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Energetic parameters of β-casein/quercetin activated and thermodynamically stable complex formation accessed by Surface Plasmon Resonance.

Authors :
Hudson, Eliara Acipreste
Rezende, Jaqueline de Paula
de Paula, Hauster Maximiler Campos
Coelho, Yara Luiza
da Silva, Luis Henrique Mendes
Pires, Ana Clarissa dos Santos
Source :
Colloids & Surfaces B: Biointerfaces. Sep2019, Vol. 181, p798-805. 8p.
Publication Year :
2019

Abstract

• β-casein and quercetin form supramolecular complexes driven by an entropic increase • Increase in temperature favored the thermodynamically stable complex formation • The interaction process was equally affected by both studied Hofmeister ions • KCl or KSCN increased the stability of the β-casein/quercetin complexes Characterizing the energetics and molecular dynamics of binding between proteins and bioactive compounds is strategic. Using surface plasmon resonance, we demonstrated that β-casein (β-cas) and quercetin (Qct) form supramolecular complexes driven by an increase in entropy (ΔH° = 25.86 and TΔS° =53.49 kJ∙mol-1 at 25 °C). It was possible to infer that the β-cas/Qct complex was formed via an activated complex synthesized by an entropic reduction (TΔS‡ (a) = -15.31 kJ mol-1 and TΔS‡ (d) = -68.80 kJ mol-1 at 25 °C) and an enthalpic increase (ΔH‡ (a) = 30.87 and ΔH‡ (d) =5.0 kJ∙mol-1 at 25 °C). Independent of the nature of the Hofmeister ions, the salts KCl or KSCN increased complex stability by decreasing both the kinetic and thermodynamic enthalpy values, through shielding of the electrostatic interactions at the electric double layer of the interacting molecules. An increase in temperature favored both the association of the free interacting molecules and the dissociation of the thermodynamically stable β-cas/Qct complexes. These results provide insights into the β-cas/Qct interaction process and contribute to the understanding of how Hofmeister ions can modulate intermolecular interactions between proteins and small molecules. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09277765
Volume :
181
Database :
Academic Search Index
Journal :
Colloids & Surfaces B: Biointerfaces
Publication Type :
Academic Journal
Accession number :
137776310
Full Text :
https://doi.org/10.1016/j.colsurfb.2019.06.048