Back to discover

Protein / target

Interferon alpha/beta receptor 1

Encoded byIFNAR1P17181Homo sapiensSwiss-Prot
Clinically validated
Therapeutic maturity
12
Approved medicines
Open Targets target-level
View by indication →
30
Clinical trials
Antibody-tractable
Druggability
Approved Drug

Protein at a glance

Biological role

JAK pathway signal transduction adaptor

Strongest disease association

Immunodeficiency 106, susceptibility to viral infections

Via encoding gene IFNAR1 · Genetic evidence · score 0.79

Therapeutic position

Established drug target

Antibodies

Derived from structured UniProt, Open Targets and literature data on this page.

Protein profile

UniProt 2026_02

Canonical identity and biological annotation from UniProt.

Function overview

Together with IFNAR2, forms the heterodimeric receptor for type I interferons (including interferons alpha, beta, epsilon, omega and kappa).

View complete UniProt function annotation

Together with IFNAR2, forms the heterodimeric receptor for type I interferons (including interferons alpha, beta, epsilon, omega and kappa) (PubMed:10049744, PubMed:14532120, PubMed:15337770, PubMed:2153461, PubMed:21854986, PubMed:24075985, PubMed:31270247, PubMed:33252644, PubMed:35442418, PubMed:7813427). Type I interferon binding activates the JAK-STAT signaling cascade, resulting in transcriptional activation or repression of interferon-regulated genes that encode the effectors of the interferon response (PubMed:10049744, PubMed:21854986, PubMed:7665574). Mechanistically, type I interferon-binding brings the IFNAR1 and IFNAR2 subunits into close proximity with one another, driving their associated Janus kinases (JAKs) (TYK2 bound to IFNAR1 and JAK1 bound to IFNAR2) to cross-phosphorylate one another (PubMed:21854986, PubMed:32972995, PubMed:7665574, PubMed:7813427). The activated kinases phosphorylate specific tyrosine residues on the intracellular domains of IFNAR1 and IFNAR2, forming docking sites for the STAT transcription factors (PubMed:21854986, PubMed:32972995, PubMed:7526154, PubMed:7665574, PubMed:7813427). STAT proteins are then phosphorylated by the JAKs, promoting their translocation into the nucleus to regulate expression of interferon-regulated genes (PubMed:19561067, PubMed:21854986, PubMed:32972995, PubMed:7665574, PubMed:7813427, PubMed:9121453). Can also act independently of IFNAR2: form an active IFNB1 receptor by itself and activate a signaling cascade that does not involve activation of the JAK-STAT pathway (By similarity)

Subcellular location

Cell membraneLate endosomeLysosome
Domains and Gene Ontology detail (19)

Domains & features

Fibronectin type-III 1Fibronectin type-III 2Fibronectin type-III 3Fibronectin type-III 4

Gene Ontology

  • Clate endosome
  • Clysosome
  • Cplasma membrane
  • Fcytokine binding
  • FJAK pathway signal transduction adaptor activity
  • Ftype I interferon binding
  • Ftype I interferon receptor activity
  • Pcell surface receptor signaling pathway via JAK-STAT
  • Pcellular response to interferon-alpha
  • Pcellular response to interferon-beta
  • Pcellular response to virus
  • Ppositive regulation of cellular respiration

557 aa · 64 kDa · 4 isoforms

Biological roles

Reactome v97

What this protein does, drawn together from its UniProt function, Gene Ontology terms and Reactome pathways.

Immune signallingGO · Reactome
View supporting evidence

Immune signalling

  • ·cytokine binding
  • ·SARS-CoV-2 activates/modulates innate and adaptive immune responses
View underlying pathways (5)

Concepts derived from UniProt GO Reactome — each badge above shows which sources supported that role.

Interaction neighbourhood

STRING v12.0

Proteins with the strongest functional or physical association. Node size and line weight reflect STRING confidence; hover or select a partner to inspect one association.

