Mouse IFN beta Recombinant Protein

Catalog Number:
RP0487M
Availability:
In stock
Application:
Cell Culture, Control, ELISA, ELISpot Control, Western Blot Control
100% Homology:
Mus musculus (house mouse)
  • Mouse IFN-β (catalog RP0487M) is a yeast-derived cytokine supplied lyophilized without carrier protein in 10% trehalose; it has no affinity tags and is naturally endotoxin-free, and should be reconstituted in sterile PBS that contains at least 0.1% carrier protein. The protein is ~19.7 kDa, 161 amino acids long (full sequence provided), and >98% pure by SDS-PAGE, with 100% amino-acid homology to house mouse. Store at -20°C (stable up to twelve months from date of receipt; working aliquots with carrier protein stable ~3 months) and avoid repeated freeze/thaw cycles. Product origin is the USA. It is commonly used to study type I interferon signaling and antiviral immune responses (including regulation of innate immunity and gene expression); typical experimental uses include cell-culture stimulation and antiviral assays, signaling and gene-expression studies, ELISA and neutralization assays, flow-cytometry and Western blot controls, and antibody generation/validation. Kingfisher Biotech products are supplied for research applications and are not intended for medicinal, diagnostic, or therapeutic use.
Amino Acid SequenceINYKQLQLQE RTNIRKCQEL LEQLNGKINL TYRADFKIPM EMTEKMQKSY TAFAIQEMLQ NVFLVFRNNF SSTGWNETIV VRLLDELHQQ TVFLKTVLEE KQEERLTWEM SSTALHLKSY YWRVQRYLKL MKYNSYAWMV VRAEIFRNFL IIRRLTRNFQ N (161)
EndotoxinNaturally endotoxin-free
FormLyophilized
Storage Conditions-20°C
Molecular Weight19.7 kDa
Purity>98% as visualized by SDS-PAGE analysis.
Expression SystemYeast
FormLyophilized
Country Of OriginUSA
Mouse Interferon-Beta (IFN-β) is a type I interferon produced primarily by virus-infected epithelial cells, fibroblasts, macrophages, and dendritic cells in mice (Mus musculus), where it serves as a critical early mediator of innate antiviral immunity. Following recognition of viral RNA or DNA by pattern recognition receptors such as RIG-I, MDA5, and the cGAS-STING pathway, murine IFN-β is rapidly induced and signals through the type I interferon receptor complex (IFNAR1/IFNAR2), activating JAK/STAT signaling and driving expression of interferon-stimulated genes (ISGs) that inhibit viral replication, enhance antigen presentation, and promote natural killer (NK) cell activation and adaptive immune responses. Mouse IFN-β plays a central role in experimental models of viral infections including influenza virus, lymphocytic choriomeningitis virus (LCMV), murine cytomegalovirus (MCMV), West Nile virus, and SARS-CoV-2 (adapted strains), where the timing and magnitude of IFN-β production influence viral control and immunopathology. IFN-β is also critically involved in models of autoimmune disease, particularly experimental autoimmune encephalomyelitis (EAE), where it has immunomodulatory effects similar to its therapeutic use in human multiple sclerosis. IFNAR-deficient and IFN-β knockout mouse models have been instrumental in defining type I interferon signaling pathways, antiviral defense mechanisms, and interferon-driven inflammation. As both a biomarker and functional regulator of innate immunity, murine IFN-β remains central to preclinical research on antiviral therapies, vaccine development, cancer immunology, and immune-mediated disease.

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