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DNA damage-induced regulatory interplay between DAXX, p53, ATM kinase and Wip1 phosphatase

Death domain-associated protein 6 (DAXX) is a histone chaperone, putative regulator of apoptosis and transcription, and candidate modulator of p53-mediated gene expression following DNA damage. DAXX becomes phosphorylated upon DNA damage, however regulation of this modification, and its relationship...

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Autores principales: Brazina, Jan, Svadlenka, Jan, Macurek, Libor, Andera, Ladislav, Hodny, Zdenek, Bartek, Jiri, Hanzlikova, Hana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4353233/
https://www.ncbi.nlm.nih.gov/pubmed/25659035
http://dx.doi.org/10.4161/15384101.2014.988019
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author Brazina, Jan
Svadlenka, Jan
Macurek, Libor
Andera, Ladislav
Hodny, Zdenek
Bartek, Jiri
Hanzlikova, Hana
author_facet Brazina, Jan
Svadlenka, Jan
Macurek, Libor
Andera, Ladislav
Hodny, Zdenek
Bartek, Jiri
Hanzlikova, Hana
author_sort Brazina, Jan
collection PubMed
description Death domain-associated protein 6 (DAXX) is a histone chaperone, putative regulator of apoptosis and transcription, and candidate modulator of p53-mediated gene expression following DNA damage. DAXX becomes phosphorylated upon DNA damage, however regulation of this modification, and its relationship to p53 remain unclear. Here we show that in human cells exposed to ionizing radiation or genotoxic drugs etoposide and neocarzinostatin, DAXX became rapidly phosphorylated in an ATM kinase-dependent manner. Our deletion and site-directed mutagenesis experiments identified Serine 564 (S564) as the dominant ATM-targeted site of DAXX, and immunofluorescence experiments revealed localization of S564-phosphorylated DAXX to PML nuclear bodies. Furthermore, using a panel of human cell types, we identified the p53-regulated Wip1 protein phosphatase as a key negative regulator of DAXX phosphorylation at S564, both in vitro and in cells. Consistent with the emerging oncogenic role of Wip1, its DAXX-dephosphorylating impact was most apparent in cancer cell lines harboring gain-of-function mutant and/or overexpressed Wip1. Unexpectedly, while Wip1 depletion increased DAXX phosphorylation both before and after DNA damage and increased p53 stability and transcriptional activity, knock-down of DAXX impacted neither p53 stabilization nor p53-mediated expression of Gadd45a, Noxa, Mdm2, p21, Puma, Sesn2, Tigar or Wip1. Consistently, analyses of cells with genetic, TALEN-mediated DAXX deletion corroborated the notion that neither phosphorylated nor non-phosphorylated DAXX is required for p53-mediated gene expression upon DNA damage. Overall, we identify ATM kinase and Wip1 phosphatase as opposing regulators of DAXX-S564 phosphorylation, and propose that the role of DAXX phosphorylation and DAXX itself are independent of p53-mediated gene expression.
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spelling pubmed-43532332016-01-31 DNA damage-induced regulatory interplay between DAXX, p53, ATM kinase and Wip1 phosphatase Brazina, Jan Svadlenka, Jan Macurek, Libor Andera, Ladislav Hodny, Zdenek Bartek, Jiri Hanzlikova, Hana Cell Cycle Reports Death domain-associated protein 6 (DAXX) is a histone chaperone, putative regulator of apoptosis and transcription, and candidate modulator of p53-mediated gene expression following DNA damage. DAXX becomes phosphorylated upon DNA damage, however regulation of this modification, and its relationship to p53 remain unclear. Here we show that in human cells exposed to ionizing radiation or genotoxic drugs etoposide and neocarzinostatin, DAXX became rapidly phosphorylated in an ATM kinase-dependent manner. Our deletion and site-directed mutagenesis experiments identified Serine 564 (S564) as the dominant ATM-targeted site of DAXX, and immunofluorescence experiments revealed localization of S564-phosphorylated DAXX to PML nuclear bodies. Furthermore, using a panel of human cell types, we identified the p53-regulated Wip1 protein phosphatase as a key negative regulator of DAXX phosphorylation at S564, both in vitro and in cells. Consistent with the emerging oncogenic role of Wip1, its DAXX-dephosphorylating impact was most apparent in cancer cell lines harboring gain-of-function mutant and/or overexpressed Wip1. Unexpectedly, while Wip1 depletion increased DAXX phosphorylation both before and after DNA damage and increased p53 stability and transcriptional activity, knock-down of DAXX impacted neither p53 stabilization nor p53-mediated expression of Gadd45a, Noxa, Mdm2, p21, Puma, Sesn2, Tigar or Wip1. Consistently, analyses of cells with genetic, TALEN-mediated DAXX deletion corroborated the notion that neither phosphorylated nor non-phosphorylated DAXX is required for p53-mediated gene expression upon DNA damage. Overall, we identify ATM kinase and Wip1 phosphatase as opposing regulators of DAXX-S564 phosphorylation, and propose that the role of DAXX phosphorylation and DAXX itself are independent of p53-mediated gene expression. Taylor & Francis 2015-02-01 /pmc/articles/PMC4353233/ /pubmed/25659035 http://dx.doi.org/10.4161/15384101.2014.988019 Text en © 2015 The Author(s). 2015 Taylor & Francis Group, LLC http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution-Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited. The moral rights of the named author(s) have been asserted.
spellingShingle Reports
Brazina, Jan
Svadlenka, Jan
Macurek, Libor
Andera, Ladislav
Hodny, Zdenek
Bartek, Jiri
Hanzlikova, Hana
DNA damage-induced regulatory interplay between DAXX, p53, ATM kinase and Wip1 phosphatase
title DNA damage-induced regulatory interplay between DAXX, p53, ATM kinase and Wip1 phosphatase
title_full DNA damage-induced regulatory interplay between DAXX, p53, ATM kinase and Wip1 phosphatase
title_fullStr DNA damage-induced regulatory interplay between DAXX, p53, ATM kinase and Wip1 phosphatase
title_full_unstemmed DNA damage-induced regulatory interplay between DAXX, p53, ATM kinase and Wip1 phosphatase
title_short DNA damage-induced regulatory interplay between DAXX, p53, ATM kinase and Wip1 phosphatase
title_sort dna damage-induced regulatory interplay between daxx, p53, atm kinase and wip1 phosphatase
topic Reports
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4353233/
https://www.ncbi.nlm.nih.gov/pubmed/25659035
http://dx.doi.org/10.4161/15384101.2014.988019
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