Related Experiment Videos
14-3-3 binding to the IGF-1 receptor is mediated by serine autophosphorylation
Susan Parvaresch1, Tanju Yesilkaya, Kristin Baer
1Institute of Biochemistry, University of Cologne, Otto-Fischer-Str. 12-14, 50674, Cologne, Germany.
Abstract:
The phosphoserine-binding 14-3-3 proteins have been implicated in playing a role in mitogenic and apoptotic signaling pathways. Binding of 14-3-3 proteins to phosphoserine residues in the C-terminus of the insulin-like growth factor-1 receptor (IGF-1R) has been described to occur in a variety of cell systems, but the kinase responsible for this serine phosphorylation has not been identified yet. Here we present evidence that the isolated dimeric insulin-like growth factor-1 receptor kinase domain (IGFKD) contains a dual specific (i.e. tyrosine/serine) kinase activity that mediates autophosphorylation of C-terminal serine residues in the enzyme. From the total phosphate incorporation of approximately 4 mol per mol kinase subunit, 1 mol accounts for serine phosphate. However, tyrosine autophosphorylation proceeds more rapidly than autophosphorylation of serine residues (t(1/2) approximately 1 min vs. t(1/2) approximately 5 min). Moreover, dot-blot and far-Western analyses reveal that serine autophosphorylation of IGFKD is sufficient to promote binding of 14-3-3 proteins in vitro. The proof that dual kinase activity of IGFKD is necessary and sufficient for 14-3-3 binding was obtained with an inactive kinase mutant that was phosphorylated on serine residues in a stoichiometric reaction with the catalytically active enzyme. Thus, the IGF-1R itself might be responsible for the serine autophosphorylation which leads to recognition of 14-3-3 proteins in vivo.
Insights
The insulin-like growth factor-1 receptor (IGF-1R) kinase possesses dual activity, phosphorylating both tyrosine and serine residues. This autophosphorylation enables IGF-1R to bind 14-3-3 proteins, crucial for cell signaling.
Area of Science:
- Molecular Biology
- Cell Signaling
- Protein Kinases
Background:
- 14-3-3 proteins bind phosphoserine residues, influencing mitogenic and apoptotic pathways.
- 14-3-3 binding to the insulin-like growth factor-1 receptor (IGF-1R) C-terminus is observed, but the responsible kinase is unknown.
Purpose of the Study:
- To identify the kinase responsible for serine phosphorylation of IGF-1R.
- To investigate the role of IGF-1R kinase activity in 14-3-3 protein binding.
Main Methods:
- Isolated dimeric IGF-1R kinase domain (IGFKD) was used to study kinase activity.
- Dot-blot and far-Western analyses were employed to assess protein binding.
- An inactive kinase mutant was utilized to confirm the necessity and sufficiency of dual kinase activity.
Main Results:
- IGFKD exhibits dual tyrosine/serine kinase activity, mediating autophosphorylation of C-terminal serine residues.
- Serine autophosphorylation of IGFKD is sufficient for in vitro 14-3-3 protein binding.
- Tyrosine autophosphorylation occurs more rapidly than serine autophosphorylation.
Conclusions:
- The IGF-1R kinase itself is likely responsible for the serine autophosphorylation that facilitates 14-3-3 protein recognition in vivo.
- This finding elucidates a novel mechanism for IGF-1R in regulating cell signaling pathways via 14-3-3 interactions.