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Unrepaired base excision repair intermediates in template DNA strands trigger replication fork collapse and PARP inhibitor sensitivity

DNA single‐strand breaks (SSBs) disrupt DNA replication and induce chromosome breakage. However, whether SSBs induce chromosome breakage when present behind replication forks or ahead of replication forks is unclear. To address this question, we exploited an exquisite sensitivity of SSB repair‐defec...

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Autores principales: Serrano‐Benitez, Almudena, Wells, Sophie E, Drummond‐Clarke, Lylah, Russo, Lilian C, Thomas, John Christopher, Leal, Giovanna A, Farrow, Mark, Edgerton, James Michael, Balasubramanian, Shankar, Yang, Ming, Frezza, Christian, Gautam, Amit, Brazina, Jan, Burdova, Kamila, Hoch, Nicolas C, Jackson, Stephen P, Caldecott, Keith W
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10505916/
https://www.ncbi.nlm.nih.gov/pubmed/37492888
http://dx.doi.org/10.15252/embj.2022113190
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author Serrano‐Benitez, Almudena
Wells, Sophie E
Drummond‐Clarke, Lylah
Russo, Lilian C
Thomas, John Christopher
Leal, Giovanna A
Farrow, Mark
Edgerton, James Michael
Balasubramanian, Shankar
Yang, Ming
Frezza, Christian
Gautam, Amit
Brazina, Jan
Burdova, Kamila
Hoch, Nicolas C
Jackson, Stephen P
Caldecott, Keith W
author_facet Serrano‐Benitez, Almudena
Wells, Sophie E
Drummond‐Clarke, Lylah
Russo, Lilian C
Thomas, John Christopher
Leal, Giovanna A
Farrow, Mark
Edgerton, James Michael
Balasubramanian, Shankar
Yang, Ming
Frezza, Christian
Gautam, Amit
Brazina, Jan
Burdova, Kamila
Hoch, Nicolas C
Jackson, Stephen P
Caldecott, Keith W
author_sort Serrano‐Benitez, Almudena
collection PubMed
description DNA single‐strand breaks (SSBs) disrupt DNA replication and induce chromosome breakage. However, whether SSBs induce chromosome breakage when present behind replication forks or ahead of replication forks is unclear. To address this question, we exploited an exquisite sensitivity of SSB repair‐defective human cells lacking PARP activity or XRCC1 to the thymidine analogue 5‐chloro‐2′‐deoxyuridine (CldU). We show that incubation with CldU in these cells results in chromosome breakage, sister chromatid exchange, and cytotoxicity by a mechanism that depends on the S phase activity of uracil DNA glycosylase (UNG). Importantly, we show that CldU incorporation in one cell cycle is cytotoxic only during the following cell cycle, when it is present in template DNA. In agreement with this, while UNG induces SSBs both in nascent strands behind replication forks and in template strands ahead of replication forks, only the latter trigger fork collapse and chromosome breakage. Finally, we show that BRCA‐defective cells are hypersensitive to CldU, either alone and/or in combination with PARP inhibitor, suggesting that CldU may have clinical utility.
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spelling pubmed-105059162023-09-19 Unrepaired base excision repair intermediates in template DNA strands trigger replication fork collapse and PARP inhibitor sensitivity Serrano‐Benitez, Almudena Wells, Sophie E Drummond‐Clarke, Lylah Russo, Lilian C Thomas, John Christopher Leal, Giovanna A Farrow, Mark Edgerton, James Michael Balasubramanian, Shankar Yang, Ming Frezza, Christian Gautam, Amit Brazina, Jan Burdova, Kamila Hoch, Nicolas C Jackson, Stephen P Caldecott, Keith W EMBO J Articles DNA single‐strand breaks (SSBs) disrupt DNA replication and induce chromosome breakage. However, whether SSBs induce chromosome breakage when present behind replication forks or ahead of replication forks is unclear. To address this question, we exploited an exquisite sensitivity of SSB repair‐defective human cells lacking PARP activity or XRCC1 to the thymidine analogue 5‐chloro‐2′‐deoxyuridine (CldU). We show that incubation with CldU in these cells results in chromosome breakage, sister chromatid exchange, and cytotoxicity by a mechanism that depends on the S phase activity of uracil DNA glycosylase (UNG). Importantly, we show that CldU incorporation in one cell cycle is cytotoxic only during the following cell cycle, when it is present in template DNA. In agreement with this, while UNG induces SSBs both in nascent strands behind replication forks and in template strands ahead of replication forks, only the latter trigger fork collapse and chromosome breakage. Finally, we show that BRCA‐defective cells are hypersensitive to CldU, either alone and/or in combination with PARP inhibitor, suggesting that CldU may have clinical utility. John Wiley and Sons Inc. 2023-07-26 /pmc/articles/PMC10505916/ /pubmed/37492888 http://dx.doi.org/10.15252/embj.2022113190 Text en © 2023 The Authors. Published under the terms of the CC BY 4.0 license. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Serrano‐Benitez, Almudena
Wells, Sophie E
Drummond‐Clarke, Lylah
Russo, Lilian C
Thomas, John Christopher
Leal, Giovanna A
Farrow, Mark
Edgerton, James Michael
Balasubramanian, Shankar
Yang, Ming
Frezza, Christian
Gautam, Amit
Brazina, Jan
Burdova, Kamila
Hoch, Nicolas C
Jackson, Stephen P
Caldecott, Keith W
Unrepaired base excision repair intermediates in template DNA strands trigger replication fork collapse and PARP inhibitor sensitivity
title Unrepaired base excision repair intermediates in template DNA strands trigger replication fork collapse and PARP inhibitor sensitivity
title_full Unrepaired base excision repair intermediates in template DNA strands trigger replication fork collapse and PARP inhibitor sensitivity
title_fullStr Unrepaired base excision repair intermediates in template DNA strands trigger replication fork collapse and PARP inhibitor sensitivity
title_full_unstemmed Unrepaired base excision repair intermediates in template DNA strands trigger replication fork collapse and PARP inhibitor sensitivity
title_short Unrepaired base excision repair intermediates in template DNA strands trigger replication fork collapse and PARP inhibitor sensitivity
title_sort unrepaired base excision repair intermediates in template dna strands trigger replication fork collapse and parp inhibitor sensitivity
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10505916/
https://www.ncbi.nlm.nih.gov/pubmed/37492888
http://dx.doi.org/10.15252/embj.2022113190
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