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

Author:

Serrano‐Benitez Almudena12,Wells Sophie E3ORCID,Drummond‐Clarke Lylah3ORCID,Russo Lilian C4,Thomas John Christopher2,Leal Giovanna A4,Farrow Mark5,Edgerton James Michael5,Balasubramanian Shankar15,Yang Ming6ORCID,Frezza Christian6,Gautam Amit3ORCID,Brazina Jan3,Burdova Kamila3,Hoch Nicolas C4ORCID,Jackson Stephen P12ORCID,Caldecott Keith W3ORCID

Affiliation:

1. Cancer Research UK Cambridge Institute University of Cambridge Cambridge UK

2. The Wellcome and Cancer Research UK Gurdon Institute and Department of Biochemistry University of Cambridge Cambridge UK

3. Genome Damage and Stability Centre, School of Life Sciences University of Sussex Falmer UK

4. Departament of Biochemistry, Chemistry Institute University of São Paulo São Paulo Brazil

5. Yusuf Hamied Department of Chemistry University of Cambridge Cambridge UK

6. CECAD Research Center, Faculty of Medicine University Hospital Cologne Cologne Germany

Abstract

AbstractDNA 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.

Funder

Cancer Research UK

Conselho Nacional de Desenvolvimento Científico e Tecnológico

European Research Council

Fundação de Amparo à Pesquisa do Estado de São Paulo

Wellcome Trust

Publisher

Springer Science and Business Media LLC

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,Molecular Biology,General Neuroscience

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