Literature DB >> 31085372

Investigation of the interaction between salvianolic acid C and xanthine oxidase: Insights from experimental studies merging with molecular docking methods.

Hongjin Tang1, Dongsheng Zhao2.   

Abstract

Xanthine oxidase (XO) has emerged as an important target for gout. In our previous study, salvianolic acid C (SAC) was found to show potent XO inhibitory activity, whereas the interaction mechanism was still not clear. Herein, an integrated approach consisting of enzyme kinetics, multi-spectroscopic methods and molecular docking was employed to investigate the interaction between SAC and XO. Consequently, SAC exhibited a rapid and mixed-type inhibition of XO with IC50 of 5.84 ± 0.18 μM. The fluorescence data confirmed that SAC presented a strong fluorescence quenching effect through a static quenching procedure. The values of enthalpy change, entropy change and Gibbs free energy change indicated that their binding was spontaneous and driven mainly by hydrophobic interactions. Analysis of synchronous fluorescence, circular dichroism and fourier transform infrared spectra demonstrated that SAC induced conformational changes of the enzyme. Besides, further molecular docking revealed that SAC occupied the catalytic center resulting in the inhibition of XO activity. This study provides a comprehensive understanding on the interaction mechanism of SAC on XO.
Copyright © 2019 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Interaction mechanism; Molecular docking; Salvianolic acid C; Xanthine oxidase

Year:  2019        PMID: 31085372     DOI: 10.1016/j.bioorg.2019.102981

Source DB:  PubMed          Journal:  Bioorg Chem        ISSN: 0045-2068            Impact factor:   5.275


  3 in total

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Authors:  Jeong Yoon Kim; Yan Wang; Zuo Peng Li; Aizhamal Baiseitova; Yeong Jun Ban; Ki Hun Park
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Review 3.  Oxidative Stress Evaluation in Ischemia Reperfusion Models: Characteristics, Limits and Perspectives.

Authors:  Pauline Chazelas; Clara Steichen; Frédéric Favreau; Patrick Trouillas; Patrick Hannaert; Raphaël Thuillier; Sébastien Giraud; Thierry Hauet; Jérôme Guillard
Journal:  Int J Mol Sci       Date:  2021-02-27       Impact factor: 5.923

  3 in total

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