Zebrafish TNF alpha Recombinant Protein

Catalog Number:
RP1318Z
Availability:
In stock
Application:
Cell Culture, Control, ELISA, ELISpot Control, Western Blot Control
100% Homology:
Danio rerio (zebrafish)
  • Zebrafish TNF-α (Tumor Necrosis Factor alpha) (catalog RP1318Z) 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 ~16.5 kDa, 148 amino acids long (full sequence provided), and >98% pure by SDS-PAGE, with 100% amino-acid homology to zebrafish. 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 TNF-α signaling and immune responses (including regulation of inflammation, apoptosis, and innate immune activation); typical experimental uses include cell-culture stimulation and dosing studies, cytokine signaling assays, 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 SequenceAAIHLTGGYN SESKTLDWRD DQDQAFSSGG LKLVNREIII PDDGIYFVYS QVSLHISCTS ELTEEQVLMS HAVMRFSESY GGKKPLFSAI RSICTQEPES ENLWYNTIYL GAAFHLREGD RLGTDTTTAL LPMVENDNGK TFFGVFGL (148)
EndotoxinNaturally endotoxin-free
FormLyophilized
Storage Conditions-20°C
Molecular Weight16.5 kDa
Purity>98% as visualized by SDS-PAGE analysis.
Expression SystemYeast
FormLyophilized
Country Of OriginUSA
Zebrafish (Danio rerio) Tumor Necrosis Factor Alpha (TNF-α) is a proinflammatory cytokine that plays an important role in innate immune responses, inflammation, and host defense against pathogens in teleost fish. TNF belongs to the tumor necrosis factor (TNF) superfamily, a group of immune signaling molecules that includes TNF-α, lymphotoxins, Fas ligand (FasL), CD40 ligand (CD40L), and TRAIL, which regulate inflammatory signaling, apoptosis, and immune cell activation. In zebrafish, TNF is primarily produced by activated macrophages, neutrophils, and other innate immune cells following infection, tissue injury, or recognition of pathogen-associated molecular patterns. TNF signals through TNF receptor homologs that activate intracellular pathways such as NF-κB and MAPK, leading to induction of proinflammatory cytokines, antimicrobial responses, and recruitment of immune cells to sites of infection or injury. Zebrafish TNF plays important roles in defense against bacterial and mycobacterial infections, and it has been extensively studied in zebrafish models of Mycobacterium marinum infection, which serve as a model for human tuberculosis, where TNF signaling regulates macrophage activation and granuloma formation. Because zebrafish are widely used as a genetic and imaging model for immunology and infectious disease, characterization of zebrafish TNF has provided important insights into host–pathogen interactions, inflammatory signaling, and innate immune responses relevant to vertebrate immunity and human disease.

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