Human IL-4 Recombinant Protein

Catalog Number:
RP0356H
Application:
Cell Culture, Control, ELISA, ELISpot Control, Western Blot Control
100% Homology:
Homo sapiens (human), Pan troglodytes (chimpanzee)
  • Human IL-4 (catalog RP0356H) 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 ~15.0 kDa, 129 amino acids long (full sequence provided), and >98% pure by SDS-PAGE, with 100% amino-acid homology to human and chimpanzee. 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 in immunology and cell-biology research to study IL-4 signaling and Th2 immune responses, to promote B-cell proliferation and antibody class switching (including IgE), to drive differentiation of naive CD4⁺ T cells toward a Th2 phenotype, and to induce alternative (M2) macrophage activation; typical experimental uses include cell-culture stimulation and dosing 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 SequenceHKCDITLQEI IKTLNSLTEQ KTLCTELTVT DIFAASKNTT EKETFCRAAT VLRQFYSHHE KDTRCLGATA QQFHRHKQLI RFLKRLDRNL WGLAGLNSCP VKEANQSTLE NFLERLKTIM REKYSKCSS (129)
EndotoxinNaturally endotoxin-free
FormLyophilized
Storage Conditions-20°C
Molecular Weight15.0 kDa
Purity>98% as visualized by SDS-PAGE analysis.
Affinity TagNone
aminoAcids129
Carrier ProteinNone
Expression SystemYeast
FormLyophilized
Country Of OriginUSA
Human Interleukin-4 (IL-4) is a central Th2-associated cytokine produced primarily by activated CD4⁺ T helper 2 (Th2) cells, group 2 innate lymphoid cells (ILC2s), mast cells, and basophils, where it plays a pivotal role in regulating humoral immunity, allergic inflammation, and alternative macrophage activation. IL-4 signals through two receptor complexes: the type I receptor (IL-4Rα paired with the common gamma chain, γc) and the type II receptor (IL-4Rα paired with IL-13Rα1), activating JAK/STAT6 pathways that drive B-cell proliferation, IgE class switching, mucus production, and suppression of Th1-associated cytokines such as IFN-γ. IL-4 is critically involved in allergic diseases including asthma, atopic dermatitis, allergic rhinitis, and food allergy, where it promotes IgE-mediated hypersensitivity, eosinophilic inflammation, and tissue remodeling. While essential for defense against helminths and for coordinating effective antibody responses, dysregulated IL-4 signaling contributes to chronic allergic inflammation and barrier dysfunction. IL-4 also influences tumor immunity and fibrotic processes through macrophage polarization and stromal interactions. As a major therapeutic target, blockade of IL-4Rα (thereby inhibiting IL-4 and IL-13 signaling) has demonstrated clinical efficacy in multiple type 2 inflammatory diseases. Consequently, human IL-4 is central to research on Th1/Th2 immune balance, allergy pathogenesis, immune regulation, and development of targeted biologic therapies.
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