Cargando…

DMPK is a New Candidate Mediator of Tumor Suppressor p53-Dependent Cell Death

Tumor suppressor p53 plays an integral role in DNA-damage induced apoptosis, a biological process that protects against tumor progression. Cell shape dramatically changes when cells undergo apoptosis, which is associated with actomyosin contraction; however, it remains entirely elusive how p53 regul...

Descripción completa

Detalles Bibliográficos
Autores principales: Itoh, Katsuhiko, Ebata, Takahiro, Hirata, Hiroaki, Torii, Takeru, Sugimoto, Wataru, Onodera, Keigo, Nakajima, Wataru, Uehara, Ikuno, Okuzaki, Daisuke, Yamauchi, Shota, Budirahardja, Yemima, Nishikata, Takahito, Tanaka, Nobuyuki, Kawauchi, Keiko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6749264/
https://www.ncbi.nlm.nih.gov/pubmed/31480541
http://dx.doi.org/10.3390/molecules24173175
_version_ 1783452237363675136
author Itoh, Katsuhiko
Ebata, Takahiro
Hirata, Hiroaki
Torii, Takeru
Sugimoto, Wataru
Onodera, Keigo
Nakajima, Wataru
Uehara, Ikuno
Okuzaki, Daisuke
Yamauchi, Shota
Budirahardja, Yemima
Nishikata, Takahito
Tanaka, Nobuyuki
Kawauchi, Keiko
author_facet Itoh, Katsuhiko
Ebata, Takahiro
Hirata, Hiroaki
Torii, Takeru
Sugimoto, Wataru
Onodera, Keigo
Nakajima, Wataru
Uehara, Ikuno
Okuzaki, Daisuke
Yamauchi, Shota
Budirahardja, Yemima
Nishikata, Takahito
Tanaka, Nobuyuki
Kawauchi, Keiko
author_sort Itoh, Katsuhiko
collection PubMed
description Tumor suppressor p53 plays an integral role in DNA-damage induced apoptosis, a biological process that protects against tumor progression. Cell shape dramatically changes when cells undergo apoptosis, which is associated with actomyosin contraction; however, it remains entirely elusive how p53 regulates actomyosin contraction in response to DNA-damaging agents. To identify a novel p53 regulating gene encoding the modulator of myosin, we conducted DNA microarray analysis. We found that, in response to DNA-damaging agent doxorubicin, expression of myotonic dystrophy protein kinase (DMPK), which is known to upregulate actomyosin contraction, was increased in a p53-dependent manner. The promoter region of DMPK gene contained potential p53-binding sequences and its promoter activity was increased by overexpression of the p53 family protein p73, but, unexpectedly, not of p53. Furthermore, we found that doxorubicin treatment induced p73 expression, which was significantly attenuated by downregulation of p53. These data suggest that p53 induces expression of DMPK through upregulating p73 expression. Overexpression of DMPK promotes contraction of the actomyosin cortex, which leads to formation of membrane blebs, loss of cell adhesion, and concomitant caspase activation. Taken together, our results suggest the existence of p53-p73-DMPK axis which mediates DNA-damage induced actomyosin contraction at the cortex and concomitant cell death.
format Online
Article
Text
id pubmed-6749264
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-67492642019-09-27 DMPK is a New Candidate Mediator of Tumor Suppressor p53-Dependent Cell Death Itoh, Katsuhiko Ebata, Takahiro Hirata, Hiroaki Torii, Takeru Sugimoto, Wataru Onodera, Keigo Nakajima, Wataru Uehara, Ikuno Okuzaki, Daisuke Yamauchi, Shota Budirahardja, Yemima Nishikata, Takahito Tanaka, Nobuyuki Kawauchi, Keiko Molecules Article Tumor suppressor p53 plays an integral role in DNA-damage induced apoptosis, a biological process that protects against tumor progression. Cell shape dramatically changes when cells undergo apoptosis, which is associated with actomyosin