Related Experiment Video
Updated: Jul 1, 2026

Spatio-Temporal Manipulation of Small GTPase Activity at Subcellular Level and on Timescale of Seconds in Living Cells
Published on: March 9, 2012
Phosphorylation of p130Cas initiates Rac activation and membrane ruffling
1Department of Pharmaceutical Sciences, Massachusetts College of Pharmacy and Health Sciences, 1260 Elm Street, Manchester, NH 03101, USA. alok.sharma@mcphs.edu
Background:
Non-receptor tyrosine kinases (NTKs) regulate physiological processes such as cell migration, differentiation, proliferation, and survival by interacting with and phosphorylating a large number of substrates simultaneously. This makes it difficult to attribute a particular biological effect to the phosphorylation of a particular substrate. We developed the Functional Interaction Trap (FIT) method to phosphorylate specifically a single substrate of choice in living cells, thereby allowing the biological effect(s) of that phosphorylation to be assessed. In this study we have used FIT to investigate the effects of specific phosphorylation of p130Cas, a protein implicated in cell migration. We have also used this approach to address a controversy regarding whether it is Src family kinases or focal adhesion kinase (FAK) that phosphorylates p130Cas in the trimolecular Src-FAK-p130Cas complex.
Results:
We show here that SYF cells (mouse fibroblasts lacking the NTKs Src, Yes and Fyn) exhibit a low level of basal tyrosine phosphorylation at focal adhesions. FIT-mediated tyrosine phosphorylation of NTK substrates p130Cas, paxillin and FAK and cortactin was observed at focal adhesions, while FIT-mediated phosphorylation of cortactin was also seen at the cell periphery. Phosphorylation of p130Cas in SYF cells led to activation of Rac1 and increased membrane ruffling and lamellipodium formation, events associated with cell migration. We also found that the kinase activity of Src and not FAK is essential for phosphorylation of p130Cas when the three proteins exist as a complex in focal adhesions.
Conclusion:
These results demonstrate that tyrosine phosphorylation of p130Cas is sufficient for its localization to focal adhesions and for activation of downstream signaling events associated with cell migration. FIT provides a valuable tool to evaluate the contribution of individual components of the response to signals with multiple outputs, such as activation of NTKs.
Insights
The Functional Interaction Trap (FIT) method enables specific substrate phosphorylation to study cell migration. Phosphorylating p130Cas activates Rac1, promoting cell migration, and Src kinase is key in this process.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Non-receptor tyrosine kinases (NTKs) regulate crucial cell processes by phosphorylating multiple substrates.
- Attributing specific biological effects to individual substrate phosphorylations is challenging.
- The Functional Interaction Trap (FIT) method was developed to enable targeted single-substrate phosphorylation in living cells.
Purpose of the Study:
- To investigate the effects of specific p130Cas phosphorylation on cell migration using the FIT method.
- To clarify the roles of Src family kinases and focal adhesion kinase (FAK) in phosphorylating p130Cas within the Src-FAK-p130Cas complex.
Main Methods:
- Utilized the Functional Interaction Trap (FIT) method for site-specific phosphorylation of NTK substrates.
- Employed SYF cells (mouse fibroblasts lacking Src, Yes, and Fyn) to assess basal and induced phosphorylation.
- Analyzed downstream signaling events, including Rac1 activation and cell morphology changes.
Main Results:
- FIT-mediated phosphorylation of p130Cas, paxillin, FAK, and cortactin was observed at focal adhesions.
- Phosphorylation of p130Cas in SYF cells induced Rac1 activation, membrane ruffling, and lamellipodium formation.
- Src kinase activity, not FAK, was essential for p130Cas phosphorylation in the Src-FAK-p130Cas complex.
Conclusions:
- Tyrosine phosphorylation of p130Cas is sufficient to drive its focal adhesion localization and activate downstream signaling for cell migration.
- The FIT method is a valuable tool for dissecting signaling pathways with multiple outputs, such as NTK activation.
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