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MT-4 Suppresses Resistant Ovarian Cancer Growth through Targeting Tubulin and HSP27
OBJECTIVE: In this study, the anticancer mechanisms of MT-4 were examined in A2780 and multidrug-resistant NCI-ADR/res human ovarian cancer cell lines. METHODS: To evaluate the activity of MT-4, we performed in vitro cell viability and cell cycle assays and in vivo xenograft assays. Immunoblotting a...
Autores principales: | , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2015
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4397017/ https://www.ncbi.nlm.nih.gov/pubmed/25874627 http://dx.doi.org/10.1371/journal.pone.0123819 |
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author | Pai, Hui Chen Kumar, Sunil Shen, Chien-Chang Liou, Jing Ping Pan, Shiow Lin Teng, Che Ming |
author_facet | Pai, Hui Chen Kumar, Sunil Shen, Chien-Chang Liou, Jing Ping Pan, Shiow Lin Teng, Che Ming |
author_sort | Pai, Hui Chen |
collection | PubMed |
description | OBJECTIVE: In this study, the anticancer mechanisms of MT-4 were examined in A2780 and multidrug-resistant NCI-ADR/res human ovarian cancer cell lines. METHODS: To evaluate the activity of MT-4, we performed in vitro cell viability and cell cycle assays and in vivo xenograft assays. Immunoblotting analysis was carried out to evaluate the effect of MT-4 on ovarian cancer. Tubulin polymerization was determined using a tubulin binding assay. RESULTS: MT-4 (2-Methoxy-5-[2-(3,4,5-trimethoxy-phenyl)-ethyl]-phenol), a derivative of moscatilin, can inhibit both sensitive A2780 and multidrug-resistant NCI-ADR/res cell growth and viability. MT-4 inhibited tubulin polymerization to induce G2/M arrest followed by caspase-mediated apoptosis. Further studies indicated that MT-4 is not a substrate of P-glycoprotein (p-gp). MT-4 also caused G2/M cell cycle arrest, accompanied by the upregulation of cyclin B, p-Thr161 Cdc2/p34, polo-like kinase 1 (PLK1), Aurora kinase B, and phospho-Ser10-histone H3 protein levels. In addition, we found that p38 MAPK pathway activation was involved in MT-4-induced apoptosis. Most importantly, MT-4 also decreased heat shock protein 27 expression and reduced its interaction with caspase-3, which inured cancer cells to chemotherapy resistance. Treatment of cells with SB203580 or overexpression of dominant negative (DN)-p38 or wild-type HSP27 reduced PARP cleavage caused by MT-4. MT-4 induced apoptosis through regulation of p38 and HSP27. Our xenograft models also show the in vivo efficacy of MT-4. MT-4 inhibited both A2780 and NCI-ADR/res cell growth in vitro and in vivo. CONCLUSION: These findings indicate that MT-4 could be a potential lead compound for the treatment of multidrug-resistant ovarian cancer. |
format | Online Article Text |
id | pubmed-4397017 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-43970172015-04-21 MT-4 Suppresses Resistant Ovarian Cancer Growth through Targeting Tubulin and HSP27 Pai, Hui Chen Kumar, Sunil Shen, Chien-Chang Liou, Jing Ping Pan, Shiow Lin Teng, Che Ming PLoS One Research Article OBJECTIVE: In this study, the anticancer mechanisms of MT-4 were examined in A2780 and multidrug-resistant NCI-ADR/res human ovarian cancer cell lines. METHODS: To evaluate the activity of MT-4, we performed in vitro cell viability and cell cycle assays and in vivo xenograft assays. Immunoblotting analysis was carried out to evaluate the effect of MT-4 on ovarian cancer. Tubulin polymerization was determined using a tubulin binding assay. RESULTS: MT-4 (2-Methoxy-5-[2-(3,4,5-trimethoxy-phenyl)-ethyl]-phenol), a derivative of moscatilin, can inhibit both sensitive A2780 and multidrug-resistant NCI-ADR/res cell growth and viability. MT-4 inhibited tubulin polymerization to induce G2/M arrest followed by caspase-mediated apoptosis. Further studies indicated that MT-4 is not a substrate of P-glycoprotein (p-gp). MT-4 also caused G2/M cell cycle arrest, accompanied by the upregulation of cyclin B, p-Thr161 Cdc2/p34, polo-like kinase 1 (PLK1), Aurora kinase B, and phospho-Ser10-histone H3 protein levels. In addition, we found that p38 MAPK pathway activation was involved in MT-4-induced apoptosis. Most importantly, MT-4 also decreased heat shock protein 27 expression and reduced its interaction with caspase-3, which inured cancer cells to chemotherapy resistance. Treatment of cells with SB203580 or overexpression of dominant negative (DN)-p38 or wild-type HSP27 reduced PARP cleavage caused by MT-4. MT-4 induced apoptosis through regulation of p38 and HSP27. Our xenograft models also show the in vivo efficacy of MT-4. MT-4 inhibited both A2780 and NCI-ADR/res cell growth in vitro and in vivo. CONCLUSION: These findings indicate that MT-4 could be a potential lead compound for the treatment of multidrug-resistant ovarian cancer. Public Library of Science 2015-04-14 /pmc/articles/PMC4397017/ /pubmed/25874627 http://dx.doi.org/10.1371/journal.pone.0123819 Text en © 2015 Pai 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 Pai, Hui Chen Kumar, Sunil Shen, Chien-Chang Liou, Jing Ping Pan, Shiow Lin Teng, Che Ming MT-4 Suppresses Resistant Ovarian Cancer Growth through Targeting Tubulin and HSP27 |
title | MT-4 Suppresses Resistant Ovarian Cancer Growth through Targeting Tubulin and HSP27 |
title_full | MT-4 Suppresses Resistant Ovarian Cancer Growth through Targeting Tubulin and HSP27 |
title_fullStr | MT-4 Suppresses Resistant Ovarian Cancer Growth through Targeting Tubulin and HSP27 |
title_full_unstemmed | MT-4 Suppresses Resistant Ovarian Cancer Growth through Targeting Tubulin and HSP27 |
title_short | MT-4 Suppresses Resistant Ovarian Cancer Growth through Targeting Tubulin and HSP27 |
title_sort | mt-4 suppresses resistant ovarian cancer growth through targeting tubulin and hsp27 |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4397017/ https://www.ncbi.nlm.nih.gov/pubmed/25874627 http://dx.doi.org/10.1371/journal.pone.0123819 |
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