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Molecular basis for regulation of Src by the docking protein p130Cas
Fariborz Nasertorabi1, Kaspars Tars, Kathleen Becherer
1Cancer Center, The Burnham Institute for Medical Research, La Jolla, California 92037, USA.
Abstract:
The docking protein p130Cas (Cas) becomes tyrosine-phosphorylated in its central substrate domain in response to extracellular stimuli such as integrin-mediated cell adhesion, and transmits signals through interactions with various intracellular signaling molecules such as the adaptor protein Crk. Src-family kinases (SFKs) bind a specific site in the carboxyl-terminal region of Cas and subsequently SFKs phosphorylate progressively the substrate domain in Cas. In this study crystallography, mutagenesis and binding assays were used to understand the molecular basis for Cas interactions with SFKs. Tyrosine phosphorylation regulates binding of Cas to SFKs, and the primary site for this phosphorylation, Y762, has been proposed. A phosphorylated peptide corresponding to Cas residues 759MEDpYDYVHL767 containing the key phosphotyrosine was crystallized in complex with the SH3-SH2 domain of the SFK Lck. The results provide the first structural data for this protein-protein interaction. The motif in Cas 762pYDYV binds to the SH2 domain in a mode that mimics high-affinity ligands, involving dual contacts of Y762 and V765 with conserved residues in SFK SH2 domains. In addition, Y764 is in position to make an electrostatic contact after phosphorylation with a conserved SFK arginine that mediates interactions with other high-affinity SH2 binders. These new molecular data suggest that Cas may regulate activity of Src as a competing ligand to displace intramolecular interactions that occur in SFKs (between the C-terminal tail and the SH2 domain) and restrain and down-regulate the kinase in an inactive form.
Insights
The docking protein p130Cas (Cas) interacts with Src-family kinases (SFKs) through its SH2 domain. Phosphorylation of Cas at Y762 regulates this binding, potentially controlling SFK activity.
Area of Science:
- Cellular signaling
- Molecular biology
- Structural biology
Background:
- p130Cas (Cas) is a docking protein phosphorylated by Src-family kinases (SFKs) upon extracellular stimuli.
- Cas transmits signals via interactions with molecules like Crk, and SFKs bind to Cas's carboxyl-terminal region.
- Tyrosine phosphorylation of Cas regulates its binding to SFKs, with Y762 identified as a key phosphorylation site.
Purpose of the Study:
- To elucidate the molecular basis of Cas interactions with SFKs.
- To understand the structural mechanisms underlying Cas-SFK binding and regulation.
Main Methods:
- Crystallography
- Mutagenesis
- Binding assays
Main Results:
- The SH3-SH2 domain of Lck was crystallized with a phosphorylated Cas peptide (residues 759-767).
- The Cas motif 762pYDYV binds the Lck SH2 domain, mimicking high-affinity ligands through dual contacts with Y762 and V765.
- Phosphorylated Y764 in Cas can form an electrostatic contact with a conserved SFK arginine, potentially influencing kinase activity.
Conclusions:
- Structural data reveals how Cas binds to SFK SH2 domains, highlighting the roles of Y762 and Y764 phosphorylation.
- Cas may act as a competing ligand, displacing intramolecular interactions within SFKs to regulate kinase activity.
- These findings offer insights into the regulatory mechanisms of SFKs by docking proteins like Cas.
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