Protein Structure and Folding
Identification of a New Interaction Mode between the Src Homology 2 Domain of C-terminal Src Kinase (Csk) and Csk-binding Protein/Phosphoprotein Associated with Glycosphingolipid Microdomains

https://doi.org/10.1074/jbc.M112.439075Get rights and content
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Proteins with Src homology 2 (SH2) domains play major roles in tyrosine kinase signaling. Structures of many SH2 domains have been studied, and the regions involved in their interactions with ligands have been elucidated. However, these analyses have been performed using short peptides consisting of phosphotyrosine followed by a few amino acids, which are described as the canonical recognition sites. Here, we report the solution structure of the SH2 domain of C-terminal Src kinase (Csk) in complex with a longer phosphopeptide from the Csk-binding protein (Cbp). This structure, together with biochemical experiments, revealed the existence of a novel binding region in addition to the canonical phosphotyrosine 314-binding site of Cbp. Mutational analysis of this second region in cells showed that both canonical and novel binding sites are required for tumor suppression through the Cbp-Csk interaction. Furthermore, the data indicate an allosteric connection between Cbp binding and Csk activation that arises from residues in the βB/βC loop of the SH2 domain.

Background: Src homology 2 (SH2) domains are known to specifically bind to phosphotyrosine followed by a few amino acids.

Results: A novel interaction region was revealed by the solution structure of the C-terminal Src kinase SH2 domain in complex with the Csk-binding protein.

Conclusion: The novel interaction region was required for tumor suppression.

Significance: The structure sheds new light on the interaction mode of SH2 domains.

NMR
Protein Structure
SH2 Domains
Src
Tumor
Tyrosine Protein Kinase (Tyrosine Kinase)
C-terminal Src Kinase
Csk-binding protein

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The atomic coordinates and structure factors (code2rsy) have been deposited in the Protein Data Bank (http://wwpdb.org/).

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Both authors contributed equally to this work.