Unknown

Dataset Information

0

The proofreading exonuclease of leading-strand DNA polymerase epsilon prevents replication fork collapse at broken template strands.


ABSTRACT: Leading-strand DNA replication by polymerase epsilon (Polϵ) across single-strand breaks (SSBs) causes single-ended double-strand breaks (seDSBs), which are repaired via homology-directed repair (HDR) and suppressed by fork reversal (FR). Although previous studies identified many molecules required for hydroxyurea-induced FR, FR at seDSBs is poorly understood. Here, we identified molecules that specifically mediate FR at seDSBs. Because FR at seDSBs requires poly(ADP ribose)polymerase 1 (PARP1), we hypothesized that seDSB/FR-associated molecules would increase tolerance to camptothecin (CPT) but not the PARP inhibitor olaparib, even though both anti-cancer agents generate seDSBs. Indeed, we uncovered that Polϵ exonuclease and CTF18, a Polϵ cofactor, increased tolerance to CPT but not olaparib. To explore potential functional interactions between Polϵ exonuclease, CTF18, and PARP1, we created exonuclease-deficient POLE1exo-/-, CTF18-/-, PARP1-/-, CTF18-/-/POLE1exo-/-, PARP1-/-/POLE1exo-/-, and CTF18-/-/PARP1-/- cells. Epistasis analysis indicated that Polϵ exonuclease and CTF18 were interdependent and required PARP1 for CPT tolerance. Remarkably, POLE1exo-/- and HDR-deficient BRCA1-/- cells exhibited similar CPT sensitivity. Moreover, combining POLE1exo-/- with BRCA1-/- mutations synergistically increased CPT sensitivity. In conclusion, the newly identified PARP1-CTF18-Polϵ exonuclease axis and HDR act independently to prevent fork collapse at seDSBs. Olaparib inhibits this axis, explaining the pronounced cytotoxic effects of olaparib on HDR-deficient cells.

SUBMITTER: Ahmad T 

PROVIDER: S-EPMC10711444 | biostudies-literature | 2023 Nov

REPOSITORIES: biostudies-literature

altmetric image

Publications

The proofreading exonuclease of leading-strand DNA polymerase epsilon prevents replication fork collapse at broken template strands.

Ahmad Tasnim T   Kawasumi Ryotaro R   Taniguchi Tomoya T   Abe Takuya T   Terada Kazuhiro K   Tsuda Masataka M   Shimizu Naoto N   Tsurimoto Toshiki T   Takeda Shunichi S   Hirota Kouji K  

Nucleic acids research 20231201 22


Leading-strand DNA replication by polymerase epsilon (Polϵ) across single-strand breaks (SSBs) causes single-ended double-strand breaks (seDSBs), which are repaired via homology-directed repair (HDR) and suppressed by fork reversal (FR). Although previous studies identified many molecules required for hydroxyurea-induced FR, FR at seDSBs is poorly understood. Here, we identified molecules that specifically mediate FR at seDSBs. Because FR at seDSBs requires poly(ADP ribose)polymerase 1 (PARP1),  ...[more]

Similar Datasets

| S-EPMC7612761 | biostudies-literature
| S-EPMC10505916 | biostudies-literature
| S-EPMC11638069 | biostudies-literature
| S-SCDT-10_15252-EMBJ_2022113190 | biostudies-other
| S-EPMC10069448 | biostudies-literature
| S-EPMC6347710 | biostudies-literature
2021-04-30 | GSE156480 | GEO
| S-EPMC5464882 | biostudies-literature
2022-09-02 | GSE212101 | GEO
| S-EPMC10511561 | biostudies-literature