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Oxidation resistance 1 is a novel senolytic target

The selective depletion of senescent cells (SCs) by small molecules, termed senolytic agents, is a promising therapeutic approach for treating age‐related diseases and chemotherapy‐ and radiotherapy‐induced side effects. Piperlongumine (PL) was recently identified as a novel senolytic agent. However...

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Autores principales: Zhang, Xin, Zhang, Suping, Liu, Xingui, Wang, Yingying, Chang, Jianhui, Zhang, Xuan, Mackintosh, Samuel G., Tackett, Alan J., He, Yonghan, Lv, Dongwen, Laberge, Remi‐Martin, Campisi, Judith, Wang, Jianrong, Zheng, Guangrong, Zhou, Daohong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6052462/
https://www.ncbi.nlm.nih.gov/pubmed/29766639
http://dx.doi.org/10.1111/acel.12780
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author Zhang, Xin
Zhang, Suping
Liu, Xingui
Wang, Yingying
Chang, Jianhui
Zhang, Xuan
Mackintosh, Samuel G.
Tackett, Alan J.
He, Yonghan
Lv, Dongwen
Laberge, Remi‐Martin
Campisi, Judith
Wang, Jianrong
Zheng, Guangrong
Zhou, Daohong
author_facet Zhang, Xin
Zhang, Suping
Liu, Xingui
Wang, Yingying
Chang, Jianhui
Zhang, Xuan
Mackintosh, Samuel G.
Tackett, Alan J.
He, Yonghan
Lv, Dongwen
Laberge, Remi‐Martin
Campisi, Judith
Wang, Jianrong
Zheng, Guangrong
Zhou, Daohong
author_sort Zhang, Xin
collection PubMed
description The selective depletion of senescent cells (SCs) by small molecules, termed senolytic agents, is a promising therapeutic approach for treating age‐related diseases and chemotherapy‐ and radiotherapy‐induced side effects. Piperlongumine (PL) was recently identified as a novel senolytic agent. However, its mechanism of action and molecular targets in SCs was unknown and thus was investigated. Specifically, we used a PL‐based chemical probe to pull‐down PL‐binding proteins from live cells and then mass spectrometry‐based proteomic analysis to identify potential molecular targets of PL in SCs. One prominent target was oxidation resistance 1 (OXR1), an important antioxidant protein that regulates the expression of a variety of antioxidant enzymes. We found that OXR1 was upregulated in senescent human WI38 fibroblasts. PL bound to OXR1 directly and induced its degradation through the ubiquitin‐proteasome system in an SC‐specific manner. The knockdown of OXR1 expression by RNA interference significantly increased the production of reactive oxygen species in SCs in conjunction with the downregulation of antioxidant enzymes such as heme oxygenase 1, glutathione peroxidase 2, and catalase, but these effects were much less significant when OXR1 was knocked down in non‐SCs. More importantly, knocking down OXR1 selectively induced apoptosis in SCs and sensitized the cells to oxidative stress caused by hydrogen peroxide. These findings provide new insights into the mechanism by which SCs are highly resistant to oxidative stress and suggest that OXR1 is a novel senolytic target that can be further exploited for the development of new senolytic agents.
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spelling pubmed-60524622018-08-01 Oxidation resistance 1 is a novel senolytic target Zhang, Xin Zhang, Suping Liu, Xingui Wang, Yingying Chang, Jianhui Zhang, Xuan Mackintosh, Samuel G. Tackett, Alan J. He, Yonghan Lv, Dongwen Laberge, Remi‐Martin Campisi, Judith Wang, Jianrong Zheng, Guangrong Zhou, Daohong Aging Cell Original Articles The selective depletion of senescent cells (SCs) by small molecules, termed senolytic agents, is a promising therapeutic approach for treating age‐related diseases and chemotherapy‐ and radiotherapy‐induced side effects. Piperlongumine (PL) was recently identified as a novel senolytic agent. However, its mechanism of action and molecular targets in SCs was unknown and thus was investigated. Specifically, we used a PL‐based chemical probe to pull‐down PL‐binding proteins from live cells and then mass spectrometry‐based proteomic analysis to identify potential molecular targets of PL in SCs. One prominent target was oxidation resistance 1 (OXR1), an important antioxidant protein that regulates the expression of a variety of antioxidant enzymes. We found that OXR1 was upregulated in senescent human WI38 fibroblasts. PL bound to OXR1 directly and induced its degradation through the ubiquitin‐proteasome system in an SC‐specific manner. The knockdown of OXR1 expression by RNA interference significantly increased the production of reactive oxygen species in SCs in conjunction with the downregulation of antioxidant enzymes such as heme oxygenase 1, glutathione peroxidase 2, and catalase, but these effects were much less significant when OXR1 was knocked down in non‐SCs. More importantly, knocking down OXR1 selectively induced apoptosis in SCs and sensitized the cells to oxidative stress caused by hydrogen peroxide. These findings provide new insights into the mechanism by which SCs are highly resistant to oxidative stress and suggest that OXR1 is a novel senolytic target that can be further exploited for the development of new senolytic agents. John Wiley and Sons Inc. 2018-05-15 2018-08 /pmc/articles/PMC6052462/ /pubmed/29766639 http://dx.doi.org/10.1111/acel.12780 Text en © 2018 The Authors. Aging Cell published by the Anatomical Society and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Zhang, Xin
Zhang, Suping
Liu, Xingui
Wang, Yingying
Chang, Jianhui
Zhang, Xuan
Mackintosh, Samuel G.
Tackett, Alan J.
He, Yonghan
Lv, Dongwen
Laberge, Remi‐Martin
Campisi, Judith
Wang, Jianrong
Zheng, Guangrong
Zhou, Daohong
Oxidation resistance 1 is a novel senolytic target
title Oxidation resistance 1 is a novel senolytic target
title_full Oxidation resistance 1 is a novel senolytic target
title_fullStr Oxidation resistance 1 is a novel senolytic target
title_full_unstemmed Oxidation resistance 1 is a novel senolytic target
title_short Oxidation resistance 1 is a novel senolytic target
title_sort oxidation resistance 1 is a novel senolytic target
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6052462/
https://www.ncbi.nlm.nih.gov/pubmed/29766639
http://dx.doi.org/10.1111/acel.12780
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