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Programmed cell death 5 mediates HDAC3 decay to promote genotoxic stress response

The inhibition of p53 activity by histone deacetylase 3 (HDAC3) has been reported, but the precise molecular mechanism is unknown. Here we show that programmed cell death 5 (PDCD5) selectively mediates HDAC3 dissociation from p53, which induces HDAC3 cleavage and ubiquitin-dependent proteasomal degr...

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Autores principales: Choi, Hyo-Kyoung, Choi, Youngsok, Park, Eun Sung, Park, Soo-Yeon, Lee, Seung-Hyun, Seo, Jaesung, Jeong, Mi-Hyeon, Jeong, Jae-Wook, Jeong, Jae-Ho, Lee, Peter C. W., Choi, Kyung-Chul, Yoon, Ho-Geun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Pub. Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4490383/
https://www.ncbi.nlm.nih.gov/pubmed/26077467
http://dx.doi.org/10.1038/ncomms8390
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author Choi, Hyo-Kyoung
Choi, Youngsok
Park, Eun Sung
Park, Soo-Yeon
Lee, Seung-Hyun
Seo, Jaesung
Jeong, Mi-Hyeon
Jeong, Jae-Wook
Jeong, Jae-Ho
Lee, Peter C. W.
Choi, Kyung-Chul
Yoon, Ho-Geun
author_facet Choi, Hyo-Kyoung
Choi, Youngsok
Park, Eun Sung
Park, Soo-Yeon
Lee, Seung-Hyun
Seo, Jaesung
Jeong, Mi-Hyeon
Jeong, Jae-Wook
Jeong, Jae-Ho
Lee, Peter C. W.
Choi, Kyung-Chul
Yoon, Ho-Geun
author_sort Choi, Hyo-Kyoung
collection PubMed
description The inhibition of p53 activity by histone deacetylase 3 (HDAC3) has been reported, but the precise molecular mechanism is unknown. Here we show that programmed cell death 5 (PDCD5) selectively mediates HDAC3 dissociation from p53, which induces HDAC3 cleavage and ubiquitin-dependent proteasomal degradation. Casein kinase 2 alpha phosphorylates PDCD5 at Ser-119 to enhance its stability and importin 13-mediated nuclear translocation of PDCD5. Genetic deletion of PDCD5 abrogates etoposide (ET)-induced p53 stabilization and HDAC3 cleavage, indicating an essential role of PDCD5 in p53 activation. Restoration of PDCD5(WT) in PDCD5(−/−) MEFs restores ET-induced HDAC3 cleavage. Reduction of both PDCD5 and p53, but not reduction of either protein alone, significantly enhances in vivo tumorigenicity of AGS gastric cancer cells and correlates with poor prognosis in gastric cancer patients. Our results define a mechanism for p53 activation via PDCD5-dependent HDAC3 decay under genotoxic stress conditions.
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spelling pubmed-44903832015-07-13 Programmed cell death 5 mediates HDAC3 decay to promote genotoxic stress response Choi, Hyo-Kyoung Choi, Youngsok Park, Eun Sung Park, Soo-Yeon Lee, Seung-Hyun Seo, Jaesung Jeong, Mi-Hyeon Jeong, Jae-Wook Jeong, Jae-Ho Lee, Peter C. W. Choi, Kyung-Chul Yoon, Ho-Geun Nat Commun Article The inhibition of p53 activity by histone deacetylase 3 (HDAC3) has been reported, but the precise molecular mechanism is unknown. Here we show that programmed cell death 5 (PDCD5) selectively mediates HDAC3 dissociation from p53, which induces HDAC3 cleavage and ubiquitin-dependent proteasomal degradation. Casein kinase 2 alpha phosphorylates PDCD5 at Ser-119 to enhance its stability and importin 13-mediated nuclear translocation of PDCD5. Genetic deletion of PDCD5 abrogates etoposide (ET)-induced p53 stabilization and HDAC3 cleavage, indicating an essential role of PDCD5 in p53 activation. Restoration of PDCD5(WT) in PDCD5(−/−) MEFs restores ET-induced HDAC3 cleavage. Reduction of both PDCD5 and p53, but not reduction of either protein alone, significantly enhances in vivo tumorigenicity of AGS gastric cancer cells and correlates with poor prognosis in gastric cancer patients. Our results define a mechanism for p53 activation via PDCD5-dependent HDAC3 decay under genotoxic stress conditions. Nature Pub. Group 2015-06-16 /pmc/articles/PMC4490383/ /pubmed/26077467 http://dx.doi.org/10.1038/ncomms8390 Text en Copyright © 2015, Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved. http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Choi, Hyo-Kyoung
Choi, Youngsok
Park, Eun Sung
Park, Soo-Yeon
Lee, Seung-Hyun
Seo, Jaesung
Jeong, Mi-Hyeon
Jeong, Jae-Wook
Jeong, Jae-Ho
Lee, Peter C. W.
Choi, Kyung-Chul
Yoon, Ho-Geun
Programmed cell death 5 mediates HDAC3 decay to promote genotoxic stress response
title Programmed cell death 5 mediates HDAC3 decay to promote genotoxic stress response
title_full Programmed cell death 5 mediates HDAC3 decay to promote genotoxic stress response
title_fullStr Programmed cell death 5 mediates HDAC3 decay to promote genotoxic stress response
title_full_unstemmed Programmed cell death 5 mediates HDAC3 decay to promote genotoxic stress response
title_short Programmed cell death 5 mediates HDAC3 decay to promote genotoxic stress response
title_sort programmed cell death 5 mediates hdac3 decay to promote genotoxic stress response
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4490383/
https://www.ncbi.nlm.nih.gov/pubmed/26077467
http://dx.doi.org/10.1038/ncomms8390
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