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A novel anti-atherosclerotic mechanism of quercetin: Competitive binding to KEAP1 via Arg483 to inhibit macrophage pyroptosis

Natural antioxidants represented by quercetin have been documented to be effective against atherosclerosis. However, the related mechanisms remain largely unclear. In this study, we identified a novel anti-atherosclerotic mechanism of quercetin inhibiting macrophage pyroptosis by activating NRF2 thr...

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Autores principales: Luo, Xing, Weng, Xiuzhu, Bao, Xiaoyi, Bai, Xiaoxuan, Lv, Ying, Zhang, Shan, Chen, Yuwu, Zhao, Chen, Zeng, Ming, Huang, Jianxin, Xu, Biyi, Johnson, Thomas W., White, Stephen J., Li, Ji, Jia, Haibo, Yu, Bo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9596875/
https://www.ncbi.nlm.nih.gov/pubmed/36274522
http://dx.doi.org/10.1016/j.redox.2022.102511
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author Luo, Xing
Weng, Xiuzhu
Bao, Xiaoyi
Bai, Xiaoxuan
Lv, Ying
Zhang, Shan
Chen, Yuwu
Zhao, Chen
Zeng, Ming
Huang, Jianxin
Xu, Biyi
Johnson, Thomas W.
White, Stephen J.
Li, Ji
Jia, Haibo
Yu, Bo
author_facet Luo, Xing
Weng, Xiuzhu
Bao, Xiaoyi
Bai, Xiaoxuan
Lv, Ying
Zhang, Shan
Chen, Yuwu
Zhao, Chen
Zeng, Ming
Huang, Jianxin
Xu, Biyi
Johnson, Thomas W.
White, Stephen J.
Li, Ji
Jia, Haibo
Yu, Bo
author_sort Luo, Xing
collection PubMed
description Natural antioxidants represented by quercetin have been documented to be effective against atherosclerosis. However, the related mechanisms remain largely unclear. In this study, we identified a novel anti-atherosclerotic mechanism of quercetin inhibiting macrophage pyroptosis by activating NRF2 through binding to the Arg483 site of KEAP1 competitively. In ApoE(−/−) mice fed with high fat diet, quercetin administration attenuated atherosclerosis progression by reducing oxidative stress level and suppressing macrophage pyroptosis. At the cellular level, quercetin suppressed THP-1 macrophage pyroptosis induced by ox-LDL, demonstrated by inhibiting NLRP3 inflammasome activation and reducing ROS level, while these effects were reversed by the specific NRF2 inhibitor (ML385). Mechanistically, quercetin promoted NRF2 to dissociate from KEAP1, enhanced NRF2 nuclear translocation as well as transcription of downstream antioxidant protein. Molecular docking results suggested that quercetin could bind with KEAP1 at Arg415 and Arg483. In order to verify the binding sites, KEAP1 mutated at Arg415 and Arg483 to Ser (R415S and R483S) was transfected into THP-1 macrophages, and the anti-pyroptotic effect of quercetin was abrogated by Arg483 mutation, but not Arg415 mutation. Furthermore, after administration of adeno associated viral vector (AAV) with AAV-KEAP1-R483S, the anti-atherosclerotic effects of quercetin were almost abolished in ApoE(−/−) mice. These findings proved quercetins suppressed macrophage pyroptosis by targeting KEAP1/NRF2 interaction, and provided reliable data on the underlying mechanism of natural antioxidants to protect against atherosclerosis.
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spelling pubmed-95968752022-10-27 A novel anti-atherosclerotic mechanism of quercetin: Competitive binding to KEAP1 via Arg483 to inhibit macrophage pyroptosis Luo, Xing Weng, Xiuzhu Bao, Xiaoyi Bai, Xiaoxuan Lv, Ying Zhang, Shan Chen, Yuwu Zhao, Chen Zeng, Ming Huang, Jianxin Xu, Biyi Johnson, Thomas W. White, Stephen J. Li, Ji Jia, Haibo Yu, Bo Redox Biol Research Paper Natural antioxidants represented by quercetin have been documented to be effective against atherosclerosis. However, the related mechanisms remain largely unclear. In this study, we identified a novel anti-atherosclerotic mechanism of quercetin inhibiting macrophage pyroptosis by activating NRF2 through binding to the Arg483 site of KEAP1 competitively. In ApoE(−/−) mice fed with high fat diet, quercetin administration attenuated atherosclerosis progression by reducing oxidative stress level and suppressing macrophage pyroptosis. At the cellular level, quercetin suppressed THP-1 macrophage pyroptosis induced by ox-LDL, demonstrated by inhibiting NLRP3 inflammasome activation and reducing ROS level, while these effects were reversed by the specific NRF2 inhibitor (ML385). Mechanistically, quercetin promoted NRF2 to dissociate from KEAP1, enhanced NRF2 nuclear translocation as well as transcription of downstream antioxidant protein. Molecular docking results suggested that quercetin could bind with KEAP1 at Arg415 and Arg483. In order to verify the binding sites, KEAP1 mutated at Arg415 and Arg483 to Ser (R415S and R483S) was transfected into THP-1 macrophages, and the anti-pyroptotic effect of quercetin was abrogated by Arg483 mutation, but not Arg415 mutation. Furthermore, after administration of adeno associated viral vector (AAV) with AAV-KEAP1-R483S, the anti-atherosclerotic effects of quercetin were almost abolished in ApoE(−/−) mice. These findings proved quercetins suppressed macrophage pyroptosis by targeting KEAP1/NRF2 interaction, and provided reliable data on the underlying mechanism of natural antioxidants to protect against atherosclerosis. Elsevier 2022-10-14 /pmc/articles/PMC9596875/ /pubmed/36274522 http://dx.doi.org/10.1016/j.redox.2022.102511 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Luo, Xing
Weng, Xiuzhu
Bao, Xiaoyi
Bai, Xiaoxuan
Lv, Ying
Zhang, Shan
Chen, Yuwu
Zhao, Chen
Zeng, Ming
Huang, Jianxin
Xu, Biyi
Johnson, Thomas W.
White, Stephen J.
Li, Ji
Jia, Haibo
Yu, Bo
A novel anti-atherosclerotic mechanism of quercetin: Competitive binding to KEAP1 via Arg483 to inhibit macrophage pyroptosis
title A novel anti-atherosclerotic mechanism of quercetin: Competitive binding to KEAP1 via Arg483 to inhibit macrophage pyroptosis
title_full A novel anti-atherosclerotic mechanism of quercetin: Competitive binding to KEAP1 via Arg483 to inhibit macrophage pyroptosis
title_fullStr A novel anti-atherosclerotic mechanism of quercetin: Competitive binding to KEAP1 via Arg483 to inhibit macrophage pyroptosis
title_full_unstemmed A novel anti-atherosclerotic mechanism of quercetin: Competitive binding to KEAP1 via Arg483 to inhibit macrophage pyroptosis
title_short A novel anti-atherosclerotic mechanism of quercetin: Competitive binding to KEAP1 via Arg483 to inhibit macrophage pyroptosis
title_sort novel anti-atherosclerotic mechanism of quercetin: competitive binding to keap1 via arg483 to inhibit macrophage pyroptosis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9596875/
https://www.ncbi.nlm.nih.gov/pubmed/36274522
http://dx.doi.org/10.1016/j.redox.2022.102511
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