4.6 Article

Protein-tyrosine Phosphatase 1B Antagonized Signaling by Insulin-like Growth Factor-1 Receptor and Kinase BRK/PTK6 in Ovarian Cancer Cells

Journal

JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 288, Issue 34, Pages 24923-24934

Publisher

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M113.482737

Keywords

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Funding

  1. National Institutes of Health [CA53840, GM55989]
  2. STARR Foundation
  3. Department of Defense Congressional funds
  4. Cold Spring Harbor Laboratory Cancer Centre [CA45508]
  5. Gladowsky Breast Cancer Foundation
  6. Hansen Foundation
  7. Irving Hansen Foundation
  8. Islip Breast Cancer Coalition
  9. Fannie Rippel Foundation
  10. Robertson Research Fund
  11. Masthead Cove Yacht Club Carol Marcincuk Fund

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Ovarian cancer, which is the leading cause of death from gynecological malignancies, is a heterogeneous disease known to be associated with disruption of multiple signaling pathways. Nevertheless, little is known regarding the role of protein phosphatases in the signaling events that underlie the disease; such knowledge will be essential to gain a complete understanding of the etiology of the disease and how to treat it. We have demonstrated that protein-tyrosine phosphatase 1B (PTP1B) was underexpressed in a panel of ovarian carcinoma-derived cell lines, compared with immortalized human ovarian surface epithelial cell lines. Stable restoration of PTP1B in those cancer cell lines substantially decreased cell migration and invasion, as well as proliferation and anchorage-independent survival. Mechanistically, the pro-survival IGF-1R signaling pathway was attenuated upon ectopic expression of PTP1B. This was due to dephosphorylation by PTP1B of IGF-1R beta-subunit and BRK/PTK6, an SRC-like protein-tyrosine kinase that physically and functionally interacts with the IGF-1R beta-subunit. Restoration of PTP1B expression led to enhanced activation of BAD, one of the major pro-death members of the BCL-2 family, which triggered cell death through apoptosis. Conversely, inhibition of PTP1B with a small molecular inhibitor, MSI-1436, increased proliferation and migration of immortalized HOSE cell lines. These data reveal an important role for PTP1B as a negative regulator of BRK and IGF-1R beta signaling in ovarian cancer cells.

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