4.5 Article

Lapatinib-Mediated Cyclooxygenase-2 Expression via Epidermal Growth Factor Receptor/HuR Interaction Enhances the Aggressiveness of Triple-Negative Breast Cancer Cells

Journal

MOLECULAR PHARMACOLOGY
Volume 83, Issue 4, Pages 857-869

Publisher

AMER SOC PHARMACOLOGY EXPERIMENTAL THERAPEUTICS
DOI: 10.1124/mol.112.082743

Keywords

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Funding

  1. National Science Council of Taiwan [NSC-97-2320-B-039-033-MY3, NSC-100-3112-B-039-006, NSC-101-2320-B-039-049, NSC-100-2320-B-039-021]
  2. National Health Research Institutes of Taiwan [NHRI-EX-101-9812BC]
  3. Cancer Center Research of Excellence [DOH-TD-C-111-005]
  4. E-Da Hospital [EDAHT100024, EDAHT100026]
  5. University of Texas MD Anderson Cancer Center/China Medical University Hospital Sister Institution Fund
  6. National Science Council of Taiwan. [NSC-100-2320-B-039- 022, NSC-99-2320-B-039-030-MY3, NSC-100-2321-B-039-004, NSC-98-3112-B-039-002, NSC-99-3112-B-039-002, NSC-101-2911-I-002-303, NSC-99-2632-B-039-001-MY3]

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Lapatinib, a dual epidermal growth factor receptor (EGFR)/human epidermal growth factor receptor 2 (HER2) kinase inhibitor, showed clinical benefits in advanced HER2-positive breast cancer patients. Because some triple-negative breast cancers (TNBCs) frequently overexpress EGFR, the antitumor activity of lapatinib in such diseases was also tested. However, the results showed a worse event-free survival rate. It remains unknown whether and how lapatinib elicits the aggressiveness of such cancer cells. In this study, our results demonstrated that lapatinib facilitated axillary and lung metastases of triple-negative MDA-MB-231 breast cancer cells without affecting their viability, leading to worse survival in orthotopic xenograft mice. The lapatinib-increased motility was attributed by the elevation of EGFR through the downregulation of microRNA-7 and by the subsequent overexpression of cyclooxygenase-2 (COX-2). Strikingly, independent of its kinase activity, the elevated EGFR at least partly stabilized COX-2 expression by enhancing the binding of HuR to COX-2 mRNA. Our results suggest that lapatinib may increase the migration and invasion of MDA-MB-231 cells by upregulating EGFR and COX-2 through the downregulation of microRNA-7, providing a potential explanation for the worse clinical outcome of TNBC patients who receive lapatinib-based treatment. These findings also shed new light on the molecular mechanism of COX-2 mRNA stabilization by EGFR in a kinase-independent manner.

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