Cargando…

Unveiling the inhibitory mechanism of aureusidin targeting xanthine oxidase by multi-spectroscopic methods and molecular simulations

Xanthine oxidase (XO) is a key target for gout treatment. Great efforts have been made towards the discovery and development of new XO inhibitors. Aureusidin (AUR), a natural compound, emerges as the second reported XO inhibitor with an aurone skeleton with an IC(50) value of 7.617 ± 0.401 μM in vit...

Descripción completa

Detalles Bibliográficos
Autores principales: He, Pei, Xu, Haiqi, Yang, Can, Yu, Dehong, Liu, Yi, Du, Jiana, Li, Yanfang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9827282/
https://www.ncbi.nlm.nih.gov/pubmed/36688063
http://dx.doi.org/10.1039/d2ra06997k
_version_ 1784867039807012864
author He, Pei
Xu, Haiqi
Yang, Can
Yu, Dehong
Liu, Yi
Du, Jiana
Li, Yanfang
author_facet He, Pei
Xu, Haiqi
Yang, Can
Yu, Dehong
Liu, Yi
Du, Jiana
Li, Yanfang
author_sort He, Pei
collection PubMed
description Xanthine oxidase (XO) is a key target for gout treatment. Great efforts have been made towards the discovery and development of new XO inhibitors. Aureusidin (AUR), a natural compound, emerges as the second reported XO inhibitor with an aurone skeleton with an IC(50) value of 7.617 ± 0.401 μM in vitro. The inhibitory mechanism of AUR against XO was explored through enzyme kinetic studies, multi-spectroscopic methods, computer simulation techniques, and ADME prediction. The results showed that AUR acts as a rapid reversible and mixed-type XO inhibitor and its binding to XO was driven by hydrogen bonding and hydrophobic interaction. Moreover, AUR presented a strong fluorescence quenching effect through a static quenching process and induced a conformation change of XO. Its binding pattern with XO was revealed through molecular docking, and its affinity toward XO was enhanced through interactions with key amino acid residues in the active pocket of XO. Further, AUR demonstrated good stability and pharmacokinetic behavior properties in molecular dynamics simulation and ADME prediction. In short, the current work clarified in depth the inhibitory mechanism of AUR on XO firstly and then provided fresh insights into its further development as a natural potent XO inhibitor with aurone skeleton.
format Online
Article
Text
id pubmed-9827282
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-98272822023-01-20 Unveiling the inhibitory mechanism of aureusidin targeting xanthine oxidase by multi-spectroscopic methods and molecular simulations He, Pei Xu, Haiqi Yang, Can Yu, Dehong Liu, Yi Du, Jiana Li, Yanfang RSC Adv Chemistry Xanthine oxidase (XO) is a key target for gout treatment. Great efforts have been made towards the discovery and development of new XO inhibitors. Aureusidin (AUR), a natural compound, emerges as the second reported XO inhibitor with an aurone skeleton with an IC(50) value of 7.617 ± 0.401 μM in vitro. The inhibitory mechanism of AUR against XO was explored through enzyme kinetic studies, multi-spectroscopic methods, computer simulation techniques, and ADME prediction. The results showed that AUR acts as a rapid reversible and mixed-type XO inhibitor and its binding to XO was driven by hydrogen bonding and hydrophobic interaction. Moreover, AUR presented a strong fluorescence quenching effect through a static quenching process and induced a conformation change of XO. Its binding pattern with XO was revealed through molecular docking, and its affinity toward XO was enhanced through interactions with key amino acid residues in the active pocket of XO. Further, AUR demonstrated good stability and pharmacokinetic behavior properties in molecular dynamics simulation and ADME prediction. In short, the current work clarified in depth the inhibitory mechanism of AUR on XO firstly and then provided fresh insights into its further development as a natural potent XO inhibitor with aurone skeleton. The Royal Society of Chemistry 2023-01-09 /pmc/articles/PMC9827282/ /pubmed/36688063 http://dx.doi.org/10.1039/d2ra06997k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
He, Pei
Xu, Haiqi
Yang, Can
Yu, Dehong
Liu, Yi
Du, Jiana
Li, Yanfang
Unveiling the inhibitory mechanism of aureusidin targeting xanthine oxidase by multi-spectroscopic methods and molecular simulations
title Unveiling the inhibitory mechanism of aureusidin targeting xanthine oxidase by multi-spectroscopic methods and molecular simulations
title_full Unveiling the inhibitory mechanism of aureusidin targeting xanthine oxidase by multi-spectroscopic methods and molecular simulations
title_fullStr Unveiling the inhibitory mechanism of aureusidin targeting xanthine oxidase by multi-spectroscopic methods and molecular simulations
title_full_unstemmed Unveiling the inhibitory mechanism of aureusidin targeting xanthine oxidase by multi-spectroscopic methods and molecular simulations
title_short Unveiling the inhibitory mechanism of aureusidin targeting xanthine oxidase by multi-spectroscopic methods and molecular simulations
title_sort unveiling the inhibitory mechanism of aureusidin targeting xanthine oxidase by multi-spectroscopic methods and molecular simulations
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9827282/
https://www.ncbi.nlm.nih.gov/pubmed/36688063
http://dx.doi.org/10.1039/d2ra06997k
work_keys_str_mv AT hepei unveilingtheinhibitorymechanismofaureusidintargetingxanthineoxidasebymultispectroscopicmethodsandmolecularsimulations
AT xuhaiqi unveilingtheinhibitorymechanismofaureusidintargetingxanthineoxidasebymultispectroscopicmethodsandmolecularsimulations
AT yangcan unveilingtheinhibitorymechanismofaureusidintargetingxanthineoxidasebymultispectroscopicmethodsandmolecularsimulations
AT yudehong unveilingtheinhibitorymechanismofaureusidintargetingxanthineoxidasebymultispectroscopicmethodsandmolecularsimulations
AT liuyi unveilingtheinhibitorymechanismofaureusidintargetingxanthineoxidasebymultispectroscopicmethodsandmolecularsimulations
AT dujiana unveilingtheinhibitorymechanismofaureusidintargetingxanthineoxidasebymultispectroscopicmethodsandmolecularsimulations
AT liyanfang unveilingtheinhibitorymechanismofaureusidintargetingxanthineoxidasebymultispectroscopicmethodsandmolecularsimulations