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JCS ePress online publication date 21 Oct 2008
doi: 10.1242/jcs.029769


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Research Article

Signaling through urokinase and urokinase receptor in lung cancer cells requires interactions with {beta}1 integrins


Chi-Hui Tang, Marla L. Hill, Alexis N. Brumwell, Harold A. Chapman, and Ying Wei*
* Author for correspondence (e-mail: ying.wei{at}ucsf.edu)

The urokinase receptor (uPAR) is upregulated upon tumor cell invasion and correlates with poor lung cancer survival. Although a cis-interaction with integrins has been ascribed to uPAR, whether this interaction alone is critical to urokinase (uPA)- and uPAR-dependent signaling and tumor promotion is unclear. Here we report the functional consequences of point mutations of uPAR (H249A-D262A) that eliminate {beta}1 integrin interactions but maintain uPA binding, vitronectin attachment and association with {alpha}V integrins, caveolin and epidermal growth factor receptor. Disruption of uPAR interactions with {beta}1 integrins recapitulated previously reported findings with {beta}1-integrin-derived peptides that attenuated matrix-dependent ERK activation, MMP expression and in vitro migration by human lung adenocarcinoma cell lines. The uPAR mutant cells acquired enhanced capacity to adhere to vitronectin via uPAR-{alpha}V{beta}5-integrin, rather than through the uPAR-{alpha}3{beta}1-integrin complex and they were unable to initiate uPA signaling to activate ERK, Akt or Stat1. In an orthotopic lung cancer model, uPAR mutant cells exhibited reduced tumor size compared with cells expressing wild-type uPAR. Taken together, the results indicate that uPAR-{beta}1-integrin interactions are essential to signals induced by integrin matrix ligands or uPA that support lung cancer cell invasion in vitro and progression in vivo.


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