TNFRSF1A Rabbit Polyclonal Antibody
CAT#: TA327070
Rabbit anti-TNF-R1 Polyclonal Antibody
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Specifications
Product Data | |
Applications | ICC/IF, IHC, WB |
Recommend Dilution | WB 1:500 - 1:2000;IF 1:50 - 1:200 |
Reactivity | Mouse, Human, Rat |
Host | Rabbit |
Clonality | Polyclonal |
Immunogen | Recombinant protein of human TNF-R1 |
Formulation | PBS with 0.09% Sodium azide,50% glycerol,pH7.3. |
Concentration | lot specific |
Purification | Affinity purification |
Conjugation | Unconjugated |
Storage Condition | Store at -20°C as received. |
Predicted Protein Size | 50 kDa |
Gene Name | tumor necrosis factor receptor superfamily member 1A |
Database Link | |
Background | TNF-a is an important cytokine produced by numerous cell types including neutrophils, activated lymphoctyes, macrophages an NK cells. It plays a critical role in inflammatory responses and in apoptosis. TNF-a exists as a membrane-anchored and soluble form, both of which show biological activity. Response to TNF-a is mediated through two receptors, TNF-R1, which is widely expressed, and TNF-R2, which is expressed mainly in immune and endothelial cells. Antagonists to TNF-a have been validated as therapeutic targets for rheumatoid arthritis and other immune disorders.The two receptors for TNF-a, TNF-R1 (55 kDa) and TNF-R2 (75 kDa) can mediate distinct cellular responses. In most cases cytotoxicity elicited by TNF has been reported to act through TNF-R1. Cytotoxicity is mediated by a "death domain" with the intracellular region of the receptor that binds to the death domain adaptor protein TRADD and triggers the activation of caspases. Soluble forms of both receptors have also been characterized which can bind TNF-a and may play an important role in immune disorders. |
Synonyms | CD120a; FPF; MS5; p55; p55-R; p60; TBP1; TNF-R; TNF-R-I; TNF-R55; TNFAR; TNFR1; TNFR1-d2; TNFR55 |
Reference Data | |
Protein Families | Druggable Genome, Secreted Protein, Transcription Factors, Transmembrane |
Protein Pathways | Adipocytokine signaling pathway, Alzheimer's disease, Amyotrophic lateral sclerosis (ALS), Apoptosis, Cytokine-cytokine receptor interaction, MAPK signaling pathway |
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