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The Telomeric Protein TRF2 Binds the ATM Kinase and Can Inhibit the ATM-Dependent DNA Damage Response

The telomeric protein TRF2 is required to prevent mammalian telomeres from activating DNA damage checkpoints. Here we show that overexpression of TRF2 affects the response of the ATM kinase to DNA damage. Overexpression of TRF2 abrogated the cell cycle arrest after ionizing radiation and diminished...

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Autores principales: Karlseder, Jan, Hoke, Kristina, Mirzoeva, Olga K, Bakkenist, Christopher, Kastan, Michael B, Petrini, John H. J, de Lange, Titia
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2004
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC509302/
https://www.ncbi.nlm.nih.gov/pubmed/15314656
http://dx.doi.org/10.1371/journal.pbio.0020240
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author Karlseder, Jan
Hoke, Kristina
Mirzoeva, Olga K
Bakkenist, Christopher
Kastan, Michael B
Petrini, John H. J
de Lange, Titia
author_facet Karlseder, Jan
Hoke, Kristina
Mirzoeva, Olga K
Bakkenist, Christopher
Kastan, Michael B
Petrini, John H. J
de Lange, Titia
author_sort Karlseder, Jan
collection PubMed
description The telomeric protein TRF2 is required to prevent mammalian telomeres from activating DNA damage checkpoints. Here we show that overexpression of TRF2 affects the response of the ATM kinase to DNA damage. Overexpression of TRF2 abrogated the cell cycle arrest after ionizing radiation and diminished several other readouts of the DNA damage response, including phosphorylation of Nbs1, induction of p53, and upregulation of p53 targets. TRF2 inhibited autophosphorylation of ATM on S1981, an early step in the activation of this kinase. A region of ATM containing S1981 was found to directly interact with TRF2 in vitro, and ATM immunoprecipitates contained TRF2. We propose that TRF2 has the ability to inhibit ATM activation at telomeres. Because TRF2 is abundant at chromosome ends but not elsewhere in the nucleus, this mechanism of checkpoint control could specifically block a DNA damage response at telomeres without affecting the surveillance of chromosome internal damage.
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spelling pubmed-5093022004-08-17 The Telomeric Protein TRF2 Binds the ATM Kinase and Can Inhibit the ATM-Dependent DNA Damage Response Karlseder, Jan Hoke, Kristina Mirzoeva, Olga K Bakkenist, Christopher Kastan, Michael B Petrini, John H. J de Lange, Titia PLoS Biol Research Article The telomeric protein TRF2 is required to prevent mammalian telomeres from activating DNA damage checkpoints. Here we show that overexpression of TRF2 affects the response of the ATM kinase to DNA damage. Overexpression of TRF2 abrogated the cell cycle arrest after ionizing radiation and diminished several other readouts of the DNA damage response, including phosphorylation of Nbs1, induction of p53, and upregulation of p53 targets. TRF2 inhibited autophosphorylation of ATM on S1981, an early step in the activation of this kinase. A region of ATM containing S1981 was found to directly interact with TRF2 in vitro, and ATM immunoprecipitates contained TRF2. We propose that TRF2 has the ability to inhibit ATM activation at telomeres. Because TRF2 is abundant at chromosome ends but not elsewhere in the nucleus, this mechanism of checkpoint control could specifically block a DNA damage response at telomeres without affecting the surveillance of chromosome internal damage. Public Library of Science 2004-08 2004-08-17 /pmc/articles/PMC509302/ /pubmed/15314656 http://dx.doi.org/10.1371/journal.pbio.0020240 Text en Copyright: © 2004 Karlseder 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
Karlseder, Jan
Hoke, Kristina
Mirzoeva, Olga K
Bakkenist, Christopher
Kastan, Michael B
Petrini, John H. J
de Lange, Titia
The Telomeric Protein TRF2 Binds the ATM Kinase and Can Inhibit the ATM-Dependent DNA Damage Response
title The Telomeric Protein TRF2 Binds the ATM Kinase and Can Inhibit the ATM-Dependent DNA Damage Response
title_full The Telomeric Protein TRF2 Binds the ATM Kinase and Can Inhibit the ATM-Dependent DNA Damage Response
title_fullStr The Telomeric Protein TRF2 Binds the ATM Kinase and Can Inhibit the ATM-Dependent DNA Damage Response
title_full_unstemmed The Telomeric Protein TRF2 Binds the ATM Kinase and Can Inhibit the ATM-Dependent DNA Damage Response
title_short The Telomeric Protein TRF2 Binds the ATM Kinase and Can Inhibit the ATM-Dependent DNA Damage Response
title_sort telomeric protein trf2 binds the atm kinase and can inhibit the atm-dependent dna damage response
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC509302/
https://www.ncbi.nlm.nih.gov/pubmed/15314656
http://dx.doi.org/10.1371/journal.pbio.0020240
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