Product Includes | Product # | Quantity | Color | Storage Temp |
---|---|---|---|---|
Phospho-NF-κB p65(Ser536) Mouse mAb Coated Microwells | 41521 | 96 tests |
|
+4C |
NF-κB p65 Rabbit Detection mAb | 13012 | 1 ea |
|
+4C |
Anti-rabbit IgG, HRP-linked Antibody (ELISA Formulated) | 13272 | 1 ea |
|
+4C |
Detection Antibody Diluent | 13339 | 11 ml |
|
+4C |
HRP Diluent | 13515 | 11 ml |
|
+4C |
TMB Substrate | 7004 | 11 ml |
|
+4C |
STOP Solution | 7002 | 11 ml |
|
+4C |
Sealing Tape | 54503 | 2 ea |
|
+4C |
ELISA Wash Buffer (20X) | 9801 | 25 ml |
|
+4C |
ELISA Sample Diluent | 11083 | 25 ml |
|
+4C |
Cell Lysis Buffer (10X) | 9803 | 15 ml |
|
-20C |
*The microwell plate is supplied as 12 8-well modules - Each module is designed to break apart for 8 tests.
Description
CST's PathScan® Phospho-NF-KappaB p65 (Ser536) Sandwich ELISA Kit is a solid phase sandwich enzyme-linked immunosorbent assay (ELISA) that detects endogenous levels of Phospho-NF-KappaB p65 protein. A Phospho-NF-KappaB p65 (Ser 536) Mouse mAb has been coated onto the microwells. After incubation with cell lysates, phospho-NF-KappaB p65 protein is captured by the coated antibody. Following extensive washing, NF-KappaB p65 Rabbit mAb is added to detect the captured phospho-NF-KappaB p65 protein. Anti-rabbit IgG, HRP-linked Antibody is then used to recognize the bound detection antibody. HRP substrate, TMB, is added to develop color. The magnitude of optical density for this developed color is proportional to the quantity of phospho-NF-KappaB p65 (Ser536).
*Antibodies in kit are custom formulations specific to kit.
Specificity/Sensitivity
Background
Transcription factors of the nuclear factor κB (NF-κB)/Rel family play a pivotal role in inflammatory and immune responses (1,2). There are five family members in mammals: RelA, c-Rel, RelB, NF-κB1 (p105/p50), and NF-κB2 (p100/p52). Both p105 and p100 are proteolytically processed by the proteasome to produce p50 and p52, respectively. Rel proteins bind p50 and p52 to form dimeric complexes that bind DNA and regulate transcription. In unstimulated cells, NF-κB is sequestered in the cytoplasm by IκB inhibitory proteins (3-5). NF-κB-activating agents can induce the phosphorylation of IκB proteins, targeting them for rapid degradation through the ubiquitin-proteasome pathway and releasing NF-κB to enter the nucleus where it regulates gene expression (6-8). NIK and IKKα (IKK1) regulate the phosphorylation and processing of NF-κB2 (p100) to produce p52, which translocates to the nucleus (9-11).
- Baeuerle, P.A. and Henkel, T. (1994) Annu Rev Immunol 12, 141-79.
- Baeuerle, P.A. and Baltimore, D. (1996) Cell 87, 13-20.
- Haskill, S. et al. (1991) Cell 65, 1281-9.
- Thompson, J.E. et al. (1995) Cell 80, 573-82.
- Whiteside, S.T. et al. (1997) EMBO J 16, 1413-26.
- Traenckner, E.B. et al. (1995) EMBO J 14, 2876-83.
- Scherer, D.C. et al. (1995) Proc Natl Acad Sci USA 92, 11259-63.
- Chen, Z.J. et al. (1996) Cell 84, 853-62.
- Senftleben, U. et al. (2001) Science 293, 1495-9.
- Coope, H.J. et al. (2002) EMBO J 21, 5375-85.
- Xiao, G. et al. (2001) Mol Cell 7, 401-9.
- Peiser, M. et al. (2008) J Leukoc Biol , .
Background References
Cross-Reactivity Key
H: human M: mouse R: rat Hm: hamster Mk: monkey Vir: virus Mi: mink C: chicken Dm: D. melanogaster X: Xenopus Z: zebrafish B: bovine Dg: dog Pg: pig Sc: S. cerevisiae Ce: C. elegans Hr: horse GP: Guinea Pig Rab: rabbit All: all species expected
Trademarks and Patents
Limited Uses
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