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Role of the Stat4 N domain in receptor proximal tyrosine phosphorylation
T L Murphy1, E D Geissal, J D Farrar
1Department of Pathology and Immunology, Howard Hughes Medical Institute, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
Abstract:
Stat4 is activated by the cytokines interleukin 12 and alpha interferon (IFN-alpha) and plays a significant role in directing development of naïve CD4(+) T cells to the Th1 phenotype. Signal transducers and activators of transcription (STAT) proteins undergo phosphorylation on a conserved tyrosine residue, resulting in homo- and heterodimerization, nuclear translocation, and DNA binding. Stat4 can bind to single IFN-gamma-activated sites (GASs) as a dimer or bind two tandem GASs as a pair of STAT dimers, or tetramer, stabilized through N-terminal domain (N domain) interactions between dimers. We uncovered an unexpected effect of the Stat4 N domain in controlling the proximal activation of Stat4 by tyrosine phosphorylation at activated receptor complexes. Mutation of the N domain at tryptophan residue W37, predicted to interrupt N domain dimer formation, unexpectedly prevented IFN-alpha-induced tyrosine phosphorylation of the Stat4 monomer, blocking dimer formation and nuclear translocation. Furthermore, N domains appear to exert private STAT functions, since interchanging the N domains between Stat1 and Stat4 prevented receptor-mediated tyrosine phosphorylation in one case and interrupted STAT-specific gene activation in another. Finally, replacement of the N domain of Stat1 with that of Stat4 abrogated the normal Stat2 dependence of Stat1 phosphorylation, again suggesting the domains are not equivalent. Thus, in addition to its role in STAT tetramerization, the conserved STAT N domain appears to participate in very proximal steps of receptor-mediated ligand-induced tyrosine phosphorylation.
Insights
The Stat4 N-terminal domain unexpectedly controls early Stat4 activation by tyrosine phosphorylation. This domain is crucial for Stat4
Area of Science:
- Immunology
- Molecular Biology
- Cell Signaling
Background:
- Signal transducers and activators of transcription (STAT) proteins are key mediators of cytokine signaling.
- Stat4 directs CD4(+) T cell differentiation towards the Th1 phenotype.
- STAT protein activation involves tyrosine phosphorylation, dimerization, and nuclear translocation.
Purpose of the Study:
- To investigate the role of the Stat4 N-terminal (N) domain in STAT protein activation.
- To determine if the N domain influences proximal steps of Stat4 activation, including tyrosine phosphorylation.
Main Methods:
- Site-directed mutagenesis of the Stat4 N domain (W37).
- Analysis of Stat4 phosphorylation, dimerization, and nuclear translocation upon IFN-alpha stimulation.
- N-domain swapping experiments between Stat1 and Stat4.
Main Results:
- Mutation of W37 in the Stat4 N domain blocked IFN-alpha-induced tyrosine phosphorylation and nuclear translocation.
- Stat4 N domain interactions are critical for monomeric Stat4 activation.
- Interchanging N domains between Stat1 and Stat4 demonstrated domain-specific functions in receptor-mediated phosphorylation and gene activation.
Conclusions:
- The Stat4 N domain plays a critical, previously unrecognized role in proximal receptor-mediated tyrosine phosphorylation.
- The N domain is essential for initiating Stat4 activation, not just for higher-order complex formation.
- STAT N domains exhibit private functions, influencing specific signaling outcomes.