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An ATR and CHK1 kinase signaling mechanism that limits origin firing during unperturbed DNA replication

DNA damage-induced signaling by ATR and CHK1 inhibits DNA replication, stabilizes stalled and collapsed replication forks, and mediates the repair of multiple classes of DNA lesions. We and others have shown that ATR kinase inhibitors, three of which are currently undergoing clinical trials, induce...

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Autores principales: Moiseeva, Tatiana N., Yin, Yandong, Calderon, Michael J., Qian, Chenao, Schamus-Haynes, Sandra, Sugitani, Norie, Osmanbeyoglu, Hatice U., Rothenberg, Eli, Watkins, Simon C., Bakkenist, Christopher J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6613105/
https://www.ncbi.nlm.nih.gov/pubmed/31209037
http://dx.doi.org/10.1073/pnas.1903418116
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author Moiseeva, Tatiana N.
Yin, Yandong
Calderon, Michael J.
Qian, Chenao
Schamus-Haynes, Sandra
Sugitani, Norie
Osmanbeyoglu, Hatice U.
Rothenberg, Eli
Watkins, Simon C.
Bakkenist, Christopher J.
author_facet Moiseeva, Tatiana N.
Yin, Yandong
Calderon, Michael J.
Qian, Chenao
Schamus-Haynes, Sandra
Sugitani, Norie
Osmanbeyoglu, Hatice U.
Rothenberg, Eli
Watkins, Simon C.
Bakkenist, Christopher J.
author_sort Moiseeva, Tatiana N.
collection PubMed
description DNA damage-induced signaling by ATR and CHK1 inhibits DNA replication, stabilizes stalled and collapsed replication forks, and mediates the repair of multiple classes of DNA lesions. We and others have shown that ATR kinase inhibitors, three of which are currently undergoing clinical trials, induce excessive origin firing during unperturbed DNA replication, indicating that ATR kinase activity limits replication initiation in the absence of damage. However, the origins impacted and the underlying mechanism(s) have not been described. Here, we show that unperturbed DNA replication is associated with a low level of ATR and CHK1 kinase signaling and that inhibition of this signaling induces dormant origin firing at sites of ongoing replication throughout the S phase. We show that ATR and CHK1 kinase inhibitors induce RIF1 Ser2205 phosphorylation in a CDK1-dependent manner, which disrupts an interaction between RIF1 and PP1 phosphatase. Thus, ATR and CHK1 signaling suppresses CDK1 kinase activity throughout the S phase and stabilizes an interaction between RIF1 and PP1 in replicating cells. PP1 dephosphorylates key CDC7 and CDK2 kinase substrates to inhibit the assembly and activation of the replicative helicase. This mechanism limits origin firing during unperturbed DNA replication in human cells.
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spelling pubmed-66131052019-07-15 An ATR and CHK1 kinase signaling mechanism that limits origin firing during unperturbed DNA replication Moiseeva, Tatiana N. Yin, Yandong Calderon, Michael J. Qian, Chenao Schamus-Haynes, Sandra Sugitani, Norie Osmanbeyoglu, Hatice U. Rothenberg, Eli Watkins, Simon C. Bakkenist, Christopher J. Proc Natl Acad Sci U S A PNAS Plus DNA damage-induced signaling by ATR and CHK1 inhibits DNA replication, stabilizes stalled and collapsed replication forks, and mediates the repair of multiple classes of DNA lesions. We and others have shown that ATR kinase inhibitors, three of which are currently undergoing clinical trials, induce excessive origin firing during unperturbed DNA replication, indicating that ATR kinase activity limits replication initiation in the absence of damage. However, the origins impacted and the underlying mechanism(s) have not been described. Here, we show that unperturbed DNA replication is associated with a low level of ATR and CHK1 kinase signaling and that inhibition of this signaling induces dormant origin firing at sites of ongoing replication throughout the S phase. We show that ATR and CHK1 kinase inhibitors induce RIF1 Ser2205 phosphorylation in a CDK1-dependent manner, which disrupts an interaction between RIF1 and PP1 phosphatase. Thus, ATR and CHK1 signaling suppresses CDK1 kinase activity throughout the S phase and stabilizes an interaction between RIF1 and PP1 in replicating cells. PP1 dephosphorylates key CDC7 and CDK2 kinase substrates to inhibit the assembly and activation of the replicative helicase. This mechanism limits origin firing during unperturbed DNA replication in human cells. National Academy of Sciences 2019-07-02 2019-06-17 /pmc/articles/PMC6613105/ /pubmed/31209037 http://dx.doi.org/10.1073/pnas.1903418116 Text en Copyright © 2019 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/ https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle PNAS Plus
Moiseeva, Tatiana N.
Yin, Yandong
Calderon, Michael J.
Qian, Chenao
Schamus-Haynes, Sandra
Sugitani, Norie
Osmanbeyoglu, Hatice U.
Rothenberg, Eli
Watkins, Simon C.
Bakkenist, Christopher J.
An ATR and CHK1 kinase signaling mechanism that limits origin firing during unperturbed DNA replication
title An ATR and CHK1 kinase signaling mechanism that limits origin firing during unperturbed DNA replication
title_full An ATR and CHK1 kinase signaling mechanism that limits origin firing during unperturbed DNA replication
title_fullStr An ATR and CHK1 kinase signaling mechanism that limits origin firing during unperturbed DNA replication
title_full_unstemmed An ATR and CHK1 kinase signaling mechanism that limits origin firing during unperturbed DNA replication
title_short An ATR and CHK1 kinase signaling mechanism that limits origin firing during unperturbed DNA replication
title_sort atr and chk1 kinase signaling mechanism that limits origin firing during unperturbed dna replication
topic PNAS Plus
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6613105/
https://www.ncbi.nlm.nih.gov/pubmed/31209037
http://dx.doi.org/10.1073/pnas.1903418116
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