Title of article
Exploring the Interaction Mechanism of Coumarin with Bovine β-Casein: Spectrofluorometric and Molecular Modeling Studies
Author/Authors
Adibipour, Z Department of Chemistry - University of Isfahan , Fani, N Department of Chemistry - University of Isfahan , Bordbar, A.-K Department of Chemistry - University of Isfahan , Sahihi, M Department of Chemistry - University of Isfahan
Pages
12
From page
627
To page
638
Abstract
This paper is designed to examine the binding behavior of Coumarin with bovine -casein (βCN) through fluorescence spectroscopy
and molecular modeling techniques. The data analysis on fluorescence titration experiments at various temperatures represents the enthalpy
driven nature for the formation of Coumarin-βCN complex and the prevailed role of hydrogen bonds and van der Waals interactions in the
binding process. The results also represent the static quenching of tryptophan and dynamics quenching of tyrosine and phenylalanine
residues due to the binding of Coumarin. It can be concluded from molecular docking studies that Coumarin binds to several polar and nonpolar
residues in the hydrophobic core of βCN with the binding energy of -6.96 kcal mol-1. Finally, analysis of molecular dynamics (MD)
simulation results suggested that the interactions between βCN and Coumarin are very stable and the binding of Coumarin restricted the
flexibility of important residues in the binding site of this protein.
Keywords
β-casein (βCN) , Coumarin , Molecular docking , Molecular dynamics simulation , Fluorescence spectroscopy
Journal title
Astroparticle Physics
Serial Year
2018
Record number
2450204
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