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Repairing of N-mustard derivative BO-1055 induced DNA damage requires NER, HR, and MGMT-dependent DNA repair mechanisms

Alkylating agents are frequently used as first-line chemotherapeutics for various newly diagnosed cancers. Disruption of genome integrity by such agents can lead to cell lethality if DNA lesions are not removed. Several DNA repair mechanisms participate in the recovery of mono- or bi-functional DNA...

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Autores principales: Kuo, Ching-Ying, Chou, Wen-Cheng, Wu, Chin-Chung, Wong, Teng-Song, Kakadiya, Rajesh, Lee, Te-Chang, Su, Tsann-Long, Wang, Hui-Chun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4694865/
https://www.ncbi.nlm.nih.gov/pubmed/26208482
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author Kuo, Ching-Ying
Chou, Wen-Cheng
Wu, Chin-Chung
Wong, Teng-Song
Kakadiya, Rajesh
Lee, Te-Chang
Su, Tsann-Long
Wang, Hui-Chun
author_facet Kuo, Ching-Ying
Chou, Wen-Cheng
Wu, Chin-Chung
Wong, Teng-Song
Kakadiya, Rajesh
Lee, Te-Chang
Su, Tsann-Long
Wang, Hui-Chun
author_sort Kuo, Ching-Ying
collection PubMed
description Alkylating agents are frequently used as first-line chemotherapeutics for various newly diagnosed cancers. Disruption of genome integrity by such agents can lead to cell lethality if DNA lesions are not removed. Several DNA repair mechanisms participate in the recovery of mono- or bi-functional DNA alkylation. Thus, DNA repair capacity is correlated with the therapeutic response. Here, we assessed the function of novel water-soluble N-mustard BO-1055 (ureidomustin) in DNA damage response and repair mechanisms. As expected, BO-1055 induces ATM and ATR-mediated DNA damage response cascades, including downstream Chk1/Chk2 phosphorylation, S/G(2) cell-cycle arrest, and cell death. Further investigation revealed that cell survival sensitivity to BO-1055 is comparable to that of mitomycin C. Both compounds require nucleotide excision repair and homologous recombination, but not non-homologous end-joining, to repair conventional cross-linking DNA damage. Interestingly and unlike mitomycin C and melphalan, MGMT activity was also observed in BO-1055 damage repair systems, which reflects the occurrence of O-alkyl DNA lesions. Combined treatment with ATM/ATR kinase inhibitors significantly increases BO-1055 sensitivity. Our study pinpoints that BO-1055 can be used for treating tumors that with deficient NER, HR, and MGMT DNA repair genes, or for synergistic therapy in tumors that DNA damage response have been suppressed.
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spelling pubmed-46948652016-01-20 Repairing of N-mustard derivative BO-1055 induced DNA damage requires NER, HR, and MGMT-dependent DNA repair mechanisms Kuo, Ching-Ying Chou, Wen-Cheng Wu, Chin-Chung Wong, Teng-Song Kakadiya, Rajesh Lee, Te-Chang Su, Tsann-Long Wang, Hui-Chun Oncotarget Research Paper Alkylating agents are frequently used as first-line chemotherapeutics for various newly diagnosed cancers. Disruption of genome integrity by such agents can lead to cell lethality if DNA lesions are not removed. Several DNA repair mechanisms participate in the recovery of mono- or bi-functional DNA alkylation. Thus, DNA repair capacity is correlated with the therapeutic response. Here, we assessed the function of novel water-soluble N-mustard BO-1055 (ureidomustin) in DNA damage response and repair mechanisms. As expected, BO-1055 induces ATM and ATR-mediated DNA damage response cascades, including downstream Chk1/Chk2 phosphorylation, S/G(2) cell-cycle arrest, and cell death. Further investigation revealed that cell survival sensitivity to BO-1055 is comparable to that of mitomycin C. Both compounds require nucleotide excision repair and homologous recombination, but not non-homologous end-joining, to repair conventional cross-linking DNA damage. Interestingly and unlike mitomycin C and melphalan, MGMT activity was also observed in BO-1055 damage repair systems, which reflects the occurrence of O-alkyl DNA lesions. Combined treatment with ATM/ATR kinase inhibitors significantly increases BO-1055 sensitivity. Our study pinpoints that BO-1055 can be used for treating tumors that with deficient NER, HR, and MGMT DNA repair genes, or for synergistic therapy in tumors that DNA damage response have been suppressed. Impact Journals LLC 2015-07-17 /pmc/articles/PMC4694865/ /pubmed/26208482 Text en Copyright: © 2015 Kuo et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Kuo, Ching-Ying
Chou, Wen-Cheng
Wu, Chin-Chung
Wong, Teng-Song
Kakadiya, Rajesh
Lee, Te-Chang
Su, Tsann-Long
Wang, Hui-Chun
Repairing of N-mustard derivative BO-1055 induced DNA damage requires NER, HR, and MGMT-dependent DNA repair mechanisms
title Repairing of N-mustard derivative BO-1055 induced DNA damage requires NER, HR, and MGMT-dependent DNA repair mechanisms
title_full Repairing of N-mustard derivative BO-1055 induced DNA damage requires NER, HR, and MGMT-dependent DNA repair mechanisms
title_fullStr Repairing of N-mustard derivative BO-1055 induced DNA damage requires NER, HR, and MGMT-dependent DNA repair mechanisms
title_full_unstemmed Repairing of N-mustard derivative BO-1055 induced DNA damage requires NER, HR, and MGMT-dependent DNA repair mechanisms
title_short Repairing of N-mustard derivative BO-1055 induced DNA damage requires NER, HR, and MGMT-dependent DNA repair mechanisms
title_sort repairing of n-mustard derivative bo-1055 induced dna damage requires ner, hr, and mgmt-dependent dna repair mechanisms
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4694865/
https://www.ncbi.nlm.nih.gov/pubmed/26208482
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