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18beta-glycyrrhetinic acid induces ROS-mediated apoptosis to ameliorate hepatic fibrosis by targeting PRDX1/2 in activated HSCs
Hepatic stellate cells (HSCs) are essential drivers of fibrogenesis. Inducing activated-HSC apoptosis is a promising strategy for treating hepatic fibrosis. 18beta-glycyrrhetinic acid (18β-GA) is a natural compound that exists widely in herbal medicines, such as Glycyrrhiza uralensis Fisch, which is...
Autores principales: | , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Xi'an Jiaotong University
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9463498/ https://www.ncbi.nlm.nih.gov/pubmed/36105163 http://dx.doi.org/10.1016/j.jpha.2022.06.001 |
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author | Zhang, Qian Luo, Piao Zheng, Liuhai Chen, Jiayun Zhang, Junzhe Tang, Huan Liu, Dandan He, Xueling Shi, Qiaoli Gu, Liwei Li, Jiahao Guo, Qiuyan Yang, Chuanbin Wong, Yin Kwan Xia, Fei Wang, Jigang |
author_facet | Zhang, Qian Luo, Piao Zheng, Liuhai Chen, Jiayun Zhang, Junzhe Tang, Huan Liu, Dandan He, Xueling Shi, Qiaoli Gu, Liwei Li, Jiahao Guo, Qiuyan Yang, Chuanbin Wong, Yin Kwan Xia, Fei Wang, Jigang |
author_sort | Zhang, Qian |
collection | PubMed |
description | Hepatic stellate cells (HSCs) are essential drivers of fibrogenesis. Inducing activated-HSC apoptosis is a promising strategy for treating hepatic fibrosis. 18beta-glycyrrhetinic acid (18β-GA) is a natural compound that exists widely in herbal medicines, such as Glycyrrhiza uralensis Fisch, which is used for treating multiple liver diseases, especially in Asia. In the present study, we demonstrated that 18β-GA decreased hepatic fibrosis by inducing the apoptosis in activated HSCs. 18β-GA inhibited the expression of α-smooth muscle actin and collagen type I alpha-1. Using a chemoproteomic approach derived from activity-based protein profiling, together with cellular thermal shift assay and surface plasmon resonance, we found that 18β-GA covalently targeted peroxiredoxin 1 (PRDX1) and peroxiredoxin 2 (PRDX2) proteins via binding to active cysteine residues and thereby inhibited their enzymatic activities. 18β-GA induced the elevation of reactive oxygen species (ROS), resulting in the apoptosis of activated HSCs. PRDX1 knockdown also led to ROS-mediated apoptosis in activated HSCs. Collectively, our findings revealed the target proteins and molecular mechanisms of 18β-GA in ameliorating hepatic fibrosis, highlighting the future development of 18β-GA as a novel therapeutic drug for hepatic fibrosis. |
format | Online Article Text |
id | pubmed-9463498 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | Xi'an Jiaotong University |
record_format | MEDLINE/PubMed |
spelling | pubmed-94634982022-09-13 18beta-glycyrrhetinic acid induces ROS-mediated apoptosis to ameliorate hepatic fibrosis by targeting PRDX1/2 in activated HSCs Zhang, Qian Luo, Piao Zheng, Liuhai Chen, Jiayun Zhang, Junzhe Tang, Huan Liu, Dandan He, Xueling Shi, Qiaoli Gu, Liwei Li, Jiahao Guo, Qiuyan Yang, Chuanbin Wong, Yin Kwan Xia, Fei Wang, Jigang J Pharm Anal Original Article Hepatic stellate cells (HSCs) are essential drivers of fibrogenesis. Inducing activated-HSC apoptosis is a promising strategy for treating hepatic fibrosis. 18beta-glycyrrhetinic acid (18β-GA) is a natural compound that exists widely in herbal medicines, such as Glycyrrhiza uralensis Fisch, which is used for treating multiple liver diseases, especially in Asia. In the present study, we demonstrated that 18β-GA decreased hepatic fibrosis by inducing the apoptosis in activated HSCs. 18β-GA inhibited the expression of α-smooth muscle actin and collagen type I alpha-1. Using a chemoproteomic approach derived from activity-based protein profiling, together with cellular thermal shift assay and surface plasmon resonance, we found that 18β-GA covalently targeted peroxiredoxin 1 (PRDX1) and peroxiredoxin 2 (PRDX2) proteins via binding to active cysteine residues and thereby inhibited their enzymatic activities. 18β-GA induced the elevation of reactive oxygen species (ROS), resulting in the apoptosis of activated HSCs. PRDX1 knockdown also led to ROS-mediated apoptosis in activated HSCs. Collectively, our findings revealed the target proteins and molecular mechanisms of 18β-GA in ameliorating hepatic fibrosis, highlighting the future development of 18β-GA as a novel therapeutic drug for hepatic fibrosis. Xi'an Jiaotong University 2022-08 2022-06-08 /pmc/articles/PMC9463498/ /pubmed/36105163 http://dx.doi.org/10.1016/j.jpha.2022.06.001 Text en © 2022 The Author(s) 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 | Original Article Zhang, Qian Luo, Piao Zheng, Liuhai Chen, Jiayun Zhang, Junzhe Tang, Huan Liu, Dandan He, Xueling Shi, Qiaoli Gu, Liwei Li, Jiahao Guo, Qiuyan Yang, Chuanbin Wong, Yin Kwan Xia, Fei Wang, Jigang 18beta-glycyrrhetinic acid induces ROS-mediated apoptosis to ameliorate hepatic fibrosis by targeting PRDX1/2 in activated HSCs |
title | 18beta-glycyrrhetinic acid induces ROS-mediated apoptosis to ameliorate hepatic fibrosis by targeting PRDX1/2 in activated HSCs |
title_full | 18beta-glycyrrhetinic acid induces ROS-mediated apoptosis to ameliorate hepatic fibrosis by targeting PRDX1/2 in activated HSCs |
title_fullStr | 18beta-glycyrrhetinic acid induces ROS-mediated apoptosis to ameliorate hepatic fibrosis by targeting PRDX1/2 in activated HSCs |
title_full_unstemmed | 18beta-glycyrrhetinic acid induces ROS-mediated apoptosis to ameliorate hepatic fibrosis by targeting PRDX1/2 in activated HSCs |
title_short | 18beta-glycyrrhetinic acid induces ROS-mediated apoptosis to ameliorate hepatic fibrosis by targeting PRDX1/2 in activated HSCs |
title_sort | 18beta-glycyrrhetinic acid induces ros-mediated apoptosis to ameliorate hepatic fibrosis by targeting prdx1/2 in activated hscs |
topic | Original Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9463498/ https://www.ncbi.nlm.nih.gov/pubmed/36105163 http://dx.doi.org/10.1016/j.jpha.2022.06.001 |
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