IFNA2TYK2IFNB1IFNAR2JAK1STAT2IFNA1STAT1IFNEIFNKIFNAR1

10 strongest partners — larger node and heavier line mean higher confidence

Functional and physical associations from STRING v12.0. Only associations with this protein are drawn — partner-to-partner links are not part of this evidence.

Approved medicines with mapped indications

8 medicines · 12 areas

Approved therapies targeting this protein, grouped by what they are approved to treat — the disease-first view of the medicines below. Relationships come from the canonical approved-indication graph (ChEMBL phase-4), the same source as the drug cards.

Hepatitis B, Chronic2 medicines
Carcinoid Tumor1 medicine
Hepatitis B1 medicine
Leukemia, Myelogenous, Chronic, BCR-ABL Positive1 medicine
Lupus Erythematosus, Systemic1 medicine
Lymphoma, Follicular1 medicine
Multiple Myeloma1 medicine
Sarcoma, Kaposi1 medicine

12 medicines meet Open Targets' target-level approved-medicine definition; the 8 shown here are those on this page with a canonical approved disease indication in the graph. Approved indications from ChEMBL (phase-4), via the canonical drug→disease graph.

Drugs targeting this protein

8

How approved and investigational drugs engage this protein — mechanism and action type, direct vs complex targeting, and how broadly each acts across other targets. A drug-first view (the section above groups the approved ones disease-first); direct binders with few recorded targets are listed first.

anifrolumab
Narrow target profileApprovedAntagonist

Interferon-alpha/beta receptor alpha chain antagonist

Indicated for Lupus Erythematosus, Systemic

Direct interaction with this protein · Only this protein recorded as a target

interferon beta-1b
ApprovedAgonist

Interferon alpha/beta receptor agonist

Indicated for Multiple Sclerosis, Neoplasms

Acts on a complex — shared with IFNAR2 · 1 of 2 recorded protein targets — narrow recorded profile

interferon beta-1a
ApprovedAgonist

Interferon alpha/beta receptor agonist

Indicated for Multiple Sclerosis, Neoplasms

Acts on a complex — shared with IFNAR2 · 1 of 2 recorded protein targets — narrow recorded profile

peginterferon beta-1a
ApprovedAgonist

Interferon alpha/beta receptor agonist

Indicated for Multiple Sclerosis, Neoplasms

Acts on a complex — shared with IFNAR2 · 1 of 2 recorded protein targets — narrow recorded profile

peginterferon alfa-2a
ApprovedAgonist

Interferon alpha/beta receptor agonist

Indicated for Hepatitis B, Hepatitis B, Chronic, Hepatitis C, Chronic, Neoplasms

Acts on a complex — shared with IFNAR2 · 1 of 2 recorded protein targets — narrow recorded profile

ropeginterferon alfa-2b
ApprovedPositive modulator

Interferon alpha/beta receptor positive modulator

Indicated for Neoplasms

Acts on a complex — shared with IFNAR2 · 1 of 2 recorded protein targets — narrow recorded profile

View all 8 targeting drugs
peginterferon alfa-2b
ApprovedAgonist

Interferon alpha/beta receptor agonist

Indicated for Hepatitis C, Chronic, Melanoma, Neoplasms

Acts on a complex — shared with IFNAR2 · 1 of 2 recorded protein targets — narrow recorded profile

interferon alfa-2b
ApprovedAgonist

Interferon alpha/beta receptor agonist

Indicated for Carcinoid Tumor, Hepatitis B, Chronic, Hepatitis C, Chronic, Leukemia, Myelogenous, Chronic, BCR-ABL Positive

Acts on a complex — shared with IFNAR2 · 1 of 2 recorded protein targets — narrow recorded profile

ChEMBL mechanism, action type, target identity and approved indications. Open Targets clinical status.

Translational evidence

Open Targets 26

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 IFNAR1

Gene-level evidence surfaced through the gene IFNAR1that 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.

