Cargando…

A p53-independent apoptotic mechanism of adenoviral mutant E1A was involved in its selective antitumor activity for human cancer

The conserved regions (CR) of adenoviral E1A had been shown to be necessary for disruption of pRb-E2F transcription factor complexes and induction of the S phase. Here we constructed a mutant adenoviral E1A with Rb-binding ability absent (E1A 30-60aa and 120-127aa deletion, mE1A) and investigated it...

Descripción completa

Detalles Bibliográficos
Autores principales: Fang, Lin, Cheng, Qian, Zhao, Jingjing, Ge, Yan, Zhu, Qi, Zhao, Min, Zhang, Jie, Zhang, Qi, Li, Liantao, Liu, Junjie, Zheng, Junnian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5217019/
https://www.ncbi.nlm.nih.gov/pubmed/27340782
http://dx.doi.org/10.18632/oncotarget.10221
_version_ 1782492027405991936
author Fang, Lin
Cheng, Qian
Zhao, Jingjing
Ge, Yan
Zhu, Qi
Zhao, Min
Zhang, Jie
Zhang, Qi
Li, Liantao
Liu, Junjie
Zheng, Junnian
author_facet Fang, Lin
Cheng, Qian
Zhao, Jingjing
Ge, Yan
Zhu, Qi
Zhao, Min
Zhang, Jie
Zhang, Qi
Li, Liantao
Liu, Junjie
Zheng, Junnian
author_sort Fang, Lin
collection PubMed
description The conserved regions (CR) of adenoviral E1A had been shown to be necessary for disruption of pRb-E2F transcription factor complexes and induction of the S phase. Here we constructed a mutant adenoviral E1A with Rb-binding ability absent (E1A 30-60aa and 120-127aa deletion, mE1A) and investigated its antitumor capacities in vitro and in vivo. The mE1A suppressed the viability of tumor cells as efficiently as the wild type E1A, and there was no cytotoxic effect on normal cells. Although the mE1A arrested tumor cell cycle with the same manner as E1A, the former played a different role on cell cycle regulation compared with E1A in normal cells, which might contribute to its selective antitumor activity. E1A and mE1A had accumulated inactive p53, decreased the expression of mdm2, Cdkn1a (also named p21), increased p21's nuclear distribution and induced tumor cell apoptosis in a p53-indenpent manner. Further, E1A or mE1A significantly suppressed tumor growth in subcutaneous hepatocellular carcinoma xenograft models. Especially, tumor-bearing mice treated with mE1A had higher survival rate than those treated with E1A. Our data demonstrated that mutant adenoviral E1A significantly induced tumor cell apoptosis in a p53-indenpednt manner and had selective tumor suppressing ability. The observations of adenoviral E1A mutant had provided a novel mechanism for E1A's complex activities during infection.
format Online
Article
Text
id pubmed-5217019
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-52170192017-01-17 A p53-independent apoptotic mechanism of adenoviral mutant E1A was involved in its selective antitumor activity for human cancer Fang, Lin Cheng, Qian Zhao, Jingjing Ge, Yan Zhu, Qi Zhao, Min Zhang, Jie Zhang, Qi Li, Liantao Liu, Junjie Zheng, Junnian Oncotarget Research Paper The conserved regions (CR) of adenoviral E1A had been shown to be necessary for disruption of pRb-E2F transcription factor complexes and induction of the S phase. Here we constructed a mutant adenoviral E1A with Rb-binding ability absent (E1A 30-60aa and 120-127aa deletion, mE1A) and investigated its antitumor capacities in vitro and in vivo. The mE1A suppressed the viability of tumor cells as efficiently as the wild type E1A, and there was no cytotoxic effect on normal cells. Although the mE1A arrested tumor cell cycle with the same manner as E1A, the former played a different role on cell cycle regulation compared with E1A in normal cells, which might contribute to its selective antitumor activity. E1A and mE1A had accumulated inactive p53, decreased the expression of mdm2, Cdkn1a (also named p21), increased p21's nuclear distribution and induced tumor cell apoptosis in a p53-indenpent manner. Further, E1A or mE1A significantly suppressed tumor growth in subcutaneous hepatocellular carcinoma xenograft models. Especially, tumor-bearing mice treated with mE1A had higher survival rate than those treated with E1A. Our data demonstrated that mutant adenoviral E1A significantly induced tumor cell apoptosis in a p53-indenpednt manner and had selective tumor suppressing ability. The observations of adenoviral E1A mutant had provided a novel mechanism for E1A's complex activities during infection. Impact Journals LLC 2016-06-22 /pmc/articles/PMC5217019/ /pubmed/27340782 http://dx.doi.org/10.18632/oncotarget.10221 Text en Copyright: © 2016 Fang 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
