Growth Factor–dependent Activation of αvβ3 Integrin in Normal Epithelial Cells: Implications for Tumor Invasion

Author:

Trusolino Livio11,Serini Guido11,Cecchini Germana1,Besati Cristina1,Ambesi-Impiombato Francesco Saverio1,Marchisio Pier Carlo11,De Filippi Rosaria1

Affiliation:

1. DIBIT, Department of Biological and Technological Research, San Raffaele Scientific Institute, 20132 Milano, Italy; Department of Biomedical Sciences and Human Oncology, University of Torino School of Medicine, 10126 Torino, Italy; and Department of Pathology, Clinical and Experimental Medicine, University of Udine School of Medicine, 33100 Udine, Italy

Abstract

Integrin activation is a multifaceted phenomenon leading to increased affinity and avidity for matrix ligands. To investigate whether cytokines produced during stromal infiltration of carcinoma cells activate nonfunctional epithelial integrins, a cellular system of human thyroid clones derived from normal glands (HTU-5) and papillary carcinomas (HTU-34) was employed. In HTU-5 cells, αvβ3 integrin was diffused all over the membrane, disconnected from the cytoskeleton, and unable to mediate adhesion. Conversely, in HTU-34 cells, αvβ3 was clustered at focal contacts (FCs) and mediated firm attachment and spreading. αvβ3 recruitment at FCs and ligand-binding activity, essentially identical to those of HTU-34, occurred in HTU-5 cells upon treatment with hepatocyte growth factor/scatter factor (HGF/SF). The HTU-34 clone secreted HGF/SF and its receptor was constitutively tyrosine phosphorylated suggesting an autocrine loop responsible for αvβ3 activated state. Antibody-mediated inhibition of HGF/SF function in HTU-34 cells disrupted αvβ3 enrichment at FCs and impaired adhesion. Accordingly, activation of αvβ3 in normal cells was produced by HTU-34 conditioned medium on the basis of its content of HGF/SF. These results provide the first example of a growth factor–driven integrin activation mechanism in normal epithelial cells and uncover the importance of cytokine-based autocrine loops for the physiological control of integrin activation.

Publisher

Rockefeller University Press

Subject

Cell Biology

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