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Published in: Breast Cancer Research 6/2011

Open Access 01-12-2011 | Research article

Activator protein 1 (AP-1) contributes to EpCAM-dependent breast cancer invasion

Authors: Narendra V Sankpal, John D Mayfield, Mike W Willman, Timothy P Fleming, William E Gillanders

Published in: Breast Cancer Research | Issue 6/2011

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Abstract

Introduction

EpCAM is a cell-surface glycoprotein that is overexpressed in the majority of epithelial carcinomas. However, the functional role of EpCAM in regulating cancer invasion remains controversial, and the mechanism(s) underlying EpCAM-mediated regulation of breast cancer invasion remain to be defined.

Methods

EpCAM expression was manipulated in breast cancer cell lines using RNA interference and cDNA expression constructs. Recombinant EpCAM was used to rescue EpCAM signaling following specific ablation of EpCAM. Protein and gene expression, invasion, transcription factor activity, and protein phosphorylation were measured using standard molecular biology techniques.

Results

In loss-of-function, and gain-of-function experiments we demonstrate that EpCAM expression is associated with increased breast cancer invasion in vitro and in vivo. We demonstrate further that specific ablation of EpCAM expression is associated with decreased activator protein-1 (AP-1) transcription factor activity. Phosphoprotein analyses confirm that specific ablation of EpCAM is associated with decreased phosphorylation of the AP-1 subunit c-Jun. Recombinant soluble extracellular EpCAM (rEpCAM) is able to rescue invasion, AP-1 transcription factor activity, and c-Jun phosphorylation in a dose-dependent fashion. Pharmacologic inhibitors, and constitutively active constructs of the c-Jun N-terminal kinase (JNK) signal transduction pathway, suggest that the impact of EpCAM expression on AP-1 transcription factor activity is mediated through the JNK pathway. In functional rescue experiments, forced expression of c-Jun rescues invasion in breast cancer cells following specific ablation of EpCAM.

Conclusions

These data demonstrate for the first time that EpCAM expression can influence the JNK/AP-1 signal transduction pathway, and suggest that modulation of AP-1 transcription factor activity contributes to EpCAM-dependent breast cancer invasion. These data have important implications for the design and application of molecular therapies targeting EpCAM.
Appendix
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Metadata
Title
Activator protein 1 (AP-1) contributes to EpCAM-dependent breast cancer invasion
Authors
Narendra V Sankpal
John D Mayfield
Mike W Willman
Timothy P Fleming
William E Gillanders
Publication date
01-12-2011
Publisher
BioMed Central
Published in
Breast Cancer Research / Issue 6/2011
Electronic ISSN: 1465-542X
DOI
https://doi.org/10.1186/bcr3070

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