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Perturbation of DNA repair pathways by proteasome inhibitors corresponds to enhanced chemosensitivity of cells to DNA damage-inducing agents

PURPOSE: Breast cancer treatment often employs DNA double-strand breaks (DSBs), such as that induced by irradiation or anticancer agents. Ubiquitination is required at the site of DNA damage and plays a crucial role in the DSB repair pathway. We investigated the effect of proteasome inhibitors on th...

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Autores principales: Takeshita, Takashi, Wu, Wenwen, Koike, Ayaka, Fukuda, Mamoru, Ohta, Tomohiko
Formato: Texto
Lenguaje:English
Publicado: Springer-Verlag 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2728221/
https://www.ncbi.nlm.nih.gov/pubmed/19274461
http://dx.doi.org/10.1007/s00280-009-0961-5
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author Takeshita, Takashi
Wu, Wenwen
Koike, Ayaka
Fukuda, Mamoru
Ohta, Tomohiko
author_facet Takeshita, Takashi
Wu, Wenwen
Koike, Ayaka
Fukuda, Mamoru
Ohta, Tomohiko
author_sort Takeshita, Takashi
collection PubMed
description PURPOSE: Breast cancer treatment often employs DNA double-strand breaks (DSBs), such as that induced by irradiation or anticancer agents. Ubiquitination is required at the site of DNA damage and plays a crucial role in the DSB repair pathway. We investigated the effect of proteasome inhibitors on the pathway after exposure to chemotherapeutic agents and examined its correlation with cytotoxicity. METHODS: Cells were exposed for 1 h to DNA damage-inducing chemotherapeutic agents. After DNA damage, nuclear foci formation of conjugated ubiquitin (Ub-foci) and cell viability were examined in the absence or presence of proteasome inhibitors MG132 and epoxomicin. RESULTS: Proteasome inhibitors trapped conjugated ubiquitin in the cytosol and blocked irinotecan (CPT-11)- and epirubicin-induced Ub-foci formation in MCF10A cells and HeLa cells, but not in MCF7 cells. MG132 sensitized MCF10A cells to CPT-11 and epirubicin treatment, demonstrating a synergistic effect. This synergistic effect is likely due to the failure to repair DNA, because a significant rise in unrepaired DNA damage was observed in the cells treated with MG132. On the other hand, no synergy was observed in MCF7 cells or when MG132 was combined with docetaxel. CONCLUSIONS: The synergistic effect of proteasome inhibitors in combination with DNA damage-inducing agents warrants further investigating into its effectiveness in the treatment of breast cancer.
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spelling pubmed-27282212009-08-19 Perturbation of DNA repair pathways by proteasome inhibitors corresponds to enhanced chemosensitivity of cells to DNA damage-inducing agents Takeshita, Takashi Wu, Wenwen Koike, Ayaka Fukuda, Mamoru Ohta, Tomohiko Cancer Chemother Pharmacol Original Article PURPOSE: Breast cancer treatment often employs DNA double-strand breaks (DSBs), such as that induced by irradiation or anticancer agents. Ubiquitination is required at the site of DNA damage and plays a crucial role in the DSB repair pathway. We investigated the effect of proteasome inhibitors on the pathway after exposure to chemotherapeutic agents and examined its correlation with cytotoxicity. METHODS: Cells were exposed for 1 h to DNA damage-inducing chemotherapeutic agents. After DNA damage, nuclear foci formation of conjugated ubiquitin (Ub-foci) and cell viability were examined in the absence or presence of proteasome inhibitors MG132 and epoxomicin. RESULTS: Proteasome inhibitors trapped conjugated ubiquitin in the cytosol and blocked irinotecan (CPT-11)- and epirubicin-induced Ub-foci formation in MCF10A cells and HeLa cells, but not in MCF7 cells. MG132 sensitized MCF10A cells to CPT-11 and epirubicin treatment, demonstrating a synergistic effect. This synergistic effect is likely due to the failure to repair DNA, because a significant rise in unrepaired DNA damage was observed in the cells treated with MG132. On the other hand, no synergy was observed in MCF7 cells or when MG132 was combined with docetaxel. CONCLUSIONS: The synergistic effect of proteasome inhibitors in combination with DNA damage-inducing agents warrants further investigating into its effectiveness in the treatment of breast cancer. Springer-Verlag 2009-03-10 2009-10 /pmc/articles/PMC2728221/ /pubmed/19274461 http://dx.doi.org/10.1007/s00280-009-0961-5 Text en © The Author(s) 2009
spellingShingle Original Article
Takeshita, Takashi
Wu, Wenwen
Koike, Ayaka
Fukuda, Mamoru
Ohta, Tomohiko
Perturbation of DNA repair pathways by proteasome inhibitors corresponds to enhanced chemosensitivity of cells to DNA damage-inducing agents
title Perturbation of DNA repair pathways by proteasome inhibitors corresponds to enhanced chemosensitivity of cells to DNA damage-inducing agents
title_full Perturbation of DNA repair pathways by proteasome inhibitors corresponds to enhanced chemosensitivity of cells to DNA damage-inducing agents
title_fullStr Perturbation of DNA repair pathways by proteasome inhibitors corresponds to enhanced chemosensitivity of cells to DNA damage-inducing agents
title_full_unstemmed Perturbation of DNA repair pathways by proteasome inhibitors corresponds to enhanced chemosensitivity of cells to DNA damage-inducing agents
title_short Perturbation of DNA repair pathways by proteasome inhibitors corresponds to enhanced chemosensitivity of cells to DNA damage-inducing agents
title_sort perturbation of dna repair pathways by proteasome inhibitors corresponds to enhanced chemosensitivity of cells to dna damage-inducing agents
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2728221/
https://www.ncbi.nlm.nih.gov/pubmed/19274461
http://dx.doi.org/10.1007/s00280-009-0961-5
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