Fang, Lin
Cheng, Qian
Zhao, Jingjing
Ge, Yan
Zhu, Qi
Zhao, Min
Zhang, Jie
Zhang, Qi
Li, Liantao
Liu, Junjie
Zheng, Junnian
A p53-independent apoptotic mechanism of adenoviral mutant E1A was involved in its selective antitumor activity for human cancer
title A p53-independent apoptotic mechanism of adenoviral mutant E1A was involved in its selective antitumor activity for human cancer
title_full A p53-independent apoptotic mechanism of adenoviral mutant E1A was involved in its selective antitumor activity for human cancer
title_fullStr A p53-independent apoptotic mechanism of adenoviral mutant E1A was involved in its selective antitumor activity for human cancer
title_full_unstemmed A p53-independent apoptotic mechanism of adenoviral mutant E1A was involved in its selective antitumor activity for human cancer
title_short A p53-independent apoptotic mechanism of adenoviral mutant E1A was involved in its selective antitumor activity for human cancer
title_sort p53-independent apoptotic mechanism of adenoviral mutant e1a was involved in its selective antitumor activity for human cancer
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5217019/
https://www.ncbi.nlm.nih.gov/pubmed/27340782
http://dx.doi.org/10.18632/oncotarget.10221
work_keys_str_mv AT fanglin ap53independentapoptoticmechanismofadenoviralmutante1awasinvolvedinitsselectiveantitumoractivityforhumancancer
AT chengqian ap53independentapoptoticmechanismofadenoviralmutante1awasinvolvedinitsselectiveantitumoractivityforhumancancer
AT zhaojingjing ap53independentapoptoticmechanismofadenoviralmutante1awasinvolvedinitsselectiveantitumoractivityforhumancancer
AT geyan ap53independentapoptoticmechanismofadenoviralmutante1awasinvolvedinitsselectiveantitumoractivityforhumancancer
AT zhuqi ap53independentapoptoticmechanismofadenoviralmutante1awasinvolvedinitsselectiveantitumoractivityforhumancancer
AT zhaomin ap53independentapoptoticmechanismofadenoviralmutante1awasinvolvedinitsselectiveantitumoractivityforhumancancer
AT zhangjie ap53independentapoptoticmechanismofadenoviralmutante1awasinvolvedinitsselectiveantitumoractivityforhumancancer
AT zhangqi ap53independentapoptoticmechanismofadenoviralmutante1awasinvolvedinitsselectiveantitumoractivityforhumancancer
AT liliantao ap53independentapoptoticmechanismofadenoviralmutante1awasinvolvedinitsselectiveantitumoractivityforhumancancer
AT liujunjie ap53independentapoptoticmechanismofadenoviralmutante1awasinvolvedinitsselectiveantitumoractivityforhumancancer
AT zhengjunnian ap53independentapoptoticmechanismofadenoviralmutante1awasinvolvedinitsselectiveantitumoractivityforhumancancer
AT fanglin p53independentapoptoticmechanismofadenoviralmutante1awasinvolvedinitsselectiveantitumoractivityforhumancancer
AT chengqian p53independentapoptoticmechanismofadenoviralmutante1awasinvolvedinitsselectiveantitumoractivityforhumancancer
AT zhaojingjing p53independentapoptoticmechanismofadenoviralmutante1awasinvolvedinitsselectiveantitumoractivityforhumancancer
AT geyan p53independentapoptoticmechanismofadenoviralmutante1awasinvolvedinitsselectiveantitumoractivityforhumancancer
AT zhuqi p53independentapoptoticmechanismofadenoviralmutante1awasinvolvedinitsselectiveantitumoractivityforhumancancer
AT zhaomin p53independentapoptoticmechanismofadenoviralmutante1awasinvolvedinitsselectiveantitumoractivityforhumancancer
AT zhangjie p53independentapoptoticmechanismofadenoviralmutante1awasinvolvedinitsselectiveantitumoractivityforhumancancer
AT zhangqi p53independentapoptoticmechanismofadenoviralmutante1awasinvolvedinitsselectiveantitumoractivityforhumancancer
AT liliantao p53independentapoptoticmechanismofadenoviralmutante1awasinvolvedinitsselectiveantitumoractivityforhumancancer
AT liujunjie p53independentapoptoticmechanismofadenoviralmutante1awasinvolvedinitsselectiveantitumoractivityforhumancancer
AT zhengjunnian p53independentapoptoticmechanismofadenoviralmutante1awasinvolvedinitsselectiveantitumoractivityforhumancancer