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The Influence of PARP, ATR, CHK1 Inhibitors on Premature Mitotic Entry and Genomic Instability in High-Grade Serous BRCA(MUT) and BRCA(WT) Ovarian Cancer Cells

Olaparib is a poly (ADP-ribose) polymerase inhibitor (PARPi) that inhibits PARP1/2, leading to replication-induced DNA damage that requires homologous recombination repair. Olaparib is often insufficient to treat BRCA-mutated (BRCA(MUT)) and BRCA wild-type (BRCA(WT)) high-grade serous ovarian carcin...

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Autores principales: Gralewska, Patrycja, Gajek, Arkadiusz, Rybaczek, Dorota, Marczak, Agnieszka, Rogalska, Aneta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9221516/
https://www.ncbi.nlm.nih.gov/pubmed/35741017
http://dx.doi.org/10.3390/cells11121889
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author Gralewska, Patrycja
Gajek, Arkadiusz
Rybaczek, Dorota
Marczak, Agnieszka
Rogalska, Aneta
author_facet Gralewska, Patrycja
Gajek, Arkadiusz
Rybaczek, Dorota
Marczak, Agnieszka
Rogalska, Aneta
author_sort Gralewska, Patrycja
collection PubMed
description Olaparib is a poly (ADP-ribose) polymerase inhibitor (PARPi) that inhibits PARP1/2, leading to replication-induced DNA damage that requires homologous recombination repair. Olaparib is often insufficient to treat BRCA-mutated (BRCA(MUT)) and BRCA wild-type (BRCA(WT)) high-grade serous ovarian carcinomas (HGSOCs). We examined the short-term (up to 48 h) efficacy of PARPi treatment on a DNA damage response pathway mediated by ATR and CHK1 kinases in BRCA(MUT) (PEO-1) and BRCA(WT) (SKOV-3 and OV-90) cells. The combination of ATRi/CHK1i with PARPi was not more cytotoxic than ATR and CHK1 monotherapy. The combination of olaparib with inhibitors of the ATR/CHK1 pathway generated chromosomal abnormalities, independent on BRCA(MUT) status of cells and formed of micronuclei (MN). However, the beneficial effect of the PARPi:ATRi combination on MN was seen only in the PEO1 BRCA(MUT) line. Monotherapy with ATR/CHK1 inhibitors reduced BrdU incorporation due to a slower rate of DNA synthesis, which resulted from elevated levels of replication stress, while simultaneous blockade of PARP and ATR caused beneficial effects only in OV-90 cells. Inhibition of ATR/CHK1 increased the formation of double-strand breaks as measured by increased γH2AX expression at collapsed replication forks, resulting in increased levels of apoptosis. Our findings indicate that ATR and CHK1 inhibitors provoke premature mitotic entry, leading to genomic instability and ultimately cell death.
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spelling pubmed-92215162022-06-24 The Influence of PARP, ATR, CHK1 Inhibitors on Premature Mitotic Entry and Genomic Instability in High-Grade Serous BRCA(MUT) and BRCA(WT) Ovarian Cancer Cells Gralewska, Patrycja Gajek, Arkadiusz Rybaczek, Dorota Marczak, Agnieszka Rogalska, Aneta Cells Article Olaparib is a poly (ADP-ribose) polymerase inhibitor (PARPi) that inhibits PARP1/2, leading to replication-induced DNA damage that requires homologous recombination repair. Olaparib is often insufficient to treat BRCA-mutated (BRCA(MUT)) and BRCA wild-type (BRCA(WT)) high-grade serous ovarian carcinomas (HGSOCs). We examined the short-term (up to 48 h) efficacy of PARPi treatment on a DNA damage response pathway mediated by ATR and CHK1 kinases in BRCA(MUT) (PEO-1) and BRCA(WT) (SKOV-3 and OV-90) cells. The combination of ATRi/CHK1i with PARPi was not more cytotoxic than ATR and CHK1 monotherapy. The combination of olaparib with inhibitors of the ATR/CHK1 pathway generated chromosomal abnormalities, independent on BRCA(MUT) status of cells and formed of micronuclei (MN). However, the beneficial effect of the PARPi:ATRi combination on MN was seen only in the PEO1 BRCA(MUT) line. Monotherapy with ATR/CHK1 inhibitors reduced BrdU incorporation due to a slower rate of DNA synthesis, which resulted from elevated levels of replication stress, while simultaneous blockade of PARP and ATR caused beneficial effects only in OV-90 cells. Inhibition of ATR/CHK1 increased the formation of double-strand breaks as measured by increased γH2AX expression at collapsed replication forks, resulting in increased levels of apoptosis. Our findings indicate that ATR and CHK1 inhibitors provoke premature mitotic entry, leading to genomic instability and ultimately cell death. MDPI 2022-06-10 /pmc/articles/PMC9221516/ /pubmed/35741017 http://dx.doi.org/10.3390/cells11121889 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gralewska, Patrycja
Gajek, Arkadiusz
Rybaczek, Dorota
Marczak, Agnieszka
Rogalska, Aneta
The Influence of PARP, ATR, CHK1 Inhibitors on Premature Mitotic Entry and Genomic Instability in High-Grade Serous BRCA(MUT) and BRCA(WT) Ovarian Cancer Cells
title The Influence of PARP, ATR, CHK1 Inhibitors on Premature Mitotic Entry and Genomic Instability in High-Grade Serous BRCA(MUT) and BRCA(WT) Ovarian Cancer Cells
title_full The Influence of PARP, ATR, CHK1 Inhibitors on Premature Mitotic Entry and Genomic Instability in High-Grade Serous BRCA(MUT) and BRCA(WT) Ovarian Cancer Cells
title_fullStr The Influence of PARP, ATR, CHK1 Inhibitors on Premature Mitotic Entry and Genomic Instability in High-Grade Serous BRCA(MUT) and BRCA(WT) Ovarian Cancer Cells
title_full_unstemmed The Influence of PARP, ATR, CHK1 Inhibitors on Premature Mitotic Entry and Genomic Instability in High-Grade Serous BRCA(MUT) and BRCA(WT) Ovarian Cancer Cells
title_short The Influence of PARP, ATR, CHK1 Inhibitors on Premature Mitotic Entry and Genomic Instability in High-Grade Serous BRCA(MUT) and BRCA(WT) Ovarian Cancer Cells
title_sort influence of parp, atr, chk1 inhibitors on premature mitotic entry and genomic instability in high-grade serous brca(mut) and brca(wt) ovarian cancer cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9221516/
https://www.ncbi.nlm.nih.gov/pubmed/35741017
http://dx.doi.org/10.3390/cells11121889
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