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Focal adhesions require catalytic activity of Src family kinases to mediate integrin-matrix adhesion
Leiming Li1, Masaya Okura, Akira Imamoto
1The Ben May Institute for Cancer Research and Center for Molecular Oncology, Committee on Cell Physiology, The University of Chicago, Chicago, Illinois 60637, USA.
Abstract:
Members of the Src family of tyrosine kinases function to phosphorylate focal adhesion (FA) proteins. To explore the overlapping functions of Src kinases, we have targeted Csk, a negative regulator of the Src family, to FA structures. Expression of FA-targeted Csk (FA-Csk) effectively reduced the active form (nonphosphorylated at the C-terminal regulatory tyrosine) of Src members in the cell. We found that fibroblasts expressing FA-Csk lost integrin-mediated adhesion. Activated Src (SrcY529F) as well as activation of putative Src signaling mediators (Fak, Cas, Crk/CrkL, C3G, and Rap1) blocked the effect of FA-Csk in a manner dependent on Rap1. SrcY529F also inhibited activated Ras-induced cell detachment but failed to rescue detachment caused by an activated mutant of Raf1 (Raf-BXB) that Rap1 cannot inhibit. Although normal spreading onto fibronectin was restored by the beta(1) integrin affinity-activating antibody TS2/16 in cells expressing FA-Csk or Raf-BXB, FAs were lost in these cells. On the other hand, Rap1 activation could restore FAs in cells expressing FA-Csk. Activation of the executioner caspase, caspase 3, is essential for many forms of apoptosis. While a caspase 3 inhibitor (Z-DEVD-FMK) inhibited cell detachment triggered by activation of caspase 8, this inhibitor had no effect on cell detachment caused by FA-Csk. Likewise, overexpression of an activated Akt made cells resistant to the effect of caspase 8 activation, but not to the effect of FA-Csk. It is therefore likely that the primary cause of cell rounding and detachment induced by FA-Csk involves dysfunction of FAs rather than caspase-mediated apoptosis that may result from possible loss of survival signals mediated by Src family kinases. We suggest that endogenous Src family kinases are essential for FAs through activation of Rap1 in fibroblasts.
Insights
Targeting Csk to focal adhesions disrupts cell adhesion by inhibiting Src kinases. Rap1 activation, not caspase activity, rescues these focal adhesions and prevents cell detachment.
Area of Science:
- Cell Biology
- Biochemistry
- Molecular Biology
Background:
- Src family kinases phosphorylate focal adhesion proteins, regulating cell adhesion.
- Csk is a negative regulator of Src family kinases.
Purpose of the Study:
- To investigate the overlapping functions of Src kinases by targeting Csk to focal adhesions.
- To determine the role of Rap1 and caspase pathways in FA-Csk-induced cell detachment.
Main Methods:
- Expression of focal adhesion-targeted Csk (FA-Csk) in fibroblasts.
- Analysis of Src kinase activity, cell adhesion, and focal adhesion formation.
- Manipulation of signaling pathways including Src, Ras, Rap1, and caspases.
Main Results:
- FA-Csk expression reduced active Src and caused loss of integrin-mediated adhesion.
- Rap1 activation, but not caspase inhibition, restored focal adhesions and prevented cell detachment.
- FA-Csk-induced detachment was independent of caspase 3 and Akt, suggesting focal adhesion dysfunction as the primary cause.
Conclusions:
- Endogenous Src family kinases are essential for focal adhesions, likely through Rap1 activation.
- FA-Csk disrupts focal adhesion integrity, leading to cell detachment via a non-apoptotic pathway.