Immunodeficiency 106, susceptibility to viral infections
0.86Well supported

Genetic evidence dominant · Open Targets 0.70

Melanoma
0.76Well supported

Clinical evidence dominant · Open Targets 0.61

Neoplasms
0.76Well supported

Clinical evidence dominant · Open Targets 0.61

Multiple Sclerosis
0.75Well supported

Clinical evidence dominant · Open Targets 0.61

Hepatitis B, Chronic
0.75Moderately supported

Clinical evidence dominant · Open Targets 0.61

View evidence synthesis (5)
Immunodeficiency 106, susceptibility to viral infectionsWell supported
0.86
agreement 0.740.99
Genetic70%Animal model30%Genetic literaturedup

Open Targets aggregate 0.70 · 2 independent evidence families · 1 not counted as duplicate

MelanomaWell supported
0.76
agreement 0.600.91
Clinical85%Literature15%

Open Targets aggregate 0.61 · 2 independent evidence families

NeoplasmsWell supported
0.76
agreement 0.600.91
Clinical83%Literature17%

Open Targets aggregate 0.61 · 2 independent evidence families

Multiple SclerosisWell supported
0.75
agreement 0.590.91
Clinical97%Literature3%

Open Targets aggregate 0.61 · 2 independent evidence families

Hepatitis B, ChronicModerately supported
0.75
agreement 0.590.90
Clinical97%Literature3%

Open Targets aggregate 0.61 · 2 independent evidence families

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.

Show all associations
Immunodeficiency 106, susceptibility to viral infections0.70
Melanoma0.61
Neoplasms0.61
Multiple Sclerosis0.61
Hepatitis B, Chronic0.61
Hepatitis C, Chronic0.61
Hepatitis C0.59
Hepatitis B0.59
Lupus Erythematosus, Systemic0.58
Acquired polycythemia vera0.58

Drug development

12 compounds recorded · 12 approved

Open Targets' development universe — every compound recorded against the target at any stage, not all approved medicines. Distinct from the 8 drugs that target this protein in Forefront's canonical graph (8 with a mapped approved indication, shown above): these count different sets and are not a subset relation.

View all recorded compounds (10)
INTERFERON BETA-1BApproval
INTERFERON ALFA-2BApproval
INTERFERON ALFA-N3Approval
INTERFERON ALFACON-1Approval
PEGINTERFERON BETA-1AApproval
ANIFROLUMABApproval
PEGINTERFERON ALFA-2AApproval
PEGINTERFERON ALFA-2BApproval
ALBINTERFERON ALFA-2BApproval
ROPEGINTERFERON ALFA-2BApproval

Open Targets known-drugs universe. Drug name and highest clinical stage only — the disease relationship is NOT read from this slice (it carries trial-context noise); approved indications come from the canonical graph above.

Tractability

AntibodiesStrong

Approved Drug and UniProt loc high conf support this modality.

Protein degradersEmerging

Feasibility evidence (uniprot ubiquitination and database ubiquitination) — no clinical-stage drug of this modality recorded.

Other modalitiesStrong

Approved Drug support this modality.

View underlying tractability evidence (8)
AB · Approved DrugAB · UniProt loc high confAB · GO CC high confAB · UniProt SigP or TMHMMPR · UniProt UbiquitinationPR · Database UbiquitinationPR · Small Molecule BinderOC · Approved Drug

Raw Open Targets tractability assessment buckets, by modality.

Clinical trials

30

Trials of drugs that target this protein — reached indirectly through those drugs, so a trial listed here studies the drug, not the protein. Ranked by active status, then clinical phase and recency, and spread across the targeting drugs.

View all trials (26)

ACTIVE_NOT_RECRUITING · via peginterferon alfa-2b · NCT00539591

RECRUITING · via ropeginterferon alfa-2b · NCT07047885

ENROLLING_BY_INVITATION · via peginterferon alfa-2b · NCT06777173

ClinicalTrials.gov via the drug-target graph.

