4.6 Article

Effects of SDF-1-CXCR4 signaling on microRNA expression and tumorigenesis in estrogen receptor-alpha (ER-α)-positive breast cancer cells

期刊

EXPERIMENTAL CELL RESEARCH
卷 317, 期 18, 页码 2573-2581

出版社

ELSEVIER INC
DOI: 10.1016/j.yexcr.2011.08.016

关键词

SDF-1; CXCR4; microRNA; Breast carcinoma; Hormone independence; AMD3100

资金

  1. Susan G. Komen Breast Cancer Foundation [BCTR0601198]
  2. Department of Defense Breast Cancer [BC061597, BC085426]
  3. National Institutes of Health/National Center for Research Resources [P20RR020152, NCI U54 CA113001, CA125806]
  4. Office of Naval Research [N00014-16-1-1136]
  5. CDMRP [544713, BC085426] Funding Source: Federal RePORTER

向作者/读者索取更多资源

The majority of breast cancer cases ultimately become unresponsive to endocrine therapies, and this progression of breast cancer from hormone-responsive to hormone-independent represents an area in need of further research. Additionally, hormone-independent carcinomas are characterized as being more aggressive and metastatic, key features of more advanced disease. Having previously shown the ability of the stromal-cell derived factor-1 (SDF-1)-CXCR4 signaling axis to promote primary tumorigenesis and hormone independence by overexpressing CXCR4 in MCF-7 cells, in this study we further examined the role of SDF-1/CXCR4 in the endogenously CXCR4-positive, estrogen receptor alpha (ER-alpha)-positive breast carcinoma cell line, MDA-MB-361. In addition to regulating estrogen-induced and hormone-independent tumor growth, CXCR4 signaling stimulated the epithelial-to-mesenchymal transition, evidenced by decreased CDH1 expression following SDF-1 treatment. Furthermore, inhibition of CXCR4 with the small molecule inhibitor AMD3100 induced CDH1 gene expression and inhibited CDH2 gene expression in MDA-MB-361 cells. Further, exogenous SDF-1 treatment induced ER-alpha-phosphorylation in both MDA-MB-361 and MCF-7-CXCR4 cells, demonstrating ligand-independent activation of ER-alpha through CXCR4 crosstalk. qPCR microRNA array analyses of the MDA-MB-361 and MCF-7-CXCR4 cell lines revealed changes in microRNA expression profiles induced by SDF-1, consistent with a more advanced disease phenotype and further supporting our hypothesis that the SDF-1/CXCR4 signaling axis drives ER-alpha-positive breast cancer cells to a hormone independent and more aggressive phenotype. In this first demonstration of SDF-1-CXCR4-induced microRNAs in breast cancer, we suggest that this signaling axis may promote tumorigenesis via microRNA regulation. These findings represent future potential therapeutic targets for the treatment of hormone-independent and endocrine-resistant breast cancer. (C) 2011 Elsevier Inc. All rights reserved.

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