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Updated: Jul 23, 2026

Bimolecular Fluorescence Complementation
Published on: April 15, 2011
p80/85 cortactin associates with the Src SH2 domain and colocalizes with v-Src in transformed cells
1Cell Biology and Genetics Program, Sloan-Kettering Institute, New York, New York 10021, USA.
Abstract:
Expression of oncogenic variants of pp60src leads to dramatic changes in cytoskeletal organization characteristic of transformation. Activated Src associates with the cytoskeletal matrix, resulting in tyrosine phosphorylation of specific cytoskeletal substrates. We have previously shown that stable association of Src with the cytoskeletal matrix is mediated by the Src SH2 domain in a phosphotyrosine-dependent interaction. In this report, we demonstrate that one of the cytoskeletal binding partners of Src is p80/85 cortactin. The association was observed in lysates of transformed cells but was not seen in normal fibroblasts. The interaction could be reconstituted in vitro using transformed cell extracts and a glutathione S-transferase (GST) fusion protein containing the Src SH2 domain but not with GST-Src SH3 or with GST-Src SH2 containing a point mutation in the FLVRES sequence. Confocal microscopy revealed that cortactin redistributed and colocalized with v-Src and a Src SH3 deletion mutant in transformed cells. However, in cells expressing a Src SH2 deletion mutant, the redistribution of cortactin and colocalization with Src did not occur. Furthermore, biochemical fractionation of transformed cells indicated that a significant increase in cortactin distribution to the cytoskeletal fraction occurred, which correlated with a shift in the tyrosine-phosphorylated form of the protein. Cortactin fractionated from cells expressing kinase-defective or myristylation-defective Src mutants did not exhibit this shift. These data suggest a molecular mechanism by which tyrosine phosphorylation of cortactin and association with the Src SH2 domain influence the cytoskeletal reorganization induced in Src-transformed cells.
Insights
Oncogenic Src protein binds to cortactin, a cytoskeletal protein, through its SH2 domain. This interaction, dependent on tyrosine phosphorylation, drives cytoskeletal changes in cancer cells.
Area of Science:
- Cell Biology
- Molecular Oncology
- Biochemistry
Background:
- Oncogenic variants of pp60Src (Src) induce significant cytoskeletal alterations characteristic of cellular transformation.
- Activated Src localizes to the cytoskeleton, phosphorylating key cytoskeletal substrates.
- Src-cytoskeletal matrix association is mediated by the Src SH2 domain via phosphotyrosine-dependent interactions.
Purpose of the Study:
- To identify cytoskeletal binding partners of Src.
- To elucidate the role of cortactin in Src-mediated cytoskeletal reorganization.
- To investigate the molecular mechanism linking Src activity, cortactin phosphorylation, and cytoskeletal changes.
Main Methods:
- Co-immunoprecipitation and in vitro binding assays using glutathione S-transferase (GST) fusion proteins.
- Confocal microscopy to assess protein colocalization and redistribution.
- Biochemical fractionation to analyze protein localization within cellular compartments.
- Analysis of tyrosine phosphorylation status of cortactin.
Main Results:
- p80/85 cortactin was identified as a cytoskeletal binding partner of Src, observed specifically in transformed cells.
- Src SH2 domain-dependent binding to cortactin was demonstrated in vitro.
- Cortactin redistributed and colocalized with Src in transformed cells, an event dependent on the Src SH2 domain.
- Tyrosine phosphorylation of cortactin increased in the cytoskeletal fraction of Src-transformed cells.
Conclusions:
- Cortactin is a key cytoskeletal target of oncogenic Src.
- The Src SH2 domain mediates the association between Src and cortactin.
- Tyrosine phosphorylation of cortactin, facilitated by Src, is crucial for Src-induced cytoskeletal reorganization in transformed cells.
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