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DNA damage and apoptosis induced by a potent orally podophyllotoxin derivative in breast cancer

BACKGROUND: Targeting TopoisomeraseII (TopoII) and generate enzyme mediated DNA damage is an effective strategy for treatment of breast cancer. TopoII is known as a validated target for drug discovery and cancer chemotherapy. METHODS: XWL-1-48, a new orally podophyllotoxin derivative, was designed a...

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Autores principales: Wang, Yajie, Sun, Hua, Xiao, Zhiyan, Zhang, Gang, Zhang, Dan, Bao, Xiuqi, Li, Fangfang, Wu, Shaoyu, Gao, Yuanchao, Wei, Ning
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6122736/
https://www.ncbi.nlm.nih.gov/pubmed/30176902
http://dx.doi.org/10.1186/s12964-018-0263-9
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author Wang, Yajie
Sun, Hua
Xiao, Zhiyan
Zhang, Gang
Zhang, Dan
Bao, Xiuqi
Li, Fangfang
Wu, Shaoyu
Gao, Yuanchao
Wei, Ning
author_facet Wang, Yajie
Sun, Hua
Xiao, Zhiyan
Zhang, Gang
Zhang, Dan
Bao, Xiuqi
Li, Fangfang
Wu, Shaoyu
Gao, Yuanchao
Wei, Ning
author_sort Wang, Yajie
collection PubMed
description BACKGROUND: Targeting TopoisomeraseII (TopoII) and generate enzyme mediated DNA damage is an effective strategy for treatment of breast cancer. TopoII is known as a validated target for drug discovery and cancer chemotherapy. METHODS: XWL-1-48, a new orally podophyllotoxin derivative, was designed and synthesized. The effect of XWL-1-48 on TopoII binding and activity was determined by molecular docking software and kDNA-decatenation assay, respectively. In vitro and in vivo breast cancer models were used to document the antitumor activity of XWL-1-48. Cellular apoptosis, cell cycle and ROS were analyzed by flow cytometry. Alteration of XWL-1-48-mediated downstream pathways was determined by western blot analysis. RESULTS: The cytotoxicity of XWL-1-48 is more potent than that of its congener GL331. Molecular docking demonstrated that XWL-1-48 could bind to TopoII through forming two strong hydrogen bonds and potential pi-pi interactions. Noticeably, XWL-1-48 exerts potent antitumor activity in in vitro and in vivo breast cancer model. Treatment with XWL-1-48 caused ROS generation and triggered DNA damage through induction of γ-H2AX and activation of ATM/p53/p21 pathway. Further studies showed that XWL-1-48 led to S-phase arrest and mitochondrial apoptosis. Meanwhile, XWL-1-48 significantly blocked PI3K/Akt/Mdm2 pathway and enhanced Mdm2 degradation. CONCLUSION: XWL-1-48 may be a promising orally topoII inhibitor, its mechanisms are associated with suppression of TopoII, induction of DNA damage and apoptosis, blockage of PI3K/AKT/Mdm2 pathway.
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spelling pubmed-61227362018-09-10 DNA damage and apoptosis induced by a potent orally podophyllotoxin derivative in breast cancer Wang, Yajie Sun, Hua Xiao, Zhiyan Zhang, Gang Zhang, Dan Bao, Xiuqi Li, Fangfang Wu, Shaoyu Gao, Yuanchao Wei, Ning Cell Commun Signal Research BACKGROUND: Targeting TopoisomeraseII (TopoII) and generate enzyme mediated DNA damage is an effective strategy for treatment of breast cancer. TopoII is known as a validated target for drug discovery and cancer chemotherapy. METHODS: XWL-1-48, a new orally podophyllotoxin derivative, was designed and synthesized. The effect of XWL-1-48 on TopoII binding and activity was determined by molecular docking software and kDNA-decatenation assay, respectively. In vitro and in vivo breast cancer models were used to document the antitumor activity of XWL-1-48. Cellular apoptosis, cell cycle and ROS were analyzed by flow cytometry. Alteration of XWL-1-48-mediated downstream pathways was determined by western blot analysis. RESULTS: The cytotoxicity of XWL-1-48 is more potent than that of its congener GL331. Molecular docking demonstrated that XWL-1-48 could bind to TopoII through forming two strong hydrogen bonds and potential pi-pi interactions. Noticeably, XWL-1-48 exerts potent antitumor activity in in vitro and in vivo breast cancer model. Treatment with XWL-1-48 caused ROS generation and triggered DNA damage through induction of γ-H2AX and activation of ATM/p53/p21 pathway. Further studies showed that XWL-1-48 led to S-phase arrest and mitochondrial apoptosis. Meanwhile, XWL-1-48 significantly blocked PI3K/Akt/Mdm2 pathway and enhanced Mdm2 degradation. CONCLUSION: XWL-1-48 may be a promising orally topoII inhibitor, its mechanisms are associated with suppression of TopoII, induction of DNA damage and apoptosis, blockage of PI3K/AKT/Mdm2 pathway. BioMed Central 2018-09-03 /pmc/articles/PMC6122736/ /pubmed/30176902 http://dx.doi.org/10.1186/s12964-018-0263-9 Text en © The Author(s). 2018 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Wang, Yajie
Sun, Hua
Xiao, Zhiyan
Zhang, Gang
Zhang, Dan
Bao, Xiuqi
Li, Fangfang
Wu, Shaoyu
Gao, Yuanchao
Wei, Ning
DNA damage and apoptosis induced by a potent orally podophyllotoxin derivative in breast cancer
title DNA damage and apoptosis induced by a potent orally podophyllotoxin derivative in breast cancer
title_full DNA damage and apoptosis induced by a potent orally podophyllotoxin derivative in breast cancer
title_fullStr DNA damage and apoptosis induced by a potent orally podophyllotoxin derivative in breast cancer
title_full_unstemmed DNA damage and apoptosis induced by a potent orally podophyllotoxin derivative in breast cancer
title_short DNA damage and apoptosis induced by a potent orally podophyllotoxin derivative in breast cancer
title_sort dna damage and apoptosis induced by a potent orally podophyllotoxin derivative in breast cancer
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6122736/
https://www.ncbi.nlm.nih.gov/pubmed/30176902
http://dx.doi.org/10.1186/s12964-018-0263-9
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