Protein / target
Interferon regulatory factor 3
Protein at a glance
Biological role
Sequence-specific double-stranded DNA binding
Strongest disease association
Skin Neoplasms
Research activity
Emerging research
Derived from structured UniProt, Open Targets and literature data on this page.
Protein profile
Canonical identity and biological annotation from UniProt.
Function overview
Key transcriptional regulator of type I interferon (IFN)-dependent immune responses which plays a critical role in the innate immune response against DNA and RNA viruses.
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Key transcriptional regulator of type I interferon (IFN)-dependent immune responses which plays a critical role in the innate immune response against DNA and RNA viruses (PubMed:22394562, PubMed:24049179, PubMed:25636800, PubMed:27302953, PubMed:31340999, PubMed:36603579, PubMed:8524823, PubMed:39362857). Regulates the transcription of type I IFN genes (IFN-alpha and IFN-beta) and IFN-stimulated genes (ISG) by binding to an interferon-stimulated response element (ISRE) in their promoters (PubMed:11846977, PubMed:16846591, PubMed:16979567, PubMed:20049431, PubMed:32972995, PubMed:36603579, PubMed:8524823). Acts as a more potent activator of the IFN-beta (IFNB) gene than the IFN-alpha (IFNA) gene and plays a critical role in both the early and late phases of the IFNA/B gene induction (PubMed:16846591, PubMed:16979567, PubMed:20049431, PubMed:36603579). Found in an inactive form in the cytoplasm of uninfected cells and following viral infection, double-stranded RNA (dsRNA), or toll-like receptor (TLR) signaling, is phosphorylated by IKBKE and TBK1 kinases (PubMed:22394562, PubMed:25636800, PubMed:27302953, PubMed:36603579). This induces a conformational change, leading to its dimerization and nuclear localization and association with CREB binding protein (CREBBP) to form dsRNA-activated factor 1 (DRAF1), a complex which activates the transcription of the type I IFN and ISG genes (PubMed:16154084, PubMed:27302953, PubMed:33440148, PubMed:36603579). Can activate distinct gene expression programs in macrophages and can induce significant apoptosis in primary macrophages (PubMed:16846591). In response to Sendai virus infection, is recruited by TOMM70:HSP90AA1 to mitochondrion and forms an apoptosis complex TOMM70:HSP90AA1:IRF3:BAX inducing apoptosis (PubMed:25609812). Key transcription factor regulating the IFN response during SARS-CoV-2 infection (PubMed:33440148)
Subcellular location
Domains and Gene Ontology detail (43)Hide
Gene Ontology
- Cchromatin
- Ccytoplasm
- Ccytosol
- Cmitochondrion
- Cnucleoplasm
- Cnucleus
- FDNA binding
- FDNA-binding transcription activator activity
- FDNA-binding transcription activator activity, RNA polymerase II-specific
- FDNA-binding transcription factor activity
- FDNA-binding transcription factor activity, RNA polymerase II-specific
- FDNA-binding transcription repressor activity, RNA polymerase II-specific
Biological roles
What this protein does, drawn together from its UniProt function, Gene Ontology terms and Reactome pathways.
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Transcriptional regulation
- ·Key transcriptional regulator of type I interferon (IFN)-dependent immune responses whic…
- ·DNA-binding transcription activator activity
- ·DNA-binding transcription activator activity, RNA polymerase II-specific
- ·DNA-binding transcription factor activity
Immune signalling
- ·Key transcriptional regulator of type I interferon (IFN)-dependent immune responses whic…
- ·antiviral innate immune response
- ·positive regulation of cytokine production involved in inflammatory response
Apoptosis & cell death
- ·apoptotic process
- ·macrophage apoptotic process
- ·regulation of apoptotic process
Concepts derived from UniProt GO Reactome — each badge above shows which sources supported that role.
Translational evidence
Why this target matters therapeutically, strongest evidence first. Disease associations are gene-level (via the gene that encodes this protein) and open into the full confidence synthesis; the development universe, tractability and safety annotations are target-level, from Open Targets.
Strongest disease associations · via encoding gene IRF3
Gene-level evidence surfaced through the gene IRF3that encodes this protein — not a direct protein–disease relationship. Ranked by Forefront's causal-directness weighting, so genetically- and clinically-evidenced diseases lead over ones that merely share the literature.
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The evidence agreement range shows how closely the independent evidence families agree — it is not a statistical confidence interval, and nothing here is fitted to outcome data. Derived from Open Targets evidence types under Forefront weighting; the per-type scores above show the calculation.
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Tractability
Protein degraders — Emerging
View underlying tractability evidence (3)Hide
Raw Open Targets tractability assessment buckets, by modality.
Research activity
Papers linked directly to this protein. This is the protein's own literature — descriptor-derived papers are kept separate below.
Most cited
Recent
Europe PMC papers linked directly to this protein.
Related family literature
Papers about “Interferon Regulatory Factors” — a broader family this protein belongs to. Shown as context; not counted as papers specifically about this protein.
via Interferon Regulatory Factors
via Interferon Regulatory Factors
Europe PMC literature, reached through curated HGNC family membership. Membership is a taxonomic relationship — it does not imply this protein participates in every mechanism these papers discuss.