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Phospho-Ku70 induced by DNA damage interacts with RNA Pol II and promotes the formation of phospho-53BP1 foci to ensure optimal cNHEJ

Canonical non-homologous end-joining (cNHEJ) is the prominent mammalian DNA double-strand breaks (DSBs) repair pathway operative throughout the cell cycle. Phosphorylation of Ku70 at ser27-ser33 (pKu70) is induced by DNA DSBs and has been shown to regulate cNHEJ activity, but the underlying mechanis...

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Autores principales: Schellenbauer, Amelie, Guilly, Marie-Noelle, Grall, Romain, Le Bars, Romain, Paget, Vincent, Kortulewski, Thierry, Sutcu, Haser, Mathé, Cécile, Hullo, Marie, Biard, Denis, Leteurtre, François, Barroca, Vilma, Corre, Youenn, Irbah, Lamya, Rass, Emilie, Theze, Benoit, Bertrand, Pascale, Demmers, Jeroen A A, Guirouilh-Barbat, Josée, Lopez, Bernard S, Chevillard, Sylvie, Delic, Jozo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8599715/
https://www.ncbi.nlm.nih.gov/pubmed/34718776
http://dx.doi.org/10.1093/nar/gkab980
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author Schellenbauer, Amelie
Guilly, Marie-Noelle
Grall, Romain
Le Bars, Romain
Paget, Vincent
Kortulewski, Thierry
Sutcu, Haser
Mathé, Cécile
Hullo, Marie
Biard, Denis
Leteurtre, François
Barroca, Vilma
Corre, Youenn
Irbah, Lamya
Rass, Emilie
Theze, Benoit
Bertrand, Pascale
Demmers, Jeroen A A
Guirouilh-Barbat, Josée
Lopez, Bernard S
Chevillard, Sylvie
Delic, Jozo
author_facet Schellenbauer, Amelie
Guilly, Marie-Noelle
Grall, Romain
Le Bars, Romain
Paget, Vincent
Kortulewski, Thierry
Sutcu, Haser
Mathé, Cécile
Hullo, Marie
Biard, Denis
Leteurtre, François
Barroca, Vilma
Corre, Youenn
Irbah, Lamya
Rass, Emilie
Theze, Benoit
Bertrand, Pascale
Demmers, Jeroen A A
Guirouilh-Barbat, Josée
Lopez, Bernard S
Chevillard, Sylvie
Delic, Jozo
author_sort Schellenbauer, Amelie
collection PubMed
description Canonical non-homologous end-joining (cNHEJ) is the prominent mammalian DNA double-strand breaks (DSBs) repair pathway operative throughout the cell cycle. Phosphorylation of Ku70 at ser27-ser33 (pKu70) is induced by DNA DSBs and has been shown to regulate cNHEJ activity, but the underlying mechanism remained unknown. Here, we established that following DNA damage induction, Ku70 moves from nucleoli to the sites of damage, and once linked to DNA, it is phosphorylated. Notably, the novel emanating functions of pKu70 are evidenced through the recruitment of RNA Pol II and concomitant formation of phospho-53BP1 foci. Phosphorylation is also a prerequisite for the dynamic release of Ku70 from the repair complex through neddylation-dependent ubiquitylation. Although the non-phosphorylable ala-Ku70 form does not compromise the formation of the NHEJ core complex per se, cells expressing this form displayed constitutive and stress-inducible chromosomal instability. Consistently, upon targeted induction of DSBs by the I-SceI meganuclease into an intrachromosomal reporter substrate, cells expressing pKu70, rather than ala-Ku70, are protected against the joining of distal DNA ends. Collectively, our results underpin the essential role of pKu70 in the orchestration of DNA repair execution in living cells and substantiated the way it paves the maintenance of genome stability.
