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Artemisinin Derivatives Target Topoisomerase 1 and Cause DNA Damage in Silico and in Vitro

DNA topoisomerases 1 and 2 are enzymes that maintain DNA topology and play important essential genome functions, including DNA replication and transcription. Aberrant topoisomerases cause genome instability and a wide range of diseases, cancer in particular. Both Topo 1 and 2 are the targets of valu...

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Autores principales: Kadioglu, Onat, Chan, Ariel, Cong Ling Qiu, Alena, Wong, Vincent Kam Wai, Colligs, Vanessa, Wecklein, Sabine, Freund-Henni Rached, Halima, Efferth, Thomas, Hsiao, Wen-Luan Wendy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5640709/
https://www.ncbi.nlm.nih.gov/pubmed/29062278
http://dx.doi.org/10.3389/fphar.2017.00711
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author Kadioglu, Onat
Chan, Ariel
Cong Ling Qiu, Alena
Wong, Vincent Kam Wai
Colligs, Vanessa
Wecklein, Sabine
Freund-Henni Rached, Halima
Efferth, Thomas
Hsiao, Wen-Luan Wendy
author_facet Kadioglu, Onat
Chan, Ariel
Cong Ling Qiu, Alena
Wong, Vincent Kam Wai
Colligs, Vanessa
Wecklein, Sabine
Freund-Henni Rached, Halima
Efferth, Thomas
Hsiao, Wen-Luan Wendy
author_sort Kadioglu, Onat
collection PubMed
description DNA topoisomerases 1 and 2 are enzymes that maintain DNA topology and play important essential genome functions, including DNA replication and transcription. Aberrant topoisomerases cause genome instability and a wide range of diseases, cancer in particular. Both Topo 1 and 2 are the targets of valuable anticancer drugs, such as camptothecin. It has been previously shown that artemisinin, a sesquiterpene lactone from Artemisia annua L. also known as qinghaosu, possesses anti-cancer effects and one of its derivatives, artesunate inhibits Topo 2. In this study, we evaluated artemisinin and 40 derivatives as potential Topo 1 inhibitors at first by in silico molecular docking analyses. Five compounds that showed comparable binding energies and similar docking poses were selected for in vitro cytotoxicity test and Comet assay for DNA damage. WWLL-013, WWLL-022, and WWLL-1098 showed the lowest binding energy also induced DNA damage in the Comet assay. CMK-0298 and CMK-0398 intercalated into DNA and induced mild DNA damage. All selected compounds, WWLL-013 in particular, were more cytotoxic toward the rat tumor cells than to the normal cells. In conclusion, the artemisinin derivatives such as CMK-0298, CMK-0398, WWLL-013, WWLL-022, and WWLL-1098 can be further developed as Topo 1 inhibitors.
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spelling pubmed-56407092017-10-23 Artemisinin Derivatives Target Topoisomerase 1 and Cause DNA Damage in Silico and in Vitro Kadioglu, Onat Chan, Ariel Cong Ling Qiu, Alena Wong, Vincent Kam Wai Colligs, Vanessa Wecklein, Sabine Freund-Henni Rached, Halima Efferth, Thomas Hsiao, Wen-Luan Wendy Front Pharmacol Pharmacology DNA topoisomerases 1 and 2 are enzymes that maintain DNA topology and play important essential genome functions, including DNA replication and transcription. Aberrant topoisomerases cause genome instability and a wide range of diseases, cancer in particular. Both Topo 1 and 2 are the targets of valuable anticancer drugs, such as camptothecin. It has been previously shown that artemisinin, a sesquiterpene lactone from Artemisia annua L. also known as qinghaosu, possesses anti-cancer effects and one of its derivatives, artesunate inhibits Topo 2. In this study, we evaluated artemisinin and 40 derivatives as potential Topo 1 inhibitors at first by in silico molecular docking analyses. Five compounds that showed comparable binding energies and similar docking poses were selected for in vitro cytotoxicity test and Comet assay for DNA damage. WWLL-013, WWLL-022, and WWLL-1098 showed the lowest binding energy also induced DNA damage in the Comet assay. CMK-0298 and CMK-0398 intercalated into DNA and induced mild DNA damage. All selected compounds, WWLL-013 in particular, were more cytotoxic toward the rat tumor cells than to the normal cells. In conclusion, the artemisinin derivatives such as CMK-0298, CMK-0398, WWLL-013, WWLL-022, and WWLL-1098 can be further developed as Topo 1 inhibitors. Frontiers Media S.A. 2017-10-09 /pmc/articles/PMC5640709/ /pubmed/29062278 http://dx.doi.org/10.3389/fphar.2017.00711 Text en Copyright © 2017 Kadioglu, Chan, Cong Ling Qiu, Wong, Colligs, Wecklein, Freund-Henni Rached, Efferth and Hsiao. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Kadioglu, Onat
Chan, Ariel
Cong Ling Qiu, Alena
Wong, Vincent Kam Wai
Colligs, Vanessa
Wecklein, Sabine
Freund-Henni Rached, Halima
Efferth, Thomas
Hsiao, Wen-Luan Wendy
Artemisinin Derivatives Target Topoisomerase 1 and Cause DNA Damage in Silico and in Vitro
title Artemisinin Derivatives Target Topoisomerase 1 and Cause DNA Damage in Silico and in Vitro
title_full Artemisinin Derivatives Target Topoisomerase 1 and Cause DNA Damage in Silico and in Vitro
title_fullStr Artemisinin Derivatives Target Topoisomerase 1 and Cause DNA Damage in Silico and in Vitro
title_full_unstemmed Artemisinin Derivatives Target Topoisomerase 1 and Cause DNA Damage in Silico and in Vitro
title_short Artemisinin Derivatives Target Topoisomerase 1 and Cause DNA Damage in Silico and in Vitro
title_sort artemisinin derivatives target topoisomerase 1 and cause dna damage in silico and in vitro
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5640709/
https://www.ncbi.nlm.nih.gov/pubmed/29062278
http://dx.doi.org/10.3389/fphar.2017.00711
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