MMP1 expression is activated by Slug and enhances multi-drug resistance (MDR) in breast cancer.

High matrix metalloproteinase 1 (MMP1) expression is associated with enhanced breast cancer growth and metastasis and also might predict poor prognosis. In this study, we further investigated the functional role of MMP1 and how it is upregulated in multi-drug resistant (MDR) breast cancer cells. By...

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Main Authors: Ching-Ju Shen, Yu-Ling Kuo, Chien-Chung Chen, Ming-Jenn Chen, Ya-Min Cheng
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5363985?pdf=render
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author Ching-Ju Shen
Yu-Ling Kuo
Chien-Chung Chen
Ming-Jenn Chen
Ya-Min Cheng
author_facet Ching-Ju Shen
Yu-Ling Kuo
Chien-Chung Chen
Ming-Jenn Chen
Ya-Min Cheng
author_sort Ching-Ju Shen
collection DOAJ
description High matrix metalloproteinase 1 (MMP1) expression is associated with enhanced breast cancer growth and metastasis and also might predict poor prognosis. In this study, we further investigated the functional role of MMP1 and how it is upregulated in multi-drug resistant (MDR) breast cancer cells. By retrieving microarray data in GEO datasets and the survival data in the Kaplan Meier plotter, we observed that MMP1 is significantly upregulated in MCF-7/ADR cells compared to the parental MCF-7 cells, while high MMP1 expression is associated with worse overall survival (OS) and recurrence free survival (RFS) in breast cancer patients after systematic therapy. Functional studies showed that MMP1 overexpression significantly reduced the drug sensitivity in MCF-7 cells, while MMP1 knockdown substantially enhanced the sensitivity in MCF-7/ADR cells. By performing western blotting and immunofluorescent staining, we confirmed that MCF-7/ADR cells had enhanced mesenchymal properties than MCF-7 cells. In MCF-7 cells, enforced Slug expression resulted in significant MMP1 upregulation, while in MCF-7/ADR cells, Slug knockdown led to reduced MMP1 expression. By performing bioinformatic analysis, we observed that the promoter of MMP1 has three putative Slug binding sites. The following dual luciferase assay and ChIP-qPCR verified these three binding sites. Therefore, we infer that Slug enhances MMP1 transcription via directly binding to the promoter region in breast cancer cells, which is a previously unrecognized mechanism in the development of MDR.
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spelling doaj.art-b2d0f08033574675a420c0de0485960b2022-12-21T19:44:40ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01123e017448710.1371/journal.pone.0174487MMP1 expression is activated by Slug and enhances multi-drug resistance (MDR) in breast cancer.Ching-Ju ShenYu-Ling KuoChien-Chung ChenMing-Jenn ChenYa-Min ChengHigh matrix metalloproteinase 1 (MMP1) expression is associated with enhanced breast cancer growth and metastasis and also might predict poor prognosis. In this study, we further investigated the functional role of MMP1 and how it is upregulated in multi-drug resistant (MDR) breast cancer cells. By retrieving microarray data in GEO datasets and the survival data in the Kaplan Meier plotter, we observed that MMP1 is significantly upregulated in MCF-7/ADR cells compared to the parental MCF-7 cells, while high MMP1 expression is associated with worse overall survival (OS) and recurrence free survival (RFS) in breast cancer patients after systematic therapy. Functional studies showed that MMP1 overexpression significantly reduced the drug sensitivity in MCF-7 cells, while MMP1 knockdown substantially enhanced the sensitivity in MCF-7/ADR cells. By performing western blotting and immunofluorescent staining, we confirmed that MCF-7/ADR cells had enhanced mesenchymal properties than MCF-7 cells. In MCF-7 cells, enforced Slug expression resulted in significant MMP1 upregulation, while in MCF-7/ADR cells, Slug knockdown led to reduced MMP1 expression. By performing bioinformatic analysis, we observed that the promoter of MMP1 has three putative Slug binding sites. The following dual luciferase assay and ChIP-qPCR verified these three binding sites. Therefore, we infer that Slug enhances MMP1 transcription via directly binding to the promoter region in breast cancer cells, which is a previously unrecognized mechanism in the development of MDR.http://europepmc.org/articles/PMC5363985?pdf=render
spellingShingle Ching-Ju Shen
Yu-Ling Kuo
Chien-Chung Chen
Ming-Jenn Chen
Ya-Min Cheng
MMP1 expression is activated by Slug and enhances multi-drug resistance (MDR) in breast cancer.
PLoS ONE
title MMP1 expression is activated by Slug and enhances multi-drug resistance (MDR) in breast cancer.
title_full MMP1 expression is activated by Slug and enhances multi-drug resistance (MDR) in breast cancer.
title_fullStr MMP1 expression is activated by Slug and enhances multi-drug resistance (MDR) in breast cancer.
title_full_unstemmed MMP1 expression is activated by Slug and enhances multi-drug resistance (MDR) in breast cancer.
title_short MMP1 expression is activated by Slug and enhances multi-drug resistance (MDR) in breast cancer.
title_sort mmp1 expression is activated by slug and enhances multi drug resistance mdr in breast cancer
url http://europepmc.org/articles/PMC5363985?pdf=render
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AT chienchungchen mmp1expressionisactivatedbyslugandenhancesmultidrugresistancemdrinbreastcancer
AT mingjennchen mmp1expressionisactivatedbyslugandenhancesmultidrugresistancemdrinbreastcancer
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