Identification of a novel in vivo virus-targeted phosphorylation site in Interferon Regulatory Factor-3 (IRF3)

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Abstract

The transcription factor interferon regulatory factor-3 (IRF3) regulates expression of type I interferon-β and plays an important role in antiviral immunity. Despite the biological importance of IRF3, its in vivo phosphorylation pattern has not been reported. In this study, we have identified residues in IRF3 that are phosphorylated in vivo after infection with Sendai virus. We found that Sendai virus induced phosphorylation of the C-terminal residues Thr 390 and Ser396, in addition to either Ser385 or Ser386. Moreover, Ser173 and Ser175 were constitutively phosphorylated. Ser396 has previously been suggested to be the major target of the IRF3-activating kinase TBK1 (TANK-binding kinase-1), whereas Thr390 has not previously been implicated in IRF3 regulation. Mutagenesis studies indicated that phosphorylation of Thr 390 promotes Ser396 phosphorylation and binding to the coactivator cAMP-response element-binding protein. Taken together, our results show that IRF3 is subject to multiple interdependent phosphorylations, and we identify Thr390 as a novel in vivo phosphorylation site that modulates the phosphorylation status of TBK1-targeted Ser396. © 2010 by The American Society for Biochemistry and Molecular Biology, Inc.

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Bergstroem, B., Johnsen, I. B., Nguyen, T. T., Hagen, L., Slupphaug, G., Thommesen, L., & Anthonsen, M. W. (2010). Identification of a novel in vivo virus-targeted phosphorylation site in Interferon Regulatory Factor-3 (IRF3). Journal of Biological Chemistry, 285(32), 24904–24914. https://doi.org/10.1074/jbc.M109.084822

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