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spelling pubmed-85997152021-11-18 Phospho-Ku70 induced by DNA damage interacts with RNA Pol II and promotes the formation of phospho-53BP1 foci to ensure optimal cNHEJ Schellenbauer, Amelie Guilly, Marie-Noelle Grall, Romain Le Bars, Romain Paget, Vincent Kortulewski, Thierry Sutcu, Haser Mathé, Cécile Hullo, Marie Biard, Denis Leteurtre, François Barroca, Vilma Corre, Youenn Irbah, Lamya Rass, Emilie Theze, Benoit Bertrand, Pascale Demmers, Jeroen A A Guirouilh-Barbat, Josée Lopez, Bernard S Chevillard, Sylvie Delic, Jozo Nucleic Acids Res Genome Integrity, Repair and Replication Canonical non-homologous end-joining (cNHEJ) is the prominent mammalian DNA double-strand breaks (DSBs) repair pathway operative throughout the cell cycle. Phosphorylation of Ku70 at ser27-ser33 (pKu70) is induced by DNA DSBs and has been shown to regulate cNHEJ activity, but the underlying mechanism remained unknown. Here, we established that following DNA damage induction, Ku70 moves from nucleoli to the sites of damage, and once linked to DNA, it is phosphorylated. Notably, the novel emanating functions of pKu70 are evidenced through the recruitment of RNA Pol II and concomitant formation of phospho-53BP1 foci. Phosphorylation is also a prerequisite for the dynamic release of Ku70 from the repair complex through neddylation-dependent ubiquitylation. Although the non-phosphorylable ala-Ku70 form does not compromise the formation of the NHEJ core complex per se, cells expressing this form displayed constitutive and stress-inducible chromosomal instability. Consistently, upon targeted induction of DSBs by the I-SceI meganuclease into an intrachromosomal reporter substrate, cells expressing pKu70, rather than ala-Ku70, are protected against the joining of distal DNA ends. Collectively, our results underpin the essential role of pKu70 in the orchestration of DNA repair execution in living cells and substantiated the way it paves the maintenance of genome stability. Oxford University Press 2021-10-30 /pmc/articles/PMC8599715/ /pubmed/34718776 http://dx.doi.org/10.1093/nar/gkab980 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of Nucleic Acids Research. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Genome Integrity, Repair and Replication
Schellenbauer, Amelie
Guilly, Marie-Noelle
Grall, Romain
Le Bars, Romain
Paget, Vincent
Kortulewski, Thierry
Sutcu, Haser
Mathé, Cécile
Hullo, Marie
Biard, Denis
Leteurtre, François
Barroca, Vilma
Corre, Youenn
Irbah, Lamya
Rass, Emilie
Theze, Benoit
Bertrand, Pascale
Demmers, Jeroen A A
Guirouilh-Barbat, Josée
Lopez, Bernard S
Chevillard, Sylvie
Delic, Jozo
Phospho-Ku70 induced by DNA damage interacts with RNA Pol II and promotes the formation of phospho-53BP1 foci to ensure optimal cNHEJ
title Phospho-Ku70 induced by DNA damage interacts with RNA Pol II and promotes the formation of phospho-53BP1 foci to ensure optimal cNHEJ
title_full Phospho-Ku70 induced by DNA damage interacts with RNA Pol II and promotes the formation of phospho-53BP1 foci to ensure optimal cNHEJ
title_fullStr Phospho-Ku70 induced by DNA damage interacts with RNA Pol II and promotes the formation of phospho-53BP1 foci to ensure optimal cNHEJ
title_full_unstemmed Phospho-Ku70 induced by DNA damage interacts with RNA Pol II and promotes the formation of phospho-53BP1 foci to ensure optimal cNHEJ
title_short Phospho-Ku70 induced by DNA damage interacts with RNA Pol II and promotes the formation of phospho-53BP1 foci to ensure optimal cNHEJ
title_sort phospho-ku70 induced by dna damage interacts with rna pol ii and promotes the formation of phospho-53bp1 foci to ensure optimal cnhej
topic Genome Integrity, Repair and Replication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8599715/
https://www.ncbi.nlm.nih.gov/pubmed/34718776
http://dx.doi.org/10.1093/nar/gkab980
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