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p135tyk2, an interferon-alpha-activated tyrosine kinase, is physically associated with an interferon-alpha receptor
O R Colamonici1, H Uyttendaele, P Domanski
1Department of Pathology, University of Tennessee, Memphis 38163.
Abstract:
Recent genetic studies have linked the tyk2 gene, which encodes a novel type of non-receptor tyrosine kinase, to the interferon-alpha intracellular signaling pathway. In this report, biochemical evidence is presented which supports this proposed function for the tyk2 tyrosine kinase and further defines its role in the interferon-alpha signaling cascade. Specifically, the tyk2 gene is shown to encode a 135-kDa protein which is rapidly phosphorylated on tyrosine in response to interferon-alpha treatment. Indirect evidence suggests that the tyrosine phosphorylation of p135tyk2 is the result of autokinase activity, implying that the Tyk2 tyrosine kinase is activated by interferon-alpha treatment. Two complementary methods demonstrate a physical association between p135tyk2 and the alpha-subunit of the interferon-alpha receptor. First, immunoblots show that monoclonal antibodies against the alpha-subunit of the interferon-alpha receptor can co-immunoprecipitate p135tyk2. Second, interferon-alpha receptor proteins which have been labeled by affinity cross-linking with 125I-interferon-alpha 2 can be co-immunoprecipitated using anti-tyk2 antisera. Taken together, these data suggest that an interferon-alpha receptor-p135tyk2 complex functions, in a manner analogous to the CD4-lck tyrosine kinase complex, to initiate the interferon-alpha signaling cascade.
Insights
The tyk2 gene encodes a tyrosine kinase (Tyk2) that is activated by interferon-alpha. Tyk2 physically associates with the interferon-alpha receptor, initiating the signaling cascade.
Area of Science:
- Molecular Biology
- Cell Signaling
- Immunology
Background:
- Recent genetic studies implicate the tyk2 gene in interferon-alpha signaling.
- The tyk2 gene encodes a novel non-receptor tyrosine kinase.
Purpose of the Study:
- To biochemically characterize the role of tyk2 tyrosine kinase in the interferon-alpha signaling pathway.
- To define the specific function of Tyk2 within the interferon-alpha cascade.
Main Methods:
- Western blotting and co-immunoprecipitation assays were used.
- Antibodies against the interferon-alpha receptor and Tyk2 were employed.
- Affinity cross-linking with 125I-interferon-alpha 2 was performed.
Main Results:
- The tyk2 gene encodes a 135-kDa protein (p135tyk2) rapidly phosphorylated on tyrosine upon interferon-alpha treatment.
- Tyrosine phosphorylation of p135tyk2 suggests autokinase activity and activation by interferon-alpha.
- Physical association between p135tyk2 and the alpha-subunit of the interferon-alpha receptor was demonstrated.
Conclusions:
- The interferon-alpha receptor-p135tyk2 complex initiates the interferon-alpha signaling cascade.
- Tyk2 functions analogously to the CD4-lck tyrosine kinase complex in this pathway.