Cargando…

5,2′-Dibromo-2,4′,5′-trihydroxydiphenylmethanone Inhibits LPS-Induced Vascular Inflammation by Targeting the Cav1 Protein

Vascular inflammation is directly responsible for atherosclerosis. 5,2′-Dibromo-2,4′,5′-trihydroxydiphenylmethanone (TDD), a synthetic bromophenol derivative, exhibits anti-atherosclerosis and anti-inflammatory effects. However, the underlying pathways are not yet clear. In this study, we first exam...

Descripción completa

Detalles Bibliográficos
Autores principales: Yuan, Hongxia, Hou, Qianyi, Feng, Xiue, Zhang, Yuanlin, Yang, Fan, Ge, Rui, Li, Qingshan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9101869/
https://www.ncbi.nlm.nih.gov/pubmed/35566232
http://dx.doi.org/10.3390/molecules27092884
_version_ 1784707192426856448
author Yuan, Hongxia
Hou, Qianyi
Feng, Xiue
Zhang, Yuanlin
Yang, Fan
Ge, Rui
Li, Qingshan
author_facet Yuan, Hongxia
Hou, Qianyi
Feng, Xiue
Zhang, Yuanlin
Yang, Fan
Ge, Rui
Li, Qingshan
author_sort Yuan, Hongxia
collection PubMed
description Vascular inflammation is directly responsible for atherosclerosis. 5,2′-Dibromo-2,4′,5′-trihydroxydiphenylmethanone (TDD), a synthetic bromophenol derivative, exhibits anti-atherosclerosis and anti-inflammatory effects. However, the underlying pathways are not yet clear. In this study, we first examined the effects of TDD on toll-like receptor-4 (TLR4) activity, the signaling receptor for lipopolysaccharide (LPS), and found that TDD does not inhibit LPS-induced TLR4 expression in EA.hy926 cells and the vascular wall in vivo. Next, we investigated the global protein alterations and the mechanisms underlying the action of TDD in LPS-treated EA.hy926 cells using an isobaric tag for the relative and absolute quantification technique. Western blot analysis revealed that TDD inhibited NF-κB activation by regulating the phosphorylation and subsequent degradation IκBα. Among the differentially expressed proteins, TDD concentration-dependently inhibited Caveolin 1(Cav1) expression. The interaction between Cav1 and TDD was determined by using biolayer interference assay, UV-vis absorption spectra, fluorescence spectrum, and molecular docking. We found that TDD can directly bind to Cav1 through hydrogen bonds and van der Waals forces. In conclusion, our results showed that TDD inhibited LPS-induced vascular inflammation and the NF-κB signaling pathway by specifically targeting the Cav1 protein. TDD may be a novel anti-inflammatory compound, especially for the treatment of atherosclerosis.
format Online
Article
Text
id pubmed-9101869
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-91018692022-05-14 5,2′-Dibromo-2,4′,5′-trihydroxydiphenylmethanone Inhibits LPS-Induced Vascular Inflammation by Targeting the Cav1 Protein Yuan, Hongxia Hou, Qianyi Feng, Xiue Zhang, Yuanlin Yang, Fan Ge, Rui Li, Qingshan Molecules Article Vascular inflammation is directly responsible for atherosclerosis. 5,2′-Dibromo-2,4′,5′-trihydroxydiphenylmethanone (TDD), a synthetic bromophenol derivative, exhibits anti-atherosclerosis and anti-inflammatory effects. However, the underlying pathways are not yet clear. In this study, we first examined the effects of TDD on toll-like receptor-4 (TLR4) activity, the signaling receptor for lipopolysaccharide (LPS), and found that TDD does not inhibit LPS-induced TLR4 expression in EA.hy926 cells and the vascular wall in vivo. Next, we investigated the global protein alterations and the mechanisms underlying the action of TDD in LPS-treated EA.hy926 cells using an isobaric tag for the relative and absolute quantification technique. Western blot analysis revealed that TDD inhibited NF-κB activation by regulating the phosphorylation and subsequent degradation IκBα. Among the differentially expressed proteins, TDD concentration-dependently inhibited Caveolin 1(Cav1) expression. The interaction between Cav1 and TDD was determined by using biolayer interference assay, UV-vis absorption spectra, fluorescence spectrum, and molecular docking. We found that TDD can directly bind to Cav1 through hydrogen bonds and van der Waals forces. In conclusion, our results showed that TDD inhibited LPS-induced vascular inflammation and the NF-κB signaling pathway by specifically targeting the Cav1 protein. TDD may be a novel anti-inflammatory compound, especially for the treatment of atherosclerosis. MDPI 2022-04-30 /pmc/articles/PMC9101869/ /pubmed/35566232 http://dx.doi.org/10.3390/molecules27092884 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yuan, Hongxia
Hou, Qianyi
Feng, Xiue
Zhang, Yuanlin
Yang, Fan
Ge, Rui
Li, Qingshan
5,2′-Dibromo-2,4′,5′-trihydroxydiphenylmethanone Inhibits LPS-Induced Vascular Inflammation by Targeting the Cav1 Protein
title 5,2′-Dibromo-2,4′,5′-trihydroxydiphenylmethanone Inhibits LPS-Induced Vascular Inflammation by Targeting the Cav1 Protein
title_full 5,2′-Dibromo-2,4′,5′-trihydroxydiphenylmethanone Inhibits LPS-Induced Vascular Inflammation by Targeting the Cav1 Protein
title_fullStr 5,2′-Dibromo-2,4′,5′-trihydroxydiphenylmethanone Inhibits LPS-Induced Vascular Inflammation by Targeting the Cav1 Protein
title_full_unstemmed 5,2′-Dibromo-2,4′,5′-trihydroxydiphenylmethanone Inhibits LPS-Induced Vascular Inflammation by Targeting the Cav1 Protein
title_short 5,2′-Dibromo-2,4′,5′-trihydroxydiphenylmethanone Inhibits LPS-Induced Vascular Inflammation by Targeting the Cav1 Protein
title_sort 5,2′-dibromo-2,4′,5′-trihydroxydiphenylmethanone inhibits lps-induced vascular inflammation by targeting the cav1 protein
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9101869/
https://www.ncbi.nlm.nih.gov/pubmed/35566232
http://dx.doi.org/10.3390/molecules27092884
work_keys_str_mv AT yuanhongxia 52dibromo245trihydroxydiphenylmethanoneinhibitslpsinducedvascularinflammationbytargetingthecav1protein
AT houqianyi 52dibromo245trihydroxydiphenylmethanoneinhibitslpsinducedvascularinflammationbytargetingthecav1protein
AT fengxiue 52dibromo245trihydroxydiphenylmethanoneinhibitslpsinducedvascularinflammationbytargetingthecav1protein
AT zhangyuanlin 52dibromo245trihydroxydiphenylmethanoneinhibitslpsinducedvascularinflammationbytargetingthecav1protein
AT yangfan 52dibromo245trihydroxydiphenylmethanoneinhibitslpsinducedvascularinflammationbytargetingthecav1protein
AT gerui 52dibromo245trihydroxydiphenylmethanoneinhibitslpsinducedvascularinflammationbytargetingthecav1protein
AT liqingshan 52dibromo245trihydroxydiphenylmethanoneinhibitslpsinducedvascularinflammationbytargetingthecav1protein