What's happening now

12

Recent therapeutic activity around this target — regulatory actions, clinical trials and safety signals for 4 drugs that target this protein, plus publications where such a drug is a genuine subject. Every item is reached indirectly through the drug, not the protein itself; incidental mentions (a paper that merely measures a drug) and press items are excluded.

  1. Label change2026-08-07

    Label change: ANIFROLUMAB-FNIA (BLA761123)

    fda · regulatory · fda · via anifrolumab

  2. Trial status changed2026-07-22

    A Randomized, Double-Blind, Placebo-Controlled Multicenter Phase III Study to Assess Efficacy and Safety of Ropeginterferon Alfa-2b (P1101) in Adult Patients With Pre-fibrotic/Early Primary Myelofibrosis (PMF) or Overt PMF at Low or Intermediate-1 Risk According to DIPSS Plus (HOPE-PMF): The Core Study and Its Extension Study

    Status changed to Active, not recruiting · ClinicalTrials.gov · via ropeginterferon alfa-2b

  3. Label change2026-06-26

    Label change: ROPEGINTERFERON ALFA-2B (BLA761166)

    fda · regulatory · fda · via ropeginterferon alfa-2b

  4. Withdrawn from market2025-04-25

    Market withdrawal: Extavia (EMA)

    ema · market · ema · via interferon beta-1b

  5. Label change2024-08-07

    Label change: ANIFROLUMAB-FNIA (BLA761123)

    fda · regulatory · fda · via anifrolumab

  6. New publication2024-07-15
    Type I interferon blockade with anifrolumab in patients with systemic lupus erythematosus modulates key immunopathological pathways in a gene expression and proteomic analysis of two phase 3 trials.

    Annals of the rheumatic diseases · 2024 · 52 citations · Europe PMC · via anifrolumab

  7. Label change2024-04-29

    Label change: ROPEGINTERFERON ALFA-2B (BLA761166)

    fda · regulatory · fda · via ropeginterferon alfa-2b

  8. Indication expanded2023-12-01

    Indication expansion: ANIFROLUMAB-FNIA (BLA761123)

    fda · regulatory · fda · via anifrolumab

  9. Regulatory approval2022-02-14

    Approval: Saphnelo (EMA)

    ema · regulatory · ema · via anifrolumab

  10. New publication2019-09-03
    Safety and efficacy of ozanimod versus interferon beta-1a in relapsing multiple sclerosis (RADIANCE): a multicentre, randomised, 24-month, phase 3 trial.

    The Lancet. Neurology · 2019 · 192 citations · Europe PMC · via interferon beta-1a

  11. New publication2011-04-01
    Alemtuzumab versus interferon β-1a in early relapsing-remitting multiple sclerosis: post-hoc and subset analyses of clinical efficacy outcomes.

    The Lancet. Neurology · 2011 · 96 citations · Europe PMC · via interferon beta-1a

  12. New publication2008-10-01
    Alemtuzumab vs. interferon beta-1a in early multiple sclerosis.

    The New England journal of medicine · 2008 · 706 citations · Europe PMC · via interferon beta-1a

Objective event titles are shown unmodified; the event kind and significance line are derived from structured fields. Forefront AttentionEvent stream aggregating Europe PMC Regulatory filings ClinicalTrials.gov.

Related family literature

4

Papers about “Receptor, Interferon alpha-beta” — a broader family this protein belongs to. Shown as context; not counted as papers specifically about this protein.

Genetic mechanisms of critical illness in COVID-19.

Pairo-Castineira E · Nature · 2021

via Receptor, Interferon alpha-beta

Inborn errors of type I IFN immunity in patients with life-threatening COVID-19.

Zhang Q · Science (New York, N.Y.) · 2020

via Receptor, Interferon alpha-beta

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.