Abstract

The hyaluronate molecule is a negatively charged polysaccharide that performs a plethora of physiological functions in many cell tissues depending on its conformation. In the present paper, molecular modeling at three levels of theory and two basis sets was used to gain a deeper insight in the complex molecular structure of calcium(II) and copper(II) hyaluronate. Simulation results were compared with the experimental data (EXAFS or X-ray). It was found that B3LYP does not properly reproduce the experimental data while the HF and M06 methods do. Simulation data confirm that the N-acetyl group of the N-acetylglucosamine residue does not participate in the coordination bonding to the calcium(II) or copper(II) ion, as evident from the experimental data.

Details

Title
A Computational Study of Calcium(II) and Copper(II) Ion Binding to the Hyaluronate Molecule
Author
Pirc, Elizabeta Tratar; Zidar, Jernej; Bukovec, Peter
Pages
12036-12045
Publication year
2012
Publication date
2012
Publisher
MDPI AG
ISSN
16616596
e-ISSN
14220067
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
1526021708
Copyright
Copyright MDPI AG 2012