Literature DB >> 10704532

Glycosaminoglycan conformation: do aqueous molecular dynamics simulations agree with x-ray fiber diffraction?

A Almond1, J K Sheehan.   

Abstract

Glycosaminoglycan-protein interactions are biologically important and require an appreciation of glycan molecular shape in solution, which is presently unavailable. In previous studies we found strong similarity between aqueous molecular dynamics (MD) simulations and published x-ray diffraction refinements of hyaluronan. We have applied a similar approach here to chondroitin and dermatan, attempting to clarify some of the issues raised by the x-ray diffraction literature relating to chondroitin and dermatan sulfate. We predict that chondroitin has the same beta(1-->4) linkage conformation as hyaluronan, and that their average beta(1-->3) conformations differ. This is explained by changes in hydrogen-bonding across this linkage, resulting from its axial hydroxyl, causing a different sampling of left-handed helices in chondroitin (2.5- to 3.5-fold) as compared with hyaluronan (3.0- to 4.0-fold). Few right-handed helices, which lack intramolecular hydrogen-bonds, were sampled during our MD simulations. Thus, we propose that the 8-fold helix observed in chondroitin-6-sulfate, represented in the literature as an 8(3) helix (right-handed), though it has never been refined, is more likely to be 8(5) (left-handed) helix. Molecular dynamics simulations implied that (4)C(1) and (2)S(O), but not (1)C(4), forms of iduronate could be used in refinements of dermatan x-ray fiber diffraction patterns. Current models of 8-fold dermatan sulfate chains containing (4)C(1) iduronate refine to right-handed helices, which possess no intramolecular hydrogen-bonds. However, MD simulations predict that models containing (2)S(O) iduronate could provide better (8(5) helix) starting structures for refinement. Thus, the 8-fold dermatan sulfate refinement (8(3) helix) could be in error.

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Year:  2000        PMID: 10704532     DOI: 10.1093/glycob/10.3.329

Source DB:  PubMed          Journal:  Glycobiology        ISSN: 0959-6658            Impact factor:   4.313


  17 in total

1.  Sulfation and cation effects on the conformational properties of the glycan backbone of chondroitin sulfate disaccharides.

Authors:  Christina E Faller; Olgun Guvench
Journal:  J Phys Chem B       Date:  2015-05-07       Impact factor: 2.991

2.  Quantitative conformational analysis of the core region of N-glycans using residual dipolar couplings, aqueous molecular dynamics, and steric alignment.

Authors:  A Almond; J O Duus
Journal:  J Biomol NMR       Date:  2001-08       Impact factor: 2.835

3.  Perspective on computational simulations of glycosaminoglycans.

Authors:  Balaji Nagarajan; Nehru Viji Sankaranarayanan; Umesh R Desai
Journal:  Wiley Interdiscip Rev Comput Mol Sci       Date:  2018-09-10

Review 4.  Molecular dynamics simulations to understand glycosaminoglycan interactions in the free- and protein-bound states.

Authors:  Balaji Nagarajan; Samuel G Holmes; Nehru Viji Sankaranarayanan; Umesh R Desai
Journal:  Curr Opin Struct Biol       Date:  2022-03-17       Impact factor: 7.786

5.  Binding of glycosaminoglycan saccharides to hydroxyapatite surfaces: A density functional theory study.

Authors:  Ian Streeter; Nora H de Leeuw
Journal:  Proc Math Phys Eng Sci       Date:  2011-07-08       Impact factor: 2.704

6.  Conformational analysis of a dermatan sulfate-derived tetrasaccharide by NMR, molecular modeling, and residual dipolar couplings.

Authors:  Alba Silipo; Zhenqing Zhang; F Javier Cañada; Antonio Molinaro; Robert J Linhardt; Jesús Jiménez-Barbero
Journal:  Chembiochem       Date:  2008-01-25       Impact factor: 3.164

7.  Rigorous analysis of free solution glycosaminoglycan dynamics using simple, new tools.

Authors:  Balaji Nagarajan; Nehru Viji Sankaranarayanan; Umesh R Desai
Journal:  Glycobiology       Date:  2020-07-16       Impact factor: 4.313

8.  GLYCAM06: a generalizable biomolecular force field. Carbohydrates.

Authors:  Karl N Kirschner; Austin B Yongye; Sarah M Tschampel; Jorge González-Outeiriño; Charlisa R Daniels; B Lachele Foley; Robert J Woods
Journal:  J Comput Chem       Date:  2008-03       Impact factor: 3.376

9.  A 3D-structural model of unsulfated chondroitin from high-field NMR: 4-sulfation has little effect on backbone conformation.

Authors:  Benedict M Sattelle; Javad Shakeri; Ian S Roberts; Andrew Almond
Journal:  Carbohydr Res       Date:  2009-11-23       Impact factor: 2.104

10.  Docking glycosaminoglycans to proteins: analysis of solvent inclusion.

Authors:  Sergey A Samsonov; Joan Teyra; M Teresa Pisabarro
Journal:  J Comput Aided Mol Des       Date:  2011-05-20       Impact factor: 3.686

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