SMAD4 Antibody
Rabbit Anti-Human SMAD4 Polyclonal
- SPECIFICATION
- CITATIONS
- PROTOCOLS
- BACKGROUND
Application
| IHC |
---|---|
Primary Accession | Q13485 |
Other Accession | NP_005350.1 |
Host | Rabbit |
Clonality | Polyclonal |
Format | SMAD4 |
Target/Specificity | SMAD4 |
Other Names | SMAD 4 Antibody, MADH4 Antibody, SMAD4 Antibody, SMAD family member 4 Antibody, Smad4 Antibody, Mothers against decapentaplegic homolog 4 Antibody, DPC4 Antibody, hSMAD4 Antibody, MAD homolog 4 Antibody, Deletion target in pancreatic carcinoma 4 Antibody, Mothers against DPP homolog 4 Antibody |
Clone Names | SMAD4 |
Immunogen | Synthetic peptide of Human SMAD4 (200-300 aa), conjugated to Keyhole Limpet Haemocyanin (KLH). |
Purification | Peptide Affinity Purified |
Storage | -20ºC |
Storage Buffer | PBS pH 7.4, 50% glycerol, 0.09% sodium azide *Storage buffer may change when conjugated |
Shipping Temperature | Blue Ice