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CFS-1686 Causes Cell Cycle Arrest at Intra-S Phase by Interference of Interaction of Topoisomerase 1 with DNA

CFS-1686 (chemical name (E)-N-(2-(diethylamino)ethyl)-4-(2-(2-(5-nitrofuran-2-yl)vinyl)quinolin-4-ylamino)benzamide) inhibits cell proliferation and triggers late apoptosis in prostate cancer cell lines. Comparing the effect of CFS-1686 on cell cycle progression with the topoisomerase 1 inhibitor ca...

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Autores principales: Lin, Ru-Wei, Yang, Chia-Ning, Ku, ShengYu, Ho, Cheng-Jung, Huang, Shih-Bo, Yang, Min-Chi, Chang, Hsin-Wen, Lin, Chun-Mao, Hwang, Jaulang, Chen, Yeh-Long, Tzeng, Cherg-Chyi, Wang, Chihuei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4252032/
https://www.ncbi.nlm.nih.gov/pubmed/25460368
http://dx.doi.org/10.1371/journal.pone.0113832
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author Lin, Ru-Wei
Yang, Chia-Ning
Ku, ShengYu
Ho, Cheng-Jung
Huang, Shih-Bo
Yang, Min-Chi
Chang, Hsin-Wen
Lin, Chun-Mao
Hwang, Jaulang
Chen, Yeh-Long
Tzeng, Cherg-Chyi
Wang, Chihuei
author_facet Lin, Ru-Wei
Yang, Chia-Ning
Ku, ShengYu
Ho, Cheng-Jung
Huang, Shih-Bo
Yang, Min-Chi
Chang, Hsin-Wen
Lin, Chun-Mao
Hwang, Jaulang
Chen, Yeh-Long
Tzeng, Cherg-Chyi
Wang, Chihuei
author_sort Lin, Ru-Wei
collection PubMed
description CFS-1686 (chemical name (E)-N-(2-(diethylamino)ethyl)-4-(2-(2-(5-nitrofuran-2-yl)vinyl)quinolin-4-ylamino)benzamide) inhibits cell proliferation and triggers late apoptosis in prostate cancer cell lines. Comparing the effect of CFS-1686 on cell cycle progression with the topoisomerase 1 inhibitor camptothecin revealed that CFS-1686 and camptothecin reduced DNA synthesis in S-phase, resulting in cell cycle arrest at the intra-S phase and G1-S boundary, respectively. The DNA damage in CFS-1686 and camptothecin treated cells was evaluated by the level of ATM phosphorylation, γH2AX, and γH2AX foci, showing that camptothecin was more effective than CFS-1686. However, despite its lower DNA damage capacity, CFS-1686 demonstrated 4-fold higher inhibition of topoisomerase 1 than camptothecin in a DNA relaxation assay. Unlike camptothecin, CFS-1686 demonstrated no activity on topoisomerase 1 in a DNA cleavage assay, but nevertheless it reduced the camptothecin-induced DNA cleavage of topoisomerase 1 in a dose-dependent manner. Our results indicate that CFS-1686 might bind to topoisomerase 1 to inhibit this enzyme from interacting with DNA relaxation activity, unlike campothecin's induction of a topoisomerase 1-DNA cleavage complex. Finally, we used a computer docking strategy to localize the potential binding site of CFS-1686 to topoisomerase 1, further indicating that CFS-1686 might inhibit the binding of Top1 to DNA.
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spelling pubmed-42520322014-12-05 CFS-1686 Causes Cell Cycle Arrest at Intra-S Phase by Interference of Interaction of Topoisomerase 1 with DNA Lin, Ru-Wei Yang, Chia-Ning Ku, ShengYu Ho, Cheng-Jung Huang, Shih-Bo Yang, Min-Chi Chang, Hsin-Wen Lin, Chun-Mao Hwang, Jaulang Chen, Yeh-Long Tzeng, Cherg-Chyi Wang, Chihuei PLoS One Research Article CFS-1686 (chemical name (E)-N-(2-(diethylamino)ethyl)-4-(2-(2-(5-nitrofuran-2-yl)vinyl)quinolin-4-ylamino)benzamide) inhibits cell proliferation and triggers late apoptosis in prostate cancer cell lines. Comparing the effect of CFS-1686 on cell cycle progression with the topoisomerase 1 inhibitor camptothecin revealed that CFS-1686 and camptothecin reduced DNA synthesis in S-phase, resulting in cell cycle arrest at the intra-S phase and G1-S boundary, respectively. The DNA damage in CFS-1686 and camptothecin treated cells was evaluated by the level of ATM phosphorylation, γH2AX, and γH2AX foci, showing that camptothecin was more effective than CFS-1686. However, despite its lower DNA damage capacity, CFS-1686 demonstrated 4-fold higher inhibition of topoisomerase 1 than camptothecin in a DNA relaxation assay. Unlike camptothecin, CFS-1686 demonstrated no activity on topoisomerase 1 in a DNA cleavage assay, but nevertheless it reduced the camptothecin-induced DNA cleavage of topoisomerase 1 in a dose-dependent manner. Our results indicate that CFS-1686 might bind to topoisomerase 1 to inhibit this enzyme from interacting with DNA relaxation activity, unlike campothecin's induction of a topoisomerase 1-DNA cleavage complex. Finally, we used a computer docking strategy to localize the potential binding site of CFS-1686 to topoisomerase 1, further indicating that CFS-1686 might inhibit the binding of Top1 to DNA. Public Library of Science 2014-12-02 /pmc/articles/PMC4252032/ /pubmed/25460368 http://dx.doi.org/10.1371/journal.pone.0113832 Text en © 2014 Lin et al http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Lin, Ru-Wei
Yang, Chia-Ning
Ku, ShengYu
Ho, Cheng-Jung
Huang, Shih-Bo
Yang, Min-Chi
Chang, Hsin-Wen
Lin, Chun-Mao
Hwang, Jaulang
Chen, Yeh-Long
Tzeng, Cherg-Chyi
Wang, Chihuei
CFS-1686 Causes Cell Cycle Arrest at Intra-S Phase by Interference of Interaction of Topoisomerase 1 with DNA
title CFS-1686 Causes Cell Cycle Arrest at Intra-S Phase by Interference of Interaction of Topoisomerase 1 with DNA
title_full CFS-1686 Causes Cell Cycle Arrest at Intra-S Phase by Interference of Interaction of Topoisomerase 1 with DNA
title_fullStr CFS-1686 Causes Cell Cycle Arrest at Intra-S Phase by Interference of Interaction of Topoisomerase 1 with DNA
title_full_unstemmed CFS-1686 Causes Cell Cycle Arrest at Intra-S Phase by Interference of Interaction of Topoisomerase 1 with DNA
title_short CFS-1686 Causes Cell Cycle Arrest at Intra-S Phase by Interference of Interaction of Topoisomerase 1 with DNA
title_sort cfs-1686 causes cell cycle arrest at intra-s phase by interference of interaction of topoisomerase 1 with dna
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4252032/
https://www.ncbi.nlm.nih.gov/pubmed/25460368
http://dx.doi.org/10.1371/journal.pone.0113832
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