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Published on: June 23, 2013
Induced direct binding of the adapter protein Nck to the GTPase-activating protein-associated protein p62 by
1The Ben May Institute for Cancer Research and the Department of Pharmacological and Physiological Sciences, the University of Chicago, Illinois 60637, USA.
Abstract:
The SH3-SH3-SH3-SH2 adapter protein Nck links receptor tyrosine kinases, such as EGF and PDGF receptors, to downstream signaling pathways, among which p21cdc42/rac-activated kinase cascade, Sos-activated Ras signaling and the human Wiskott-Aldrich Syndrome protein (WASp)-mediated actin cytoskeleton changes, have been implicated. In EGF stimulated cells, Nck co-immunoprecipitates with a number of phosphotyrosine proteins including the EGF receptor (Li et al., 1992 Mol. Cell. Biol. 12: 5824-2833). To identify the phosphotyrosine protein(s) that directly interacts with Nck and to distinguish it from indirectly associated proteins, preexisting phosphoytrosine protein complexes in the cell lysate were dissociated by heat and SDS prior to the test for binding to Nck. We found that Nck does not directly bind to EGF receptor, instead it binds via its SH2 domain to a 62 kDa phosphotyrosine protein. We present evidence demonstrating that the Nck-bound p62 is related to the previously identified GTPase-activating protein (GAP)-associated phosphotyrosine protein p62. (1) The Nck-bound and the GAP-bound p62 proteins co-migrate with each other in SDS-PAGE. (2) SH2 domains from Nck and GAP compete for binding to p62 in vitro. (3) Purified GST-Nck-SH2 binds directly to the GAP-associated p62. Under these conditions, SH2 domains from PLCgamma, PI-3 kinase, SHC, and Grb2 did not bind p62. (4) Tryptic phosphopeptide maps of the Nck- and the GAP-associated p62 proteins are identical. However, Nck and GAP do not co-immunoprecipitate with each other and apparently bind to different pools of p62. This study suggests that the GAP-associated p62 acts as an SH2 domain docking protein and mediates the interaction between Nck and EGF receptor in response to EGF stimulation.
Insights
The adapter protein Nck binds to a 62 kDa phosphotyrosine protein (p62) via its SH2 domain, not directly to the EGF receptor. This p62 acts as a docking protein, mediating Nck and EGF receptor interactions in signaling pathways.
Area of Science:
- Cellular signaling
- Molecular biology
- Protein-protein interactions
Background:
- Nck is an adapter protein linking receptor tyrosine kinases to downstream pathways.
- Nck interacts with EGF receptor in EGF-stimulated cells.
- The direct binding partners of Nck are not fully characterized.
Purpose of the Study:
- To identify the phosphotyrosine protein(s) that directly interact with Nck.
- To distinguish direct Nck binding partners from indirectly associated proteins.
- To elucidate the role of Nck-bound proteins in EGF receptor signaling.
Main Methods:
- Dissociation of pre-existing protein complexes by heat and SDS.
- Testing Nck binding to dissociated proteins.
- Co-migration analysis in SDS-PAGE.
- In vitro binding assays using SH2 domains.
- Tryptic phosphopeptide mapping.
Main Results:
- Nck directly binds to a 62 kDa phosphotyrosine protein (p62) via its SH2 domain.
- Nck-bound p62 is related to GTPase-activating protein (GAP)-associated p62.
- Nck and GAP bind to different pools of p62.
- Nck-bound p62 mediates the interaction between Nck and EGF receptor.
Conclusions:
- The GAP-associated p62 functions as an SH2 domain docking protein.
- p62 mediates the interaction between Nck and the EGF receptor in response to EGF stimulation.
- This interaction is crucial for downstream signaling pathways.
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