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Evaluation of Zinc (II) chelators for inhibiting p53-mediated apoptosis

In a previous study, we reported that sodium orthovanadate (vanadate) is the first known inhibitor that is capable of protecting mice from death from the radiation-induced gastrointestinal syndrome via its ability to block both transcription-dependent and transcription-independent p53 apoptotic path...

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Autores principales: Morita, Akinori, Ariyasu, Shinya, Ohya, Soichiro, Takahashi, Ippei, Wang, Bing, Tanaka, Kaoru, Uchida, Takatoshi, Okazaki, Haruna, Hanaya, Kengo, Enomoto, Atsushi, Nenoi, Mitsuru, Ikekita, Masahiko, Aoki, Shin, Hosoi, Yoshio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3926839/
https://www.ncbi.nlm.nih.gov/pubmed/24280450
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author Morita, Akinori
Ariyasu, Shinya
Ohya, Soichiro
Takahashi, Ippei
Wang, Bing
Tanaka, Kaoru
Uchida, Takatoshi
Okazaki, Haruna
Hanaya, Kengo
Enomoto, Atsushi
Nenoi, Mitsuru
Ikekita, Masahiko
Aoki, Shin
Hosoi, Yoshio
author_facet Morita, Akinori
Ariyasu, Shinya
Ohya, Soichiro
Takahashi, Ippei
Wang, Bing
Tanaka, Kaoru
Uchida, Takatoshi
Okazaki, Haruna
Hanaya, Kengo
Enomoto, Atsushi
Nenoi, Mitsuru
Ikekita, Masahiko
Aoki, Shin
Hosoi, Yoshio
author_sort Morita, Akinori
collection PubMed
description In a previous study, we reported that sodium orthovanadate (vanadate) is the first known inhibitor that is capable of protecting mice from death from the radiation-induced gastrointestinal syndrome via its ability to block both transcription-dependent and transcription-independent p53 apoptotic pathways. In this paper, we report that vanadate has a unique activity for inducing the denaturation of p53 relative to other known radioprotective p53 inhibitors, pifithrin-α (PFTα) and pifithrin-µ (PFTµ). This potent radioprotective effect of vanadate prompted us to undertake a more extensive search for p53 inhibitors that can induce p53 denaturation. Based on the fact that p53 denaturation can be induced by the dissociation of a zinc ion, which is used as a structural factor of p53, we screened some zinc (II) chelators for the suppression of the DNA binding activity of p53 in vitro and the inhibition of radiation-induced p53-dependent apoptosis in MOLT-4 cells. The findings indicate that two of five zinc (II) chelators also suppressed apoptosis. Among the inhibitors tested, Bispicen (N,N'-Bis(2-pyridylmethyl)-1,2-ethanediamine) had the highest inhibition activity. A mechanistic study using cells bearing different p53 status or functions (i.e., p53-knockdown MOLT-4 transformant and its revertants, p53 mutant cells, p53-null cells), and p53-independent apoptotic stimuli revealed that the suppressive effect of Bispicen on apoptosis is specifically mediated through p53. Moreover, Bispicen, similar to vanadate, induces the denaturation of p53 as well as the blocking of both transcription-dependent and -independent apoptotic pathways. Our findings indicate that the use of zinc (II) chelators represent a new approach for protecting against radiation-induced p53-dependent apoptosis through the inhibition of p53-dependent apoptotic pathways.
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spelling pubmed-39268392014-02-18 Evaluation of Zinc (II) chelators for inhibiting p53-mediated apoptosis Morita, Akinori Ariyasu, Shinya Ohya, Soichiro Takahashi, Ippei Wang, Bing Tanaka, Kaoru Uchida, Takatoshi Okazaki, Haruna Hanaya, Kengo Enomoto, Atsushi Nenoi, Mitsuru Ikekita, Masahiko Aoki, Shin Hosoi, Yoshio Oncotarget Research Paper In a previous study, we reported that sodium orthovanadate (vanadate) is the first known inhibitor that is capable of protecting mice from death from the radiation-induced gastrointestinal syndrome via its ability to block both transcription-dependent and transcription-independent p53 apoptotic pathways. In this paper, we report that vanadate has a unique activity for inducing the denaturation of p53 relative to other known radioprotective p53 inhibitors, pifithrin-α (PFTα) and pifithrin-µ (PFTµ). This potent radioprotective effect of vanadate prompted us to undertake a more extensive search for p53 inhibitors that can induce p53 denaturation. Based on the fact that p53 denaturation can be induced by the dissociation of a zinc ion, which is used as a structural factor of p53, we screened some zinc (II) chelators for the suppression of the DNA binding activity of p53 in vitro and the inhibition of radiation-induced p53-dependent apoptosis in MOLT-4 cells. The findings indicate that two of five zinc (II) chelators also suppressed apoptosis. Among the inhibitors tested, Bispicen (N,N'-Bis(2-pyridylmethyl)-1,2-ethanediamine) had the highest inhibition activity. A mechanistic study using cells bearing different p53 status or functions (i.e., p53-knockdown MOLT-4 transformant and its revertants, p53 mutant cells, p53-null cells), and p53-independent apoptotic stimuli revealed that the suppressive effect of Bispicen on apoptosis is specifically mediated through p53. Moreover, Bispicen, similar to vanadate, induces the denaturation of p53 as well as the blocking of both transcription-dependent and -independent apoptotic pathways. Our findings indicate that the use of zinc (II) chelators represent a new approach for protecting against radiation-induced p53-dependent apoptosis through the inhibition of p53-dependent apoptotic pathways. Impact Journals LLC 2013-11-24 /pmc/articles/PMC3926839/ /pubmed/24280450 Text en Copyright: © 2013 Morita 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
Morita, Akinori
Ariyasu, Shinya
Ohya, Soichiro
Takahashi, Ippei
Wang, Bing
Tanaka, Kaoru
Uchida, Takatoshi
Okazaki, Haruna
Hanaya, Kengo
Enomoto, Atsushi
Nenoi, Mitsuru
Ikekita, Masahiko
Aoki, Shin
Hosoi, Yoshio
Evaluation of Zinc (II) chelators for inhibiting p53-mediated apoptosis
title Evaluation of Zinc (II) chelators for inhibiting p53-mediated apoptosis
title_full Evaluation of Zinc (II) chelators for inhibiting p53-mediated apoptosis
title_fullStr Evaluation of Zinc (II) chelators for inhibiting p53-mediated apoptosis
title_full_unstemmed Evaluation of Zinc (II) chelators for inhibiting p53-mediated apoptosis
title_short Evaluation of Zinc (II) chelators for inhibiting p53-mediated apoptosis
title_sort evaluation of zinc (ii) chelators for inhibiting p53-mediated apoptosis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3926839/
https://www.ncbi.nlm.nih.gov/pubmed/24280450
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