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Tackling the Cytotoxic Effect of a Marine Polycyclic Quinone-Type Metabolite: Halenaquinone Induces Molt 4 Cells Apoptosis via Oxidative Stress Combined with the Inhibition of HDAC and Topoisomerase Activities

A marine polycyclic quinone-type metabolite, halenaquinone (HQ), was found to inhibit the proliferation of Molt 4, K562, MDA-MB-231 and DLD-1 cancer cell lines, with IC(50) of 0.48, 0.18, 8.0 and 6.76 μg/mL, respectively. It exhibited the most potent activity against leukemia Molt 4 cells. Accumulat...

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Autores principales: Shih, Shou-Ping, Lee, Man-Gang, El-Shazly, Mohamed, Juan, Yung-Shun, Wen, Zhi-Hong, Du, Ying-Chi, Su, Jui-Hsin, Sung, Ping-Jyun, Chen, Yu-Cheng, Yang, Juan-Cheng, Wu, Yang-Chang, Lu, Mei-Chin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4446623/
https://www.ncbi.nlm.nih.gov/pubmed/26006712
http://dx.doi.org/10.3390/md13053132
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author Shih, Shou-Ping
Lee, Man-Gang
El-Shazly, Mohamed
Juan, Yung-Shun
Wen, Zhi-Hong
Du, Ying-Chi
Su, Jui-Hsin
Sung, Ping-Jyun
Chen, Yu-Cheng
Yang, Juan-Cheng
Wu, Yang-Chang
Lu, Mei-Chin
author_facet Shih, Shou-Ping
Lee, Man-Gang
El-Shazly, Mohamed
Juan, Yung-Shun
Wen, Zhi-Hong
Du, Ying-Chi
Su, Jui-Hsin
Sung, Ping-Jyun
Chen, Yu-Cheng
Yang, Juan-Cheng
Wu, Yang-Chang
Lu, Mei-Chin
author_sort Shih, Shou-Ping
collection PubMed
description A marine polycyclic quinone-type metabolite, halenaquinone (HQ), was found to inhibit the proliferation of Molt 4, K562, MDA-MB-231 and DLD-1 cancer cell lines, with IC(50) of 0.48, 0.18, 8.0 and 6.76 μg/mL, respectively. It exhibited the most potent activity against leukemia Molt 4 cells. Accumulating evidence showed that HQ may act as a potent protein kinase inhibitor in cancer therapy. To fully understand the mechanism of HQ, we further explored the precise molecular targets in leukemia Molt 4 cells. We found that the use of HQ increased apoptosis by 26.23%–70.27% and caused disruption of mitochondrial membrane potential (MMP) by 17.15%–53.25% in a dose-dependent manner, as demonstrated by Annexin-V/PI and JC-1 staining assays, respectively. Moreover, our findings indicated that the pretreatment of Molt 4 cells with N-acetyl-l-cysteine (NAC), a reactive oxygen species (ROS) scavenger, diminished MMP disruption and apoptosis induced by HQ, suggesting that ROS overproduction plays a crucial rule in the cytotoxic activity of HQ. The results of a cell-free system assay indicated that HQ could act as an HDAC and topoisomerase catalytic inhibitor through the inhibition of pan-HDAC and topoisomerase IIα expression, respectively. On the protein level, the expression of the anti-apoptotic proteins p-Akt, NFκB, HDAC and Bcl-2, as well as hexokinase II was inhibited by the use of HQ. On the other hand, the expression of the pro-apoptotic protein Bax, PARP cleavage, caspase activation and cytochrome c release were increased after HQ treatment. Taken together, our results suggested that the antileukemic effect of HQ is ROS-mediated mitochondrial apoptosis combined with the inhibitory effect on HDAC and topoisomerase activities.
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spelling pubmed-44466232015-05-29 Tackling the Cytotoxic Effect of a Marine Polycyclic Quinone-Type Metabolite: Halenaquinone Induces Molt 4 Cells Apoptosis via Oxidative Stress Combined with the Inhibition of HDAC and Topoisomerase Activities Shih, Shou-Ping Lee, Man-Gang El-Shazly, Mohamed Juan, Yung-Shun Wen, Zhi-Hong Du, Ying-Chi Su, Jui-Hsin Sung, Ping-Jyun Chen, Yu-Cheng Yang, Juan-Cheng Wu, Yang-Chang Lu, Mei-Chin Mar Drugs Article A marine polycyclic quinone-type metabolite, halenaquinone (HQ), was found to inhibit the proliferation of Molt 4, K562, MDA-MB-231 and DLD-1 cancer cell lines, with IC(50) of 0.48, 0.18, 8.0 and 6.76 μg/mL, respectively. It exhibited the most potent activity against leukemia Molt 4 cells. Accumulating evidence showed that HQ may act as a potent protein kinase inhibitor in cancer therapy. To fully understand the mechanism of HQ, we further explored the precise molecular targets in leukemia Molt 4 cells. We found that the use of HQ increased apoptosis by 26.23%–70.27% and caused disruption of mitochondrial membrane potential (MMP) by 17.15%–53.25% in a dose-dependent manner, as demonstrated by Annexin-V/PI and JC-1 staining assays, respectively. Moreover, our findings indicated that the pretreatment of Molt 4 cells with N-acetyl-l-cysteine (NAC), a reactive oxygen species (ROS) scavenger, diminished MMP disruption and apoptosis induced by HQ, suggesting that ROS overproduction plays a crucial rule in the cytotoxic activity of HQ. The results of a cell-free system assay indicated that HQ could act as an HDAC and topoisomerase catalytic inhibitor through the inhibition of pan-HDAC and topoisomerase IIα expression, respectively. On the protein level, the expression of the anti-apoptotic proteins p-Akt, NFκB, HDAC and Bcl-2, as well as hexokinase II was inhibited by the use of HQ. On the other hand, the expression of the pro-apoptotic protein Bax, PARP cleavage, caspase activation and cytochrome c release were increased after HQ treatment. Taken together, our results suggested that the antileukemic effect of HQ is ROS-mediated mitochondrial apoptosis combined with the inhibitory effect on HDAC and topoisomerase activities. MDPI 2015-05-20 /pmc/articles/PMC4446623/ /pubmed/26006712 http://dx.doi.org/10.3390/md13053132 Text en © 2015 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Shih, Shou-Ping
Lee, Man-Gang
El-Shazly, Mohamed
Juan, Yung-Shun
Wen, Zhi-Hong
Du, Ying-Chi
Su, Jui-Hsin
Sung, Ping-Jyun
Chen, Yu-Cheng
Yang, Juan-Cheng
Wu, Yang-Chang
Lu, Mei-Chin
Tackling the Cytotoxic Effect of a Marine Polycyclic Quinone-Type Metabolite: Halenaquinone Induces Molt 4 Cells Apoptosis via Oxidative Stress Combined with the Inhibition of HDAC and Topoisomerase Activities
title Tackling the Cytotoxic Effect of a Marine Polycyclic Quinone-Type Metabolite: Halenaquinone Induces Molt 4 Cells Apoptosis via Oxidative Stress Combined with the Inhibition of HDAC and Topoisomerase Activities
title_full Tackling the Cytotoxic Effect of a Marine Polycyclic Quinone-Type Metabolite: Halenaquinone Induces Molt 4 Cells Apoptosis via Oxidative Stress Combined with the Inhibition of HDAC and Topoisomerase Activities
title_fullStr Tackling the Cytotoxic Effect of a Marine Polycyclic Quinone-Type Metabolite: Halenaquinone Induces Molt 4 Cells Apoptosis via Oxidative Stress Combined with the Inhibition of HDAC and Topoisomerase Activities
title_full_unstemmed Tackling the Cytotoxic Effect of a Marine Polycyclic Quinone-Type Metabolite: Halenaquinone Induces Molt 4 Cells Apoptosis via Oxidative Stress Combined with the Inhibition of HDAC and Topoisomerase Activities
title_short Tackling the Cytotoxic Effect of a Marine Polycyclic Quinone-Type Metabolite: Halenaquinone Induces Molt 4 Cells Apoptosis via Oxidative Stress Combined with the Inhibition of HDAC and Topoisomerase Activities
title_sort tackling the cytotoxic effect of a marine polycyclic quinone-type metabolite: halenaquinone induces molt 4 cells apoptosis via oxidative stress combined with the inhibition of hdac and topoisomerase activities
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4446623/
https://www.ncbi.nlm.nih.gov/pubmed/26006712
http://dx.doi.org/10.3390/md13053132
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