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Updated: Aug 24, 2026

Time-resolved Förster Resonance Energy Transfer Assays for Measurement of Endogenous Phosphorylated STAT Proteins in Human Cells
Published on: September 9, 2021
Autophosphorylation of JAK2 on tyrosines 221 and 570 regulates its activity
Lawrence S Argetsinger1, Jean-Louis K Kouadio, Hanno Steen
1Department of Molecular and Integrative Physiology, The University of Michigan Medical School, Ann Arbor, MI 48109-0622, USA.
Abstract:
The tyrosine kinase JAK2 is a key signaling protein for at least 20 receptors in the cytokine/hematopoietin receptor superfamily and is a component of signaling by insulin receptor and several G-protein-coupled receptors. However, there is only limited knowledge of the physical structure of JAK2 or which of the 49 tyrosines in JAK2 are autophosphorylated. In this study, mass spectrometry and two-dimensional peptide mapping were used to determine that tyrosines 221, 570, and 1007 in JAK2 are autophosphorylated. Phosphorylation of tyrosine 570 is particularly robust. In response to growth hormone, JAK2 was rapidly and transiently phosphorylated at tyrosines 221 and 570, returning to basal levels by 60 min. Analysis of the sequences surrounding tyrosines 221 and 570 in JAK2 and tyrosines in other proteins that are phosphorylated in response to ligands that activate JAK2 suggests that the YXX[L/I/V] motif is one of the motifs recognized by JAK2. Experiments using JAK2 with tyrosines 221 and 570 mutated to phenylalanine suggest that tyrosines 221 and 570 in JAK2 may serve as regulatory sites in JAK2, with phosphorylation of tyrosine 221 increasing kinase activity and phosphorylation of tyrosine 570 decreasing kinase activity and thereby contributing to rapid termination of ligand activation of JAK2.
Insights
Researchers identified key autophosphorylation sites on Janus kinase 2 (JAK2). Tyrosines 221 and 570 regulate JAK2 activity, impacting cellular signaling and termination of growth hormone receptor activation.
Area of Science:
- Biochemistry
- Molecular Biology
- Cell Signaling
Background:
- Janus kinase 2 (JAK2) is a critical signaling protein involved in numerous cellular processes.
- Limited understanding exists regarding JAK2's physical structure and its autophosphorylation sites.
Purpose of the Study:
- To identify the specific tyrosine residues in JAK2 that undergo autophosphorylation.
- To investigate the regulatory roles of these phosphorylated tyrosine residues in JAK2 activity and signaling.
Main Methods:
- Mass spectrometry and two-dimensional peptide mapping were employed to identify phosphosites.
- Site-directed mutagenesis was used to create JAK2 variants with tyrosine-to-phenylalanine substitutions.
Main Results:
- Tyrosines 221, 570, and 1007 were identified as autophosphorylation sites in JAK2.
- Phosphorylation of Y570 was particularly robust and transiently increased upon growth hormone stimulation.
- Mutational analysis indicated Y221 and Y570 act as regulatory sites, influencing JAK2 kinase activity.
Conclusions:
- The YXX[L/I/V] motif is suggested as a recognition site for JAK2.
- Phosphorylation of Y221 enhances JAK2 activity, while Y570 phosphorylation decreases it, contributing to signal termination.
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