contraction; however, it remains entirely elusive how p53 regulates actomyosin contraction in response to DNA-damaging agents. To identify a novel p53 regulating gene encoding the modulator of myosin, we conducted DNA microarray analysis. We found that, in response to DNA-damaging agent doxorubicin, expression of myotonic dystrophy protein kinase (DMPK), which is known to upregulate actomyosin contraction, was increased in a p53-dependent manner. The promoter region of DMPK gene contained potential p53-binding sequences and its promoter activity was increased by overexpression of the p53 family protein p73, but, unexpectedly, not of p53. Furthermore, we found that doxorubicin treatment induced p73 expression, which was significantly attenuated by downregulation of p53. These data suggest that p53 induces expression of DMPK through upregulating p73 expression. Overexpression of DMPK promotes contraction of the actomyosin cortex, which leads to formation of membrane blebs, loss of cell adhesion, and concomitant caspase activation. Taken together, our results suggest the existence of p53-p73-DMPK axis which mediates DNA-damage induced actomyosin contraction at the cortex and concomitant cell death. MDPI 2019-09-01 /pmc/articles/PMC6749264/ /pubmed/31480541 http://dx.doi.org/10.3390/molecules24173175 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Itoh, Katsuhiko
Ebata, Takahiro
Hirata, Hiroaki
Torii, Takeru
Sugimoto, Wataru
Onodera, Keigo
Nakajima, Wataru
Uehara, Ikuno
Okuzaki, Daisuke
Yamauchi, Shota
Budirahardja, Yemima
Nishikata, Takahito
Tanaka, Nobuyuki
Kawauchi, Keiko
DMPK is a New Candidate Mediator of Tumor Suppressor p53-Dependent Cell Death
title DMPK is a New Candidate Mediator of Tumor Suppressor p53-Dependent Cell Death
title_full DMPK is a New Candidate Mediator of Tumor Suppressor p53-Dependent Cell Death
title_fullStr DMPK is a New Candidate Mediator of Tumor Suppressor p53-Dependent Cell Death
title_full_unstemmed DMPK is a New Candidate Mediator of Tumor Suppressor p53-Dependent Cell Death
title_short DMPK is a New Candidate Mediator of Tumor Suppressor p53-Dependent Cell Death
title_sort dmpk is a new candidate mediator of tumor suppressor p53-dependent cell death
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6749264/
https://www.ncbi.nlm.nih.gov/pubmed/31480541
http://dx.doi.org/10.3390/molecules24173175
work_keys_str_mv AT itohkatsuhiko dmpkisanewcandidatemediatoroftumorsuppressorp53dependentcelldeath
AT ebatatakahiro dmpkisanewcandidatemediatoroftumorsuppressorp53dependentcelldeath
AT hiratahiroaki dmpkisanewcandidatemediatoroftumorsuppressorp53dependentcelldeath
AT toriitakeru dmpkisanewcandidatemediatoroftumorsuppressorp53dependentcelldeath
AT sugimotowataru dmpkisanewcandidatemediatoroftumorsuppressorp53dependentcelldeath
AT onoderakeigo dmpkisanewcandidatemediatoroftumorsuppressorp53dependentcelldeath
AT nakajimawataru dmpkisanewcandidatemediatoroftumorsuppressorp53dependentcelldeath
AT ueharaikuno dmpkisanewcandidatemediatoroftumorsuppressorp53dependentcelldeath
AT okuzakidaisuke dmpkisanewcandidatemediatoroftumorsuppressorp53dependentcelldeath
AT yamauchishota dmpkisanewcandidatemediatoroftumorsuppressorp53dependentcelldeath
AT budirahardjayemima dmpkisanewcandidatemediatoroftumorsuppressorp53dependentcelldeath
AT nishikatatakahito dmpkisanewcandidatemediatoroftumorsuppressorp53dependentcelldeath
AT tanakanobuyuki dmpkisanewcandidatemediatoroftumorsuppressorp53dependentcelldeath
AT kawauchikeiko dmpkisanewcandidatemediatoroftumorsuppressorp53dependentcelldeath