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Publication : Protein kinase IKKβ-catalyzed phosphorylation of IRF5 at Ser462 induces its dimerization and nuclear translocation in myeloid cells.

First Author  Lopez-Pelaez M Year  2014
Journal  Proc Natl Acad Sci U S A Volume  111
Issue  49 Pages  17432-7
PubMed ID  25326418 Mgi Jnum  J:216670
Mgi Id  MGI:5609200 Doi  10.1073/pnas.1418399111
Citation  Lopez-Pelaez M, et al. (2014) Protein kinase IKKbeta-catalyzed phosphorylation of IRF5 at Ser462 induces its dimerization and nuclear translocation in myeloid cells. Proc Natl Acad Sci U S A 111(49):17432-7
abstractText  The siRNA knockdown of IFN Regulatory Factor 5 (IRF5) in the human plasmacytoid dendritic cell line Gen2.2 prevented IFNbeta production induced by compound CL097, a ligand for Toll-like receptor 7 (TLR7). CL097 also stimulated the phosphorylation of IRF5 at Ser462 and stimulated the nuclear translocation of wild-type IRF5, but not the IRF5[Ser462Ala] mutant. The CL097-stimulated phosphorylation of IRF5 at Ser462 and its nuclear translocation was prevented by the pharmacological inhibition of protein kinase IKKbeta or the siRNA knockdown of IKKbeta or its "upstream" activator, the protein kinase TAK1. Similar results were obtained in a murine macrophage cell line stimulated with the TLR7 agonist compound R848 or the nucleotide oligomerization domain 1 (NOD1) agonist KF-1B. IKKbeta phosphorylated IRF5 at Ser462 in vitro and induced the dimerization of wild-type IRF5 but not the IRF5[S462A] mutant. These findings demonstrate that IKKbeta activates two "master" transcription factors of the innate immune system, IRF5 and NF-kappaB.
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