HGF induces FAK activation and integrin-mediated adhesion in MTLn3 breast carcinoma cells.

Int J Cancer

Department of Stomatology, University of California, San Francisco, San Francisco, CA, USA.

Published: November 1999

AI Article Synopsis

  • HGF and c-Met levels increase as breast cancer progresses, impacting cell behavior.
  • HGF enhances adhesion and movement of breast carcinoma cells on specific ECM proteins, relying on particular beta1 integrins.
  • The study shows that HGF activates signaling pathways through c-Met and focal adhesion kinase (FAK) in an adhesion-dependent way, and a FRNK-like protein may contribute to destabilizing cell attachments, promoting cell movement.

Article Abstract

Expression of hepatocyte growth factor (HGF) and its tyrosine kinase receptor, c-Met, is positively correlated with breast carcinoma progression. We found that in invasive and metastatic MTLn3 breast carcinoma cells, HGF stimulated both initial adhesion to and motility on the extracellular matrix (ECM) ligands laminin 1, type I collagen, and fibronectin. Next, analysis with function-perturbing antibodies showed that adhesion to the different ECM proteins was mediated through specific beta1 integrins. In MTLn3 cells, HGF induced rapid tyrosine phosphorylation and activation of both c-Met and focal adhesion kinase (FAK). Cell anchorage and adhesion to the ECM substrates was required for HGF-induced FAK activation, since HGF failed to trigger tyrosine phosphorylation of FAK in suspended cells. Our results provide evidence that the 2 signaling pathways, integrin/ECM and c-Met/HGF, cooperate synergistically to induce FAK activation in an adhesion-dependent manner, leading to enhanced cell adhesion and motility. Moreover, we found that a FRNK (the FAK-related non-kinase)-like molecule is expressed in MTLn3 cells. Since FRNK acts as a competitive inhibitor of FAK function, our results suggest that a FRNK-like protein could facilitate disassembly of focal adhesions and likely be responsible for the HGF-induced scattering and motility of MTLn3 cells.

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Source
http://dx.doi.org/10.1002/(sici)1097-0215(19991126)83:5<640::aid-ijc13>3.0.co;2-dDOI Listing

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