Phospho-IRF-3 (Ser386) (E7J8G) Rabbit Monoclonal Antibody (SignalFlexTMAlexa Fluor®750 Conjugate)#72854,Cell Signaling Technology (CST),72854
Phospho-IRF-3 (Ser386) (E7J8G) Rabbit Monoclonal Antibody (SignalFlexTM Alexa Fluor®750 Conjugate) recognizes endogenous levels of IRF-3 protein only when phosphorylated at Ser386.
Host
Rabbit
Reactivity
Human
Conjugate
SignalFlexTMAlexa Fluor®750 Conjugate
Platform ID
BAB577856962
Cell Signaling Technology (CST)
Contact
Tel: 877-616-2355,978-867-2388
Fax: 877-616-2355
Email:
Specifications
Scientific Background
Interferon regulatory factors (IRFs) comprise a family of transcription factors that function within the Jak/Stat pathway to regulate interferon (IFN) and IFN-inducible gene expression in response to viral infection (1). IRFs play an important role in pathogen defense, autoimmunity, lymphocyte development, cell growth, and susceptibility to transformation. The IRF family includes nine members: IRF-1, IRF-2, IRF-9/ISGF3γ, IRF-3, IRF-4 (Pip/LSIRF/ICSAT), IRF-5, IRF-6, IRF-7, and IRF-8/ICSBP. All IRF proteins share homology in their amino-terminal DNA-binding domains. IRF family members regulate transcription through interactions with proteins that share similar DNA-binding motifs, such as IFN-stimulated response elements (ISRE), IFN consensus sequences (ICS), and IFN regulatory elements (IRF-E) (2).IRF-3 can inhibit cell growth and plays a critical role in controlling the expression of genes in the innate immune response (1-4). In unstimulated cells, IRF-3 is present in the cytoplasm. Viral infection results in phosphorylation of IRF-3 and leads to its translocation to the nucleus, where it activates promoters containing IRF-3-binding sites. Phosphorylation of IRF-3 occurs at a cluster of C-terminal serine and threonine residues (between 385 and 405), leading to its association with the p300/CBP coactivator protein that promotes DNA binding and transcriptional activity (5). During infection, IRF-3 is likely activated through a pathway that includes activation of Toll-like receptors and of a kinase complex that includes IKKε and TBK1 (6,7). IRF-3 is phosphorylated at Ser396 following viral infection, expression of viral nucleocapsid, and double stranded RNA treatment. These events likely play a role in the activation of IRF-3 (8).Taniguchi, T. et al. (2001)Annu Rev Immunol19, 623-55.Honda, K. and Taniguchi, T. (2006)Nat Rev Immunol6, 644-58.Hiscott, J. et al. (1999)J Interferon Cytokine Res19, 1-13.Kim, T.Y. et al. (2003)J Biol Chem278, 15272-8.Yoneyama, M. et al. (2002)J Interferon Cytokine Res22, 73-6.Fitzgerald, K.A. et al. (2003)Nat Immunol4, 491-6.Kopp, E. and Medzhitov, R. (2003)Curr Opin Immunol15, 396-401.Servant, M.J. et al. (2003)J Biol Chem278, 9441-7.Alternate NamesIIAE7; Interferon regulatory factor 3; IRF-3; IRF3
Synonyms
IIAE7; Interferon regulatory factor 3; IRF-3; IRF3
Category Paths
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