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Published on: September 14, 2010
The Shc-related adaptor protein, Sck, forms a complex with the vascular-endothelial-growth-factor receptor KDR in
A J Warner1, J Lopez-Dee, E L Knight
1Department of Biochemistry, University of Leicester, Leicester LE1 7RH, UK.
Abstract:
Despite much progress in recent years, the precise signalling events triggered by the vascular-endothelial-growth-factor (VEGF) receptors, fms-like tyrosine kinase (Flt1) and kinase insert domain-containing receptor (KDR), are incompletely defined. Results obtained when Flt1 and KDR are individually expressed in fibroblasts or porcine aortic endothelial cells have not been entirely consistent with those observed in other endothelial cells expressing both receptors endogenously. It has also been difficult to demonstrate VEGF-induced phosphorylation of Flt1, which has led to speculation that KDR may be the more important receptor for the mitogenic action of VEGF on endothelial cells. In an attempt to identify physiologically important effectors which bind to KDR, we have screened a yeast two-hybrid mouse embryo library with the cytoplasmic domain of KDR. Here we describe the identification of the adaptor protein, Shc-like protein (Sck), as a binding partner for KDR. We demonstrate that this interaction requires phosphorylation of KDR, and identify the binding site for the Src-homology 2 (SH2) domain as tyrosine-1175 of KDR. We have also shown that the SH2 domain of Sck, but not that of Src-homology collagen protein (Shc), can precipitate phosphorylated KDR from VEGF-stimulated porcine aortic endothelial cells expressing KDR, and that an N-terminally truncated Sck protein can associate with KDR, in a phosphorylation-dependent fashion, when co-expressed in human embryonic kidney 293 cells. Furthermore, we demonstrate that in the two-hybrid assay, both Shc and Sck SH2 domains can associate with the related receptor Flt1.
Insights
Researchers identified Shc-like protein (Sck) as a binding partner for the vascular-endothelial-growth-factor (VEGF) receptor KDR. This interaction requires KDR phosphorylation, pinpointing tyrosine-1175 as the binding site for Sck
Area of Science:
- Molecular Biology
- Cell Signaling
- Biochemistry
Background:
- Vascular-endothelial-growth-factor (VEGF) receptor signaling is crucial for endothelial cell function but incompletely understood.
- Discrepancies exist regarding the roles of fms-like tyrosine kinase (Flt1) and kinase insert domain-containing receptor (KDR) in VEGF signaling.
- VEGF-induced Flt1 phosphorylation is difficult to demonstrate, suggesting KDR's primary role in endothelial cell mitogenesis.
Purpose of the Study:
- To identify novel binding partners of the KDR receptor.
- To elucidate the molecular mechanisms underlying KDR-mediated VEGF signaling.
- To investigate the interaction between KDR and potential effector proteins.
Main Methods:
- Yeast two-hybrid screening using the cytoplasmic domain of KDR.
- Co-expression and co-immunoprecipitation assays in human embryonic kidney 293 cells.
- In vitro binding assays using phosphorylated KDR and Sck/Shc proteins.
Main Results:
- Shc-like protein (Sck) was identified as a KDR-binding partner.
- KDR phosphorylation is essential for Sck binding, with tyrosine-1175 identified as the specific binding site for the Src-homology 2 (SH2) domain.
- The SH2 domain of Sck, but not Shc, precipitated phosphorylated KDR from VEGF-stimulated cells.
Conclusions:
- Sck is a novel, physiologically relevant effector that binds to phosphorylated KDR.
- The interaction between Sck and KDR is phosphorylation-dependent and mediated by Sck's SH2 domain binding to tyrosine-1175 of KDR.
- Both Sck and Shc SH2 domains can associate with the related Flt1 receptor, suggesting conserved interaction mechanisms.
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