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A JNK-mediated autophagy pathway that triggers c-IAP degradation and necroptosis for anticancer chemotherapy

Killing cancer cells through the induction of apoptosis is one of the main mechanisms of chemotherapy. However, numerous cancer cells have primary or acquired apoptosis resistance, resulting in chemoresistance. In this study, using a novel chalcone derivative chalcone-24 (Chal-24), we identified a n...

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Autores principales: He, Weiyang, Wang, Qiong, Srinivasan, Balasubramanian, Xu, Jennings, Padilla, Mabel T., Li, Zi, Wang, Xia, Liu, Yushi, Gou, Xin, Shen, Han-Ming, Xing, Chengguo, Lin, Yong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3912228/
https://www.ncbi.nlm.nih.gov/pubmed/23831571
http://dx.doi.org/10.1038/onc.2013.256
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author He, Weiyang
Wang, Qiong
Srinivasan, Balasubramanian
Xu, Jennings
Padilla, Mabel T.
Li, Zi
Wang, Xia
Liu, Yushi
Gou, Xin
Shen, Han-Ming
Xing, Chengguo
Lin, Yong
author_facet He, Weiyang
Wang, Qiong
Srinivasan, Balasubramanian
Xu, Jennings
Padilla, Mabel T.
Li, Zi
Wang, Xia
Liu, Yushi
Gou, Xin
Shen, Han-Ming
Xing, Chengguo
Lin, Yong
author_sort He, Weiyang
collection PubMed
description Killing cancer cells through the induction of apoptosis is one of the main mechanisms of chemotherapy. However, numerous cancer cells have primary or acquired apoptosis resistance, resulting in chemoresistance. In this study, using a novel chalcone derivative chalcone-24 (Chal-24), we identified a novel anticancer mechanism through autophagy-mediated necroptosis (RIP1- and RIP3-dependent necrosis). Chal-24 potently killed different cancer cells with induction of necrotic cellular morphology while causing no detectable caspase activation. Blocking the necroptosis pathway with either necrostatin-1 or by knockdown of RIP1 and RIP3 effectively blocked the cytotoxicity of Chal-24, suggesting that Chal-24-induced cell death is associated with necroptosis. Chal-24 robustly activated JNK and ERK and blockage of which effectively suppressed Chal-24-induced cytotoxicity. In addition, Chal-24 strongly induced autophagy that is dependent on JNK-mediated phosphorylation of Bcl-2 and Bcl-xL and dissociation of Bcl-2 or Bcl-xL from Beclin1. Importantly, suppression of autophagy, with either pharmacological inhibitors or siRNAs targeting the essential autophagy components ATG7 and Beclin1, effectively attenuated Chal-24-induced cell death. Furthermore, we found that autophagy activation resulted in c-IAP1 and c-IAP2 degradation and formation of the Ripoptosome that contributes to necroptosis. These results thus establish a novel mechanism for killing cancer cells that involves autophagy-mediated necroptosis, which may be employed for overcoming chemoresistance.
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spelling pubmed-39122282014-12-05 A JNK-mediated autophagy pathway that triggers c-IAP degradation and necroptosis for anticancer chemotherapy He, Weiyang Wang, Qiong Srinivasan, Balasubramanian Xu, Jennings Padilla, Mabel T. Li, Zi Wang, Xia Liu, Yushi Gou, Xin Shen, Han-Ming Xing, Chengguo Lin, Yong Oncogene Article Killing cancer cells through the induction of apoptosis is one of the main mechanisms of chemotherapy. However, numerous cancer cells have primary or acquired apoptosis resistance, resulting in chemoresistance. In this study, using a novel chalcone derivative chalcone-24 (Chal-24), we identified a novel anticancer mechanism through autophagy-mediated necroptosis (RIP1- and RIP3-dependent necrosis). Chal-24 potently killed different cancer cells with induction of necrotic cellular morphology while causing no detectable caspase activation. Blocking the necroptosis pathway with either necrostatin-1 or by knockdown of RIP1 and RIP3 effectively blocked the cytotoxicity of Chal-24, suggesting that Chal-24-induced cell death is associated with necroptosis. Chal-24 robustly activated JNK and ERK and blockage of which effectively suppressed Chal-24-induced cytotoxicity. In addition, Chal-24 strongly induced autophagy that is dependent on JNK-mediated phosphorylation of Bcl-2 and Bcl-xL and dissociation of Bcl-2 or Bcl-xL from Beclin1. Importantly, suppression of autophagy, with either pharmacological inhibitors or siRNAs targeting the essential autophagy components ATG7 and Beclin1, effectively attenuated Chal-24-induced cell death. Furthermore, we found that autophagy activation resulted in c-IAP1 and c-IAP2 degradation and formation of the Ripoptosome that contributes to necroptosis. These results thus establish a novel mechanism for killing cancer cells that involves autophagy-mediated necroptosis, which may be employed for overcoming chemoresistance. 2013-07-08 2014-06-05 /pmc/articles/PMC3912228/ /pubmed/23831571 http://dx.doi.org/10.1038/onc.2013.256 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
He, Weiyang
Wang, Qiong
Srinivasan, Balasubramanian
Xu, Jennings
Padilla, Mabel T.
Li, Zi
Wang, Xia
Liu, Yushi
Gou, Xin
Shen, Han-Ming
Xing, Chengguo
Lin, Yong
A JNK-mediated autophagy pathway that triggers c-IAP degradation and necroptosis for anticancer chemotherapy
title A JNK-mediated autophagy pathway that triggers c-IAP degradation and necroptosis for anticancer chemotherapy
title_full A JNK-mediated autophagy pathway that triggers c-IAP degradation and necroptosis for anticancer chemotherapy
title_fullStr A JNK-mediated autophagy pathway that triggers c-IAP degradation and necroptosis for anticancer chemotherapy
title_full_unstemmed A JNK-mediated autophagy pathway that triggers c-IAP degradation and necroptosis for anticancer chemotherapy
title_short A JNK-mediated autophagy pathway that triggers c-IAP degradation and necroptosis for anticancer chemotherapy
title_sort jnk-mediated autophagy pathway that triggers c-iap degradation and necroptosis for anticancer chemotherapy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3912228/
https://www.ncbi.nlm.nih.gov/pubmed/23831571
http://dx.doi.org/10.1038/onc.2013.256
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