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p53 Inactivation Upregulates p73 Expression through E2F-1 Mediated Transcription

While p73 overexpression has been associated with increased apoptosis in cancer tissues, p73 overexpressing tumors appear to be of high grade malignancy. Why this putative tumor suppressor is overexpressed in cancer cells and what the function of overexpressed p73 is in breast cancers are critical q...

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Autores principales: Tophkhane, Chaitali, Yang, Shi-He, Jiang, Yunbo, Ma, Zhikun, Subramaniam, Dharmalingam, Anant, Shrikant, Yogosawa, Shingo, Sakai, Toshiyuki, Liu, Wan-Guo, Edgerton, Susan, Thor, Ann, Yang, Xiaohe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3431388/
https://www.ncbi.nlm.nih.gov/pubmed/22952705
http://dx.doi.org/10.1371/journal.pone.0043564
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author Tophkhane, Chaitali
Yang, Shi-He
Jiang, Yunbo
Ma, Zhikun
Subramaniam, Dharmalingam
Anant, Shrikant
Yogosawa, Shingo
Sakai, Toshiyuki
Liu, Wan-Guo
Edgerton, Susan
Thor, Ann
Yang, Xiaohe
author_facet Tophkhane, Chaitali
Yang, Shi-He
Jiang, Yunbo
Ma, Zhikun
Subramaniam, Dharmalingam
Anant, Shrikant
Yogosawa, Shingo
Sakai, Toshiyuki
Liu, Wan-Guo
Edgerton, Susan
Thor, Ann
Yang, Xiaohe
author_sort Tophkhane, Chaitali
collection PubMed
description While p73 overexpression has been associated with increased apoptosis in cancer tissues, p73 overexpressing tumors appear to be of high grade malignancy. Why this putative tumor suppressor is overexpressed in cancer cells and what the function of overexpressed p73 is in breast cancers are critical questions to be addressed. By investigating the effect of p53 inactivation on p73 expression, we found that both protein and mRNA levels of TAp73 were increased in MCF-7/p53siRNA cells, MCF-7/p53mt135 cells and HCT-116/p53−/− cells, as compared to wild type control, suggesting that p53 inactivation by various forms upregulates p73. We showed that p53 knockdown induced p73 was mainly regulated at the transcriptional level. However, although p53 has a putative binding site in the TAp73 promoter, deletion of this binding site did not affect p53 knockdown mediated activation of TAp73 promoter. Chromatin immuno-precipitation (ChIP) data demonstrated that loss of p53 results in enhanced occupancy of E2F-1 in the TAp73 promoter. The responsive sequence of p53 inactivation mediated p73 upregulation was mapped to the proximal promoter region of the TAp73 gene. To test the role of E2F-1 in p53 inactivation mediated regulation of p73 transcription, we found that p53 knockdown enhanced E2F-1 dependent p73 transcription, and mutations in E2F-1 binding sites in the TAp73 promoter abrogated p53 knockdown mediated activation of TAp73 promoter. Moreover, we demonstrated that p21 is a mediator of p53-E2F crosstalk in the regulation of p73 transcription. We concluded that p53 knockdown/inactivation may upregulate TAp73 expression through E2F-1 mediated transcriptional regulation. p53 inactivation mediated upregulation of p73 suggests an intrinsic rescuing mechanism in response to p53 mutation/inactivation. These findings support further analysis of the correlation between p53 status and p73 expression and its prognostic/predictive significance in human cancers.
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spelling pubmed-34313882012-09-05 p53 Inactivation Upregulates p73 Expression through E2F-1 Mediated Transcription Tophkhane, Chaitali Yang, Shi-He Jiang, Yunbo Ma, Zhikun Subramaniam, Dharmalingam Anant, Shrikant Yogosawa, Shingo Sakai, Toshiyuki Liu, Wan-Guo Edgerton, Susan Thor, Ann Yang, Xiaohe PLoS One Research Article While p73 overexpression has been associated with increased apoptosis in cancer tissues, p73 overexpressing tumors appear to be of high grade malignancy. Why this putative tumor suppressor is overexpressed in cancer cells and what the function of overexpressed p73 is in breast cancers are critical questions to be addressed. By investigating the effect of p53 inactivation on p73 expression, we found that both protein and mRNA levels of TAp73 were increased in MCF-7/p53siRNA cells, MCF-7/p53mt135 cells and HCT-116/p53−/− cells, as compared to wild type control, suggesting that p53 inactivation by various forms upregulates p73. We showed that p53 knockdown induced p73 was mainly regulated at the transcriptional level. However, although p53 has a putative binding site in the TAp73 promoter, deletion of this binding site did not affect p53 knockdown mediated activation of TAp73 promoter. Chromatin immuno-precipitation (ChIP) data demonstrated that loss of p53 results in enhanced occupancy of E2F-1 in the TAp73 promoter. The responsive sequence of p53 inactivation mediated p73 upregulation was mapped to the proximal promoter region of the TAp73 gene. To test the role of E2F-1 in p53 inactivation mediated regulation of p73 transcription, we found that p53 knockdown enhanced E2F-1 dependent p73 transcription, and mutations in E2F-1 binding sites in the TAp73 promoter abrogated p53 knockdown mediated activation of TAp73 promoter. Moreover, we demonstrated that p21 is a mediator of p53-E2F crosstalk in the regulation of p73 transcription. We concluded that p53 knockdown/inactivation may upregulate TAp73 expression through E2F-1 mediated transcriptional regulation. p53 inactivation mediated upregulation of p73 suggests an intrinsic rescuing mechanism in response to p53 mutation/inactivation. These findings support further analysis of the correlation between p53 status and p73 expression and its prognostic/predictive significance in human cancers. Public Library of Science 2012-08-30 /pmc/articles/PMC3431388/ /pubmed/22952705 http://dx.doi.org/10.1371/journal.pone.0043564 Text en © 2012 Tophkhane et al http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Tophkhane, Chaitali
Yang, Shi-He
Jiang, Yunbo
Ma, Zhikun
Subramaniam, Dharmalingam
Anant, Shrikant
Yogosawa, Shingo
Sakai, Toshiyuki
Liu, Wan-Guo
Edgerton, Susan
Thor, Ann
Yang, Xiaohe
p53 Inactivation Upregulates p73 Expression through E2F-1 Mediated Transcription
title p53 Inactivation Upregulates p73 Expression through E2F-1 Mediated Transcription
title_full p53 Inactivation Upregulates p73 Expression through E2F-1 Mediated Transcription
title_fullStr p53 Inactivation Upregulates p73 Expression through E2F-1 Mediated Transcription
title_full_unstemmed p53 Inactivation Upregulates p73 Expression through E2F-1 Mediated Transcription
title_short p53 Inactivation Upregulates p73 Expression through E2F-1 Mediated Transcription
title_sort p53 inactivation upregulates p73 expression through e2f-1 mediated transcription
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3431388/
https://www.ncbi.nlm.nih.gov/pubmed/22952705
http://dx.doi.org/10.1371/journal.pone.0043564
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