria
Genheden, Samuel
Diehl, Carl
Qvist, Johan
Weininger, Ulrich
Nilsson, Ulf J.
Leffler, Hakon
Ryde, Ulf
Akke, Mikael
Logan, Derek T.
author_sort Saraboji, Kadhirvel
collection PubMed
description [Image: see text] The recognition of carbohydrates by proteins is a fundamental aspect of communication within and between living cells. Understanding the molecular basis of carbohydrate–protein interactions is a prerequisite for the rational design of synthetic ligands. Here we report the high- to ultra-high-resolution crystal structures of the carbohydrate recognition domain of galectin-3 (Gal3C) in the ligand-free state (1.08 Å at 100 K, 1.25 Å at 298 K) and in complex with lactose (0.86 Å) or glycerol (0.9 Å). These structures reveal striking similarities in the positions of water and carbohydrate oxygen atoms in all three states, indicating that the binding site of Gal3C is preorganized to coordinate oxygen atoms in an arrangement that is nearly optimal for the recognition of β-galactosides. Deuterium nuclear magnetic resonance (NMR) relaxation dispersion experiments and molecular dynamics simulations demonstrate that all water molecules in the lactose-binding site exchange with bulk water on a time scale of nanoseconds or shorter. Nevertheless, molecular dynamics simulations identify transient water binding at sites that agree well with those observed by crystallography, indicating that the energy landscape of the binding site is maintained in solution. All heavy atoms of glycerol are positioned like the corresponding atoms of lactose in the Gal3C complexes. However, binding of glycerol to Gal3C is insignificant in solution at room temperature, as monitored by NMR spectroscopy or isothermal titration calorimetry under conditions where lactose binding is readily detected. These observations make a case for protein cryo-crystallography as a valuable screening method in fragment-based drug discovery and further suggest that identification of water sites might inform inhibitor design.
format Online
Article
Text
id pubmed-3255464
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-32554642012-01-13 The Carbohydrate-Binding Site in Galectin-3 Is Preorganized To Recognize a Sugarlike Framework of Oxygens: Ultra-High-Resolution Structures and Water Dynamics Saraboji, Kadhirvel Håkansson, Maria Genheden, Samuel Diehl, Carl Qvist, Johan Weininger, Ulrich Nilsson, Ulf J. Leffler, Hakon Ryde, Ulf Akke, Mikael Logan, Derek T. Biochemistry [Image: see text] The recognition of carbohydrates by proteins is a fundamental aspect of communication within and between living cells. Understanding the molecular basis of carbohydrate–protein interactions is a prerequisite for the rational design of synthetic ligands. Here we report the high- to ultra-high-resolution crystal structures of the carbohydrate recognition domain of galectin-3 (Gal3C) in the ligand-free state (1.08 Å at 100 K, 1.25 Å at 298 K) and in complex with lactose (0.86 Å) or glycerol (0.9 Å). These structures reveal striking similarities in the positions of water and carbohydrate oxygen atoms in all three states, indicating that the binding site of Gal3C is preorganized to coordinate oxygen atoms in an arrangement that is nearly optimal for the recognition of β-galactosides. Deuterium nuclear magnetic resonance (NMR) relaxation dispersion experiments and molecular dynamics simulations demonstrate that all water molecules in the lactose-binding site exchange with bulk water on a time scale of nanoseconds or shorter. Nevertheless, molecular dynamics simulations identify transient water binding at sites that agree well with those observed by crystallography, indicating that the energy landscape of the binding site is maintained in solution. All heavy atoms of glycerol are positioned like the corresponding atoms of lactose in the Gal3C complexes. However, binding of glycerol to Gal3C is insignificant in solution at room temperature, as monitored by NMR spectroscopy or isothermal titration calorimetry under conditions where lactose binding is readily detected. These observations make a case for protein cryo-crystallography as a valuable screening method in fragment-based drug discovery and further suggest that identification of water sites might inform inhibitor design. American Chemical Society 2011-11-23 2012-01-10 /pmc/articles/PMC3255464/ /pubmed/22111949 http://dx.doi.org/10.1021/bi201459p Text en Copyright © 2011 American Chemical Society http://pubs.acs.org This is an open-access article distributed under the ACS AuthorChoice Terms & Conditions. Any use of this article, must conform to the terms of that license which are available at http://pubs.acs.org.
spellingShingle Saraboji, Kadhirvel
Håkansson, Maria
Genheden, Samuel
Diehl, Carl
Qvist, Johan
Weininger, Ulrich
Nilsson, Ulf J.
Leffler, Hakon
Ryde, Ulf
Akke, Mikael
Logan, Derek T.
The Carbohydrate-Binding Site in Galectin-3 Is Preorganized To Recognize a Sugarlike Framework of Oxygens: Ultra-High-Resolution Structures and Water Dynamics
title The Carbohydrate-Binding Site in Galectin-3 Is Preorganized To Recognize a Sugarlike Framework of Oxygens: Ultra-High-Resolution Structures and Water Dynamics
title_full The Carbohydrate-Binding Site in Galectin-3 Is Preorganized To Recognize a Sugarlike Framework of Oxygens: Ultra-High-Resolution Structures and Water Dynamics
title_fullStr The Carbohydrate-Binding Site in Galectin-3 Is Preorganized To Recognize a Sugarlike Framework of Oxygens: Ultra-High-Resolution Structures and Water Dynamics
title_full_unstemmed The Carbohydrate-Binding Site in Galectin-3 Is Preorganized To Recognize a Sugarlike Framework of Oxygens: Ultra-High-Resolution Structures and Water Dynamics
title_short The Carbohydrate-Binding Site in Galectin-3 Is Preorganized To Recognize a Sugarlike Framework of Oxygens: Ultra-High-Resolution Structures and Water Dynamics
title_sort carbohydrate-binding site in galectin-3 is preorganized to recognize a sugarlike framework of oxygens: ultra-high-resolution structures and water dynamics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3255464/
https://www.ncbi.nlm.nih.gov/pubmed/22111949
http://dx.doi.org/10.1021/bi201459p
work_keys_str_mv AT sarabojikadhirvel thecarbohydratebindingsiteingalectin3ispreorganizedtorecognizeasugarlikeframeworkofoxygensultrahighresolutionstructuresandwaterdynamics
AT hakanssonmaria thecarbohydratebindingsiteingalectin3ispreorganizedtorecognizeasugarlikeframeworkofoxygensultrahighresolutionstructuresandwaterdynamics
AT genhedensamuel thecarbohydratebindingsiteingalectin3ispreorganizedtorecognizeasugarlikeframeworkofoxygensultrahighresolutionstructuresandwaterdynamics
AT diehlcarl thecarbohydratebindingsiteingalectin3ispreorganizedtorecognizeasugarlikeframeworkofoxygensultrahighresolutionstructuresandwaterdynamics
AT qvistjohan thecarbohydratebindingsiteingalectin3ispreorganizedtorecognizeasugarlikeframeworkofoxygensultrahighresolutionstructuresandwaterdynamics
AT weiningerulrich thecarbohydratebindingsiteingalectin3ispreorganizedtorecognizeasugarlikeframeworkofoxygensultrahighresolutionstructuresandwaterdynamics
AT nilssonulfj thecarbohydratebindingsiteingalectin3ispreorganizedtorecognizeasugarlikeframeworkofoxygensultrahighresolutionstructuresandwaterdynamics
AT lefflerhakon thecarbohydratebindingsiteingalectin3ispreorganizedtorecognizeasugarlikeframeworkofoxygensultrahighresolutionstructuresandwaterdynamics
AT rydeulf thecarbohydratebindingsiteingalectin3ispreorganizedtorecognizeasugarlikeframeworkofoxygensultrahighresolutionstructuresandwaterdynamics
AT akkemikael thecarbohydratebindingsiteingalectin3ispreorganizedtorecognizeasugarlikeframeworkofoxygensultrahighresolutionstructuresandwaterdynamics
AT loganderekt thecarbohydratebindingsiteingalectin3ispreorganizedtorecognizeasugarlikeframeworkofoxygensultrahighresolutionstructuresandwaterdynamics
AT sarabojikadhirvel carbohydratebindingsiteingalectin3ispreorganizedtorecognizeasugarlikeframeworkofoxygensultrahighresolutionstructuresandwaterdynamics
AT hakanssonmaria carbohydratebindingsiteingalectin3ispreorganizedtorecognizeasugarlikeframeworkofoxygensultrahighresolutionstructuresandwaterdynamics
AT genhedensamuel carbohydratebindingsiteingalectin3ispreorganizedtorecognizeasugarlikeframeworkofoxygensultrahighresolutionstructuresandwaterdynamics
AT diehlcarl carbohydratebindingsiteingalectin3ispreorganizedtorecognizeasugarlikeframeworkofoxygensultrahighresolutionstructuresandwaterdynamics
AT qvistjohan carbohydratebindingsiteingalectin3ispreorganizedtorecognizeasugarlikeframeworkofoxygensultrahighresolutionstructuresandwaterdynamics
AT weiningerulrich carbohydratebindingsiteingalectin3ispreorganizedtorecognizeasugarlikeframeworkofoxygensultrahighresolutionstructuresandwaterdynamics
AT nilssonulfj carbohydratebindingsiteingalectin3ispreorganizedtorecognizeasugarlikeframeworkofoxygensultrahighresolutionstructuresandwaterdynamics
AT lefflerhakon carbohydratebindingsiteingalectin3ispreorganizedtorecognizeasugarlikeframeworkofoxygensultrahighresolutionstructuresandwaterdynamics
AT rydeulf carbohydratebindingsiteingalectin3ispreorganizedtorecognizeasugarlikeframeworkofoxygensultrahighresolutionstructuresandwaterdynamics
AT akkemikael carbohydratebindingsiteingalectin3ispreorganizedtorecognizeasugarlikeframeworkofoxygensultrahighresolutionstructuresandwaterdynamics
AT loganderekt carbohydratebindingsiteingalectin3ispreorganizedtorecognizeasugarlikeframeworkofoxygensultrahighresolutionstructuresandwaterdynamics