Transactivation of MCP-1/CCL2 by β-catenin/TCF-4 in human breast cancer cells
✍ Scribed by Melanie Mestdagt; Myriam Polette; Giovanna Buttice; Agnes Noël; Atsuhisa Ueda; Jean-Michel Foidart; Christine Gilles
- Publisher
- John Wiley and Sons
- Year
- 2005
- Tongue
- French
- Weight
- 296 KB
- Volume
- 118
- Category
- Article
- ISSN
- 0020-7136
No coin nor oath required. For personal study only.
✦ Synopsis
Abstract
The loss of E‐cadherin expression and the translocation of β‐catenin to the nucleus are frequently associated with the metastatic conversion of epithelial cells. In the nucleus, β‐catenin binds to the TCF/LEF‐1 (T‐cell factor/ lymphoid enhancer factor) transcription factor family resulting in the activation of several genes, some of them having important implications in tumour progression. In our study, we investigated the potential regulation of monocyte chemotactic protein‐1 (MCP‐1/CCL2) expression by the β‐catenin/TCF pathway. This CC‐chemokine has been implicated in tumour progression events such as angiogenesis or tumour associated macrophage (TAM) infiltration. We thus demonstrated that MCP‐1 expression correlates with the reorganization of the E‐cadherin/β‐catenin complexes. Indeed, MCP‐1 was expressed by invasive breast cancer cells (MDA‐MB‐231, BT549 and Hs578T), which do not express E‐cadherin but was not produced by noninvasive breast cancer cell lines (MCF7 and T47D) expressing high level of E‐cadherin. In addition, the MCP‐1 promoter was activated in BT549 breast cancer cells transfected with β‐catenin and TCF‐4 cDNAs. The MCP‐1 mRNA level was similarly upregulated. Moreover, we showed that MCP‐1 mRNA was downregulated after transfection with a siRNA against β‐catenin in both BT549 and Hs578T cells. Our results therefore identify MCP‐1 as a target of the β‐catenin/TCF/LEF pathway in breast tumour cells, a regulation which could play a key role in breast tumour progression. © 2005 Wiley‐Liss, Inc.
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