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    Date Issued2006 (1)2004 (1)AuthorGoel, Hira Lal (2)King, Michael (2)Languino, Lucia R. (2)
    Moro, Loredana (2)
    Teider, Natalia (2)View MoreUMass Chan AffiliationDepartment of Cancer Biology and the Cancer Center (2)Document TypeJournal Article (2)Keyword1-Phosphatidylinositol 3-Kinase (2)Animals (2)Antigens, CD29 (2)Cancer Biology (2)Cell Adhesion (2)View MoreJournalCancer research (1)The Journal of cell biology (1)

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    Beta1 integrins modulate cell adhesion by regulating insulin-like growth factor-II levels in the microenvironment

    Goel, Hira Lal; Moro, Loredana; King, Michael; Teider, Natalia; Centrella, Michael; McCarthy, Thomas L.; Holgado-Madruga, Marina; Wong, Albert J.; Marra, Ersilia; Languino, Lucia R. (2006-01-07)
    The interactions between cancer cells and the extracellular matrix (ECM) regulate cancer progression. The beta1C and beta1A integrins, two cytoplasmic variants of the beta1 integrin subfamily, are differentially expressed in prostate cancer. Using gene expression analysis, we show here that the beta1C variant, an inhibitor of cell proliferation, which is down-regulated in prostate cancer, up-regulates insulin-like growth factor-II (IGF-II) mRNA and protein levels. In contrast, beta1A does not affect IGF-II levels. We provide evidence that beta1C-mediated up-regulation of IGF-II levels increases adhesion to Laminin-1, a basement membrane protein down-regulated in prostate cancer, and that the beta1C cytoplasmic domain contains the structural motif sufficient to increase cell adhesion to Laminin-1. This autocrine mechanism that locally supports cell adhesion to Laminin-1 via IGF-II is selectively regulated by the beta1 cytoplasmic domain via activation of the growth factor receptor binding protein 2-associated binder-1/SH2-containing protein-tyrosine phosphatase 2/phosphatidylinositol 3-kinase pathway. Thus, the concurrent local loss of beta1C integrin, of its ligand Laminin-1, and of IGF-II in the tumor microenvironment may promote prostate cancer cell invasion and metastasis by reducing cancer cell adhesive properties. It is, therefore, conceivable that reexpression of beta1C will be sufficient to revert a neoplastic phenotype to a nonproliferative and highly adherent normal phenotype.
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    Selective modulation of type 1 insulin-like growth factor receptor signaling and functions by beta1 integrins

    Goel, Hira Lal; Fornaro, Mara; Moro, Loredana; Teider, Natalia; Rhim, Johng S.; King, Michael; Languino, Lucia R. (2004-08-04)
    We show here that beta1 integrins selectively modulate insulin-like growth factor type I receptor (IGF-IR) signaling in response to IGF stimulation. The beta1A integrin forms a complex with the IGF-IR and insulin receptor substrate-1 (IRS-1); this complex does not promote IGF-I mediated cell adhesion to laminin (LN), although it does support IGF-mediated cell proliferation. In contrast, beta1C, an integrin cytoplasmic variant, increases cell adhesion to LN in response to IGF-I and its down-regulation by a ribozyme prevents IGF-mediated adhesion to LN. Moreover, beta1C completely prevents IGF-mediated cell proliferation and tumor growth by inhibiting IGF-IR auto-phosphorylation in response to IGF-I stimulation. Evidence is provided that the beta1 cytodomain plays an important role in mediating beta1 integrin association with either IRS-1 or Grb2-associated binder1 (Gab1)/SH2-containing protein-tyrosine phosphate 2 (Shp2), downstream effectors of IGF-IR: specifically, beta1A associates with IRS-1 and beta1C with Gab1/Shp2. This study unravels a novel mechanism mediated by the integrin cytoplasmic domain that differentially regulates cell adhesion to LN and cell proliferation in response to IGF.
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