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Mitochondrial p53 phosphorylation induces Bak-mediated and caspase-independent cell death

Chemoresistance in cancer has previously been attributed to gene mutations or deficiency. Caspase mutations or Bax deficiency can lead to resistance to cancer drugs. We recently demonstrated that Bak initiates a caspase/Bax-independent cell death pathway. We show that Plumbagin (PL) (5-hydroxy-2-met...

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Autores principales: Wang, Jinjing, Guo, Wenhao, Zhou, Hang, Luo, Na, Nie, Chunlai, Zhao, Xinyu, Yuan, Zhu, Liu, Xinyu, Wei, Yuquan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4627301/
https://www.ncbi.nlm.nih.gov/pubmed/25980443
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author Wang, Jinjing
Guo, Wenhao
Zhou, Hang
Luo, Na
Nie, Chunlai
Zhao, Xinyu
Yuan, Zhu
Liu, Xinyu
Wei, Yuquan
author_facet Wang, Jinjing
Guo, Wenhao
Zhou, Hang
Luo, Na
Nie, Chunlai
Zhao, Xinyu
Yuan, Zhu
Liu, Xinyu
Wei, Yuquan
author_sort Wang, Jinjing
collection PubMed
description Chemoresistance in cancer has previously been attributed to gene mutations or deficiency. Caspase mutations or Bax deficiency can lead to resistance to cancer drugs. We recently demonstrated that Bak initiates a caspase/Bax-independent cell death pathway. We show that Plumbagin (PL) (5-hydroxy-2-methyl-1,4-napthoquinone), a medicinal plant-derived naphthoquinone that is known to have anti-tumor activity in a variety of models, induces caspase-independent cell death in HCT116 Bax knockout (KO) or MCF-7 Bax knockdown (KD) cells that express wild-type (WT) Bak. The re-expression of Bax in HCT116 Bax KO cells fails to enhance the PL-induced cell death. Additionally, Bak knockdown by shRNA efficiently attenuates PL-induced cell death. These results suggest that PL-induced cell death depends primarily on Bak, not Bax, in these cells. Further experimentation demonstrated that p53 Ser15 phosphorylation and mitochondrial translocation mediated Bak activation and subsequent cell death. Knockdown of p53 or a p53 Ser15 mutant significantly inhibited p53 mitochondrial translocation and cell death. Furthermore, we found that Akt mediated p53 phosphorylation and the subsequent mitochondrial accumulation. Taken together, our data elaborate the role of Bak in caspase/Bax-independent cell death and suggest that PL may be an effective agent for overcoming chemoresistance in cancer cells with dysfunctional caspases.
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spelling pubmed-46273012015-12-02 Mitochondrial p53 phosphorylation induces Bak-mediated and caspase-independent cell death Wang, Jinjing Guo, Wenhao Zhou, Hang Luo, Na Nie, Chunlai Zhao, Xinyu Yuan, Zhu Liu, Xinyu Wei, Yuquan Oncotarget Research Paper Chemoresistance in cancer has previously been attributed to gene mutations or deficiency. Caspase mutations or Bax deficiency can lead to resistance to cancer drugs. We recently demonstrated that Bak initiates a caspase/Bax-independent cell death pathway. We show that Plumbagin (PL) (5-hydroxy-2-methyl-1,4-napthoquinone), a medicinal plant-derived naphthoquinone that is known to have anti-tumor activity in a variety of models, induces caspase-independent cell death in HCT116 Bax knockout (KO) or MCF-7 Bax knockdown (KD) cells that express wild-type (WT) Bak. The re-expression of Bax in HCT116 Bax KO cells fails to enhance the PL-induced cell death. Additionally, Bak knockdown by shRNA efficiently attenuates PL-induced cell death. These results suggest that PL-induced cell death depends primarily on Bak, not Bax, in these cells. Further experimentation demonstrated that p53 Ser15 phosphorylation and mitochondrial translocation mediated Bak activation and subsequent cell death. Knockdown of p53 or a p53 Ser15 mutant significantly inhibited p53 mitochondrial translocation and cell death. Furthermore, we found that Akt mediated p53 phosphorylation and the subsequent mitochondrial accumulation. Taken together, our data elaborate the role of Bak in caspase/Bax-independent cell death and suggest that PL may be an effective agent for overcoming chemoresistance in cancer cells with dysfunctional caspases. Impact Journals LLC 2015-04-23 /pmc/articles/PMC4627301/ /pubmed/25980443 Text en Copyright: © 2015 Wang 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
Wang, Jinjing
Guo, Wenhao
Zhou, Hang
Luo, Na
Nie, Chunlai
Zhao, Xinyu
Yuan, Zhu
Liu, Xinyu
Wei, Yuquan
Mitochondrial p53 phosphorylation induces Bak-mediated and caspase-independent cell death
title Mitochondrial p53 phosphorylation induces Bak-mediated and caspase-independent cell death
title_full Mitochondrial p53 phosphorylation induces Bak-mediated and caspase-independent cell death
title_fullStr Mitochondrial p53 phosphorylation induces Bak-mediated and caspase-independent cell death
title_full_unstemmed Mitochondrial p53 phosphorylation induces Bak-mediated and caspase-independent cell death
title_short Mitochondrial p53 phosphorylation induces Bak-mediated and caspase-independent cell death
title_sort mitochondrial p53 phosphorylation induces bak-mediated and caspase-independent cell death
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4627301/
https://www.ncbi.nlm.nih.gov/pubmed/25980443
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