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Activation of Jak2 catalytic activity requires phosphorylation of Y1007 in the kinase activation loop
J Feng1, B A Witthuhn, T Matsuda
1Department of Biochemistry, St. Jude Children's Research Hospital, Memphis, Tennessee 38105, USA.
Abstract:
The Janus protein tyrosine kinases (Jaks) play critical roles in transducing growth and differentiation signals emanating from ligand-activated cytokine receptor complexes. The activation of the Jaks is hypothesized to occur as a consequence of auto- or transphosphorylation on tyrosine residues associated with ligand-induced aggregation of the receptor chains and the associated Jaks. In many kinases, regulation of catalytic activity by phosphorylation occurs on residues within the activation loop of the kinase domain. Within the Jak2 kinase domain, there is a region that has considerable sequence homology to the regulatory region of the insulin receptor and contains two tyrosines, Y1007 and Y1008, that are potential regulatory sites. In the studies presented here, we demonstrate that among a variety of sites, Y1007 and Y1008 are sites of trans- or autophosphorylation in vivo and in in vitro kinase reactions. Mutation of Y1007, or both Y1007 and Y1008, to phenylalanine essentially eliminated kinase activity, whereas mutation of Y1008 to phenylalanine had no detectable effect on kinase activity. The mutants were also examined for the ability to reconstitute erythropoietin signaling in gamma2 cells, which lack Jak2. Consistent with the kinase activity, mutation of Y1007 to phenylalanine eliminated the ability to restore signaling. Moreover, phosphorylation of a kinase-inactive mutant (K882E) was not detected, indicating that Jak2 activation during receptor aggregation is dependent on Jak2 and not another receptor-associated kinase. The results demonstrate the critical role of phosphorylation of Y1007 in Jak2 regulation and function.
Insights
Phosphorylation of Janus kinase 2 (Jak2) at tyrosine 1007 is essential for its catalytic activity and signal transduction. Disrupting this site impairs Jak2 function and erythropoietin signaling.
Area of Science:
- Molecular Biology
- Cell Signaling
- Biochemistry
Background:
- Janus kinases (Jaks) are crucial for cytokine receptor signaling, mediating growth and differentiation.
- Jak activation is linked to receptor aggregation and autophosphorylation on tyrosine residues.
- The Jak2 kinase domain contains potential regulatory tyrosines, Y1007 and Y1008, analogous to insulin receptor regulation.
Purpose of the Study:
- To investigate the role of specific tyrosine residues (Y1007 and Y1008) in Jak2 activation and function.
- To determine the contribution of Y1007 and Y1008 phosphorylation to Jak2 kinase activity and signal transduction.
Main Methods:
- In vivo and in vitro kinase assays were performed using wild-type and mutant Jak2 proteins.
- Site-directed mutagenesis was used to replace Y1007 and Y1008 with phenylalanine.
- Erythropoietin signaling reconstitution assays were conducted in Jak2-deficient gamma2 cells.
Main Results:
- Y1007 and Y1008 were identified as sites of Jak2 autophosphorylation in vitro and in vivo.
- Mutation of Y1007, individually or with Y1008, abolished Jak2 kinase activity.
- Mutation of Y1007 prevented the restoration of erythropoietin signaling in gamma2 cells.
Conclusions:
- Phosphorylation of Y1007 is critical for Jak2 catalytic activity and its role in signal transduction.
- Jak2 activation during receptor aggregation is an intrinsic Jak2-dependent process.
- Y1007 phosphorylation is essential for Jak2 function in mediating erythropoietin signaling.