TNF receptor 1 (TNF RI; also called TNF R-p55/p60 and TNFRSF1A) is a type I transmembrane protein member of the TNF receptor superfamily, designated TNFRSF1A (1, 2). Both TNF RI and TNF RII (TNFRSF1B) are widely expressed and contain four TNF-alpha trimer-binding cysteine-rich domains (CRD) in their extracellular domains (ECD). However, TNF RI is thought to mediate most of the cellular effects of TNF-alpha (3). It is essential for proper development of lymph node germinal centers and Peyer’s patches, and for combating intracellular pathogens such as Listeria (1‑3). TNF RI is also a receptor for TNF-beta /TNFSF1B (lymphotoxin-alpha ) (4). TNF RI is present on the cell surface as a trimer of 55 kDa subunits (4, 5). TNF-alpha induces sequestering of TNF RI in lipid rafts, where it activates NF kappa B and is cleaved by ADAM-17/TACE (9, 10). Release of the 28 - 34 kDa TNF RI ECD also occurs constitutively and in response to products of pathogens such as LPS, CpG DNA or S. aureus protein A (1, 6‑8). Full-length TNF RI may also be released in exosome-like vesicles (11). Release helps to resolve inflammatory reactions, since it down-regulates cell surface TNF RI and provides soluble TNF RI to bind TNF-alpha (6, 12, 13). Exclusion from lipid rafts causes endocytosis of TNF RI complexes and induces apoptosis (1). Mouse TNF RI is a 454 amino acid (aa) protein that contains a 21 aa signal sequence, a 191 aa ECD with a PLAD domain (5) that mediates constitutive trimer formation, followed by the four CRD, a 23 aa transmembrane domain, and a 219 aa cytoplasmic sequence that contains a neutral sphingomyelinase activation domain and a death domain (15). The ECD of mouse TNF RI shows 67%, 70%, 64%, 70% and 88% aa identity with canine, feline, porcine, human, and rat TNF RI, respectively; it shows 23% aa identity with the ECD of TNF RII.
Mouse TNF RI/TNFRSF1A Alexa Fluor™ Plus 405‑conjugated Antibody
R&D Systems | Catalog # FAB430AFP405
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Applications for Mouse TNF RI/TNFRSF1A Alexa Fluor™ Plus 405‑conjugated Antibody
Immunoprecipitation
Western Blot
Neutralization
Formulation, Preparation, and Storage
Formulation
Shipping
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Background: TNF RI/TNFRSF1A
References
- Pfeffer, K. (2003) Cytokine Growth Factor Rev. 14:185.
- Hehlgans, T. and K. Pfeffer (2005) Immunology 115:1.
- Peschon, J.J. et al. (1998) J. Immunol. 160:943.
- Banner, D.W et al. (1993) Cell 73: 431.
- Chan, F.K. et al. (2000) Science 288:2351.
- Xanthoulea, S. et al. (2004) J. Exp. Med. 200:367.
- Jin, L. et al. (2000) J. Immunol. 165:5153.
- Gomez, M.I. et al. (2006) J. Biol. Chem. 281:20190.
- Legler, D.F. et al. (2003) Immunity 18:655.
- Tellier, E. et al. (2006) Exp. Cell Res. 312:3969.
- Islam, A. et al. (2006) J. Biol. Chem. 281:6860.
- Garton, K.J. et al. (2006) J. Leukoc. Biol. 79:1105.
- McDermott, M.F. et al. (1999) Cell 97:133.
- Schneider-Brachert, W. et al. (2004) Immunity 21:415.
- Lewis, M. et al. (1991) Proc. Natl. Acad. Sci. USA 88:2830.
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This product is provided under an intellectual property license from Life Technologies Corporation. The transfer of this product is conditioned on the buyer using the purchased product solely in research conducted by the buyer, excluding contract research or any fee for service research, and the buyer must not (1) use this product or its components for (a) diagnostic, therapeutic or prophylactic purposes; (b) testing, analysis or screening services, or information in return for compensation on a per-test basis; or (c) manufacturing or quality assurance or quality control, and/or (2) sell or transfer this product or its components for resale, whether or not resold for use in research. For information on purchasing a license to this product for purposes other than as described above, contact Life Technologies Corporation, 5781 Van Allen Way, Carlsbad, CA 92008 USA or outlicensing@thermofisher.com.
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Protocols
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- Cellular Response to Hypoxia Protocols
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- Troubleshooting Guide: Western Blot Figures
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