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Interactions of glutathione tripeptide with gold cluster: influence of intramolecular hydrogen bond on complexation behavior.

Authors :
Aliakbar Tehrani Z
Jamshidi Z
Jebeli Javan M
Fattahi A
Source :
The journal of physical chemistry. A [J Phys Chem A] 2012 May 03; Vol. 116 (17), pp. 4338-47. Date of Electronic Publication: 2012 Apr 23.
Publication Year :
2012

Abstract

Understanding the nature of the interaction between metal nanoparticles and biomolecules has been important in the development and design of sensors. In this paper, structural, electronic, and bonding properties of the neutral and anionic forms of glutathione tripeptide (GSH) complexes with a Au(3) cluster were studied using the DFT-B3LYP with 6-31+G**-LANL2DZ mixed basis set. Binding of glutathione with the gold cluster is governed by two different kinds of interactions: Au-X (X = N, O, and S) anchoring bond and Au···H-X nonconventional hydrogen bonding. The influence of the intramolecular hydrogen bonding of glutathione on the interaction of this peptide with the gold cluster has been investigated. To gain insight on the role of intramolecular hydrogen bonding on Au-GSH interaction, we compared interaction energies of Au-GSH complexes with those of cystein and glycine components. Our results demonstrated that, in spite of the ability of cystein to form highly stable metal-sulfide interaction, complexation behavior of glutathione is governed by its intramolecular backbone hydrogen bonding. The quantum theory of atom in molecule (QTAIM) and natural bond orbital analysis (NBO) have also been applied to interpret the nature of interactions in Au-GSH complexes. Finally, conformational flexibility of glutathione during complexation with the Au(3) cluster was investigated by means of monitoring Ramachandran angles.

Details

Language :
English
ISSN :
1520-5215
Volume :
116
Issue :
17
Database :
MEDLINE
Journal :
The journal of physical chemistry. A
Publication Type :
Academic Journal
Accession number :
22356446
Full Text :
https://doi.org/10.1021/jp2080226