scholarly journals Insight into the Molecular Interaction of Cloxyquin (5-chloro-8-hydroxyquinoline) with Bovine Serum Albumin: Biophysical Analysis and Computational Simulation

2019 ◽  
Vol 21 (1) ◽  
pp. 249 ◽  
Author(s):  
Kamonrat Phopin ◽  
Waralee Ruankham ◽  
Supaluk Prachayasittikul ◽  
Virapong Prachayasittikul ◽  
Tanawut Tantimongcolwat

Cloxyquin is a potential therapeutic compound possessing various bioactivities, especially antibacterial, antifungal, cardioprotective, and pain relief activities. Herein, the interaction mechanism between cloxyquin and bovine serum albumin (BSA) has been elucidated in order to fulfill its pharmacokinetic and pharmacodynamic gaps essential for further development as a therapeutic drug. Multi-spectroscopic and biophysical model analysis suggested that cloxyquin interacts with BSA via a static process by ground-state complex formation. Its binding behavior emerged as a biphasic fashion with a moderate binding constant at the level of 104 M−1. Thermodynamic analysis and molecular docking simulation concurrently revealed that hydrophobic interaction is a major driving force for BSA–cloxyquin complexation. Binding of cloxyquin tends to slightly enlarge the monomeric size of BSA without a significant increase of aggregate fraction. Cloxyquin preferentially binds into the fatty acid binding site 5 (FA5) of the BSA via hydrophobic interaction amongst its quinoline scaffold and Phe550, Leu531, and Leu574 residues of BSA. The quinoline ring and hydroxyl moiety of cloxyquin also form the π–π interaction and the hydrogen bond with Phe506. Our data indicate a potential function of serum albumin as a carrier of cloxyquin in blood circulation.

RSC Advances ◽  
2017 ◽  
Vol 7 (15) ◽  
pp. 9393-9401 ◽  
Author(s):  
Gongke Wang ◽  
Yanfang Lu ◽  
Huimin Hou ◽  
Yufang Liu

The binding of BSA to AgNPs will open a door to fully understand the essence of the interactions between nanoparticles and proteins.


1983 ◽  
Vol 136 (2) ◽  
pp. 291-295 ◽  
Author(s):  
Kenji TAKABAYASHI ◽  
Teruaki IMADA ◽  
Yuji SAITO ◽  
Yuji INADA

Author(s):  
Gombosuren Davaadulam ◽  
Maamuu Tamara ◽  
Nyamaa Gerelsuren

In this study, we investigated the interaction of epigallocatechin gallate (EGCG) with bovine serum albumin (BSA) by fluorescence method and protein‐ligand docking. We separated EGCG from green tea using the chromatographic method and analyzed structural activity relationships of the EGCG. The results show that EGCG is a strong quencher of BSA fluorescence and binds with BSA with high affinity. The binding parameters (binding constant, the number of binding sites) were determined by the Ward equation. From the thermodynamic parameters, calculated according to the van’t Hoff equation, the enthalpy change ΔH°, and entropy change ΔS° were found to be -22.67 kJ/mol and 14.92 J/mol/K, respectively. These values suggest that apart from an initial hydrophobic association, the complex is held together by electrostatic and hydrogen bonding. In the docking simulation, the lowest free energies for the interaction of EGCG with tryptophan residues was −21.92kJ/mol (Trp134) and −24.7 kJ/mol (Trp213). The binding between EGCG and BSA consists of hydrogen bonds (Trp213) and hydrophobic interactions (Trp134).


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