Abstract
We established a system of receptor chimeras that enabled us to induce heterodimerization of different cytoplasmic tails. Fusion constructs were created that are composed of the extracellular parts of the interleukin-5 receptor α and β chains, respectively, and the transmembrane and intracellular parts of gp130, the signal transducing chain of the interleukin-6 receptor complex. In COS-7 transfectants we observed a dose- dependent interleukin-5-inducible STAT1 activation for which the presence of both the α and the β chain chimera was needed. No STAT activity was detected if one of the cytoplasmic tails of the receptor complex was deleted, indicating that STAT activity resulted from a receptor dimer rather than from higher receptor aggregates. We further investigated whether dimerization of STAT1 depends on the juxtaposition of two STAT recruitment modules in a receptor complex. We show that a receptor dimer with only a single STAT1 docking site was still able to lead to STAT1 activation. This indicates that the formation of a paired set of STAT binding sites in a receptor complex is not the prerequisite for STAT factor dimerization. Our findings are discussed in view of alternative STAT dimerization models.
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CITATION STYLE
Behrmann, I., Janzen, C., Gerhartz, C., Schmitz-Van De Leur, H., Hermanns, H., Heesel, B., … Heinrich, P. C. (1997). A single STAT recruitment module in a chimeric cytokine receptor complex is sufficient for STAT activation. Journal of Biological Chemistry, 272(8), 5269–5274. https://doi.org/10.1074/jbc.272.8.5269
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