PTPα regulates integrin-stimulated FAK autophosphorylation and cytoskeletal rearrangement in cell spreading and migration

Author:

Zeng Li1,Si Xiaoning123,Yu Wei-Ping1,Le Hoa Thi123,Ng Kwok Peng1,Teng Raymond M.H.1,Ryan Kenneth23,Wang Dennis Z.-M.1,Ponniah Sathivel1,Pallen Catherine J.123

Affiliation:

1. Cell Regulation Laboratory, Institute of Molecular and Cell Biology, Singapore 117609, Singapore

2. Department of Pediatrics, University of British Columbia, Vancouver, British Columbia V5Z 4H4, Canada

3. British Columbia Research Institute for Children's and Women's Health, University of British Columbia, Vancouver, British Columbia V5Z 4H4, Canada

Abstract

We investigated the molecular and cellular actions of receptor protein tyrosine phosphatase (PTP) α in integrin signaling using immortalized fibroblasts derived from wild-type and PTPα-deficient mouse embryos. Defects in PTPα−/− migration in a wound healing assay were associated with altered cell shape and focal adhesion kinase (FAK) phosphorylation. The reduced haptotaxis to fibronectin (FN) of PTPα−/− cells was increased by expression of active (but not inactive) PTPα. Integrin-mediated formation of src–FAK and fyn–FAK complexes was reduced or abolished in PTPα−/− cells on FN, concomitant with markedly reduced phosphorylation of FAK at Tyr397. Reintroduction of active (but not inactive) PTPα restored FAK Tyr-397 phosphorylation. FN-induced cytoskeletal rearrangement was retarded in PTPα−/− cells, with delayed filamentous actin stress fiber assembly and focal adhesion formation. This mimicked the effects of treating wild-type fibroblasts with the src family protein tyrosine kinase (Src-PTK) inhibitor PP2. These results, together with the reduced src/fyn tyrosine kinase activity in PTPα−/− fibroblasts (Ponniah et al., 1999; Su et al., 1999), suggest that PTPα functions in integrin signaling and cell migration as an Src-PTK activator. Our paper establishes that PTPα is required for early integrin-proximal events, acting upstream of FAK to affect the timely and efficient phosphorylation of FAK Tyr-397.

Publisher

Rockefeller University Press

Subject

Cell Biology

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