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Synergistic anticancer effect of cisplatin and Chal-24 combination through IAP and c-FLIP(L) degradation, Ripoptosome formation and autophagy-mediated apoptosis

Drug resistance is a major hurdle in anticancer chemotherapy. Combined therapy using drugs with distinct mechanisms of function may increase anticancer efficacy. We have recently identified the novel chalcone derivative, chalcone-24 (Chal-24), as a potential therapeutic that kills cancer cells throu...

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Autores principales: Shi, Shaoqing, Wang, Qiong, Xu, Jennings, Jang, Jun-Ho, Padilla, Mabel T., Nyunoya, Toru, Xing, Chengguo, Zhang, Lin, Lin, Yong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4359321/
https://www.ncbi.nlm.nih.gov/pubmed/25682199
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author Shi, Shaoqing
Wang, Qiong
Xu, Jennings
Jang, Jun-Ho
Padilla, Mabel T.
Nyunoya, Toru
Xing, Chengguo
Zhang, Lin
Lin, Yong
author_facet Shi, Shaoqing
Wang, Qiong
Xu, Jennings
Jang, Jun-Ho
Padilla, Mabel T.
Nyunoya, Toru
Xing, Chengguo
Zhang, Lin
Lin, Yong
author_sort Shi, Shaoqing
collection PubMed
description Drug resistance is a major hurdle in anticancer chemotherapy. Combined therapy using drugs with distinct mechanisms of function may increase anticancer efficacy. We have recently identified the novel chalcone derivative, chalcone-24 (Chal-24), as a potential therapeutic that kills cancer cells through activation of an autophagy-mediated necroptosis pathway. In this report, we investigated if Chal-24 can be combined with the frontline genotoxic anticancer drug, cisplatin for cancer therapy. The combination of Chal-24 and cisplatin synergistically induced apoptotic cytotoxicity in lung cancer cell lines, which was dependent on Chal-24-induced autophagy. While cisplatin slightly potentiated the JNK/Bcl2/Beclin1 pathway for autophagy activation, its combination with Chal-24 strongly triggered proteasomal degradation of the cellular inhibitor of apoptosis proteins (c-IAPs) and formation of the Ripoptosome complex that contains RIP1, FADD and caspase 8. Furthermore, the cisplatin and Chal-24 combination induced dramatic degradation of cellular FLICE (FADD-like IL-1β-converting enzyme)-inhibitory protein large (cFLIP(L)) which suppresses Ripoptosome-mediated apoptosis activation. These results establish a novel mechanism for potentiation of anticancer activity with the combination of Chal-24 and cisplatin: to enhance apoptosis signaling through Ripoptosome formation and to release the apoptosis brake through c-FLIP(L) degradation. Altogether, our work suggests that the combination of Chal-24 and cisplatin could be employed to improve chemotherapy efficacy.
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spelling pubmed-43593212015-03-26 Synergistic anticancer effect of cisplatin and Chal-24 combination through IAP and c-FLIP(L) degradation, Ripoptosome formation and autophagy-mediated apoptosis Shi, Shaoqing Wang, Qiong Xu, Jennings Jang, Jun-Ho Padilla, Mabel T. Nyunoya, Toru Xing, Chengguo Zhang, Lin Lin, Yong Oncotarget Research Paper Drug resistance is a major hurdle in anticancer chemotherapy. Combined therapy using drugs with distinct mechanisms of function may increase anticancer efficacy. We have recently identified the novel chalcone derivative, chalcone-24 (Chal-24), as a potential therapeutic that kills cancer cells through activation of an autophagy-mediated necroptosis pathway. In this report, we investigated if Chal-24 can be combined with the frontline genotoxic anticancer drug, cisplatin for cancer therapy. The combination of Chal-24 and cisplatin synergistically induced apoptotic cytotoxicity in lung cancer cell lines, which was dependent on Chal-24-induced autophagy. While cisplatin slightly potentiated the JNK/Bcl2/Beclin1 pathway for autophagy activation, its combination with Chal-24 strongly triggered proteasomal degradation of the cellular inhibitor of apoptosis proteins (c-IAPs) and formation of the Ripoptosome complex that contains RIP1, FADD and caspase 8. Furthermore, the cisplatin and Chal-24 combination induced dramatic degradation of cellular FLICE (FADD-like IL-1β-converting enzyme)-inhibitory protein large (cFLIP(L)) which suppresses Ripoptosome-mediated apoptosis activation. These results establish a novel mechanism for potentiation of anticancer activity with the combination of Chal-24 and cisplatin: to enhance apoptosis signaling through Ripoptosome formation and to release the apoptosis brake through c-FLIP(L) degradation. Altogether, our work suggests that the combination of Chal-24 and cisplatin could be employed to improve chemotherapy efficacy. Impact Journals LLC 2015-02-12 /pmc/articles/PMC4359321/ /pubmed/25682199 Text en Copyright: © 2015 Shi et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited
spellingShingle Research Paper
Shi, Shaoqing
Wang, Qiong
Xu, Jennings
Jang, Jun-Ho
Padilla, Mabel T.
Nyunoya, Toru
Xing, Chengguo
Zhang, Lin
Lin, Yong
Synergistic anticancer effect of cisplatin and Chal-24 combination through IAP and c-FLIP(L) degradation, Ripoptosome formation and autophagy-mediated apoptosis
title Synergistic anticancer effect of cisplatin and Chal-24 combination through IAP and c-FLIP(L) degradation, Ripoptosome formation and autophagy-mediated apoptosis
title_full Synergistic anticancer effect of cisplatin and Chal-24 combination through IAP and c-FLIP(L) degradation, Ripoptosome formation and autophagy-mediated apoptosis
title_fullStr Synergistic anticancer effect of cisplatin and Chal-24 combination through IAP and c-FLIP(L) degradation, Ripoptosome formation and autophagy-mediated apoptosis
title_full_unstemmed Synergistic anticancer effect of cisplatin and Chal-24 combination through IAP and c-FLIP(L) degradation, Ripoptosome formation and autophagy-mediated apoptosis
title_short Synergistic anticancer effect of cisplatin and Chal-24 combination through IAP and c-FLIP(L) degradation, Ripoptosome formation and autophagy-mediated apoptosis
title_sort synergistic anticancer effect of cisplatin and chal-24 combination through iap and c-flip(l) degradation, ripoptosome formation and autophagy-mediated apoptosis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4359321/
https://www.ncbi.nlm.nih.gov/pubmed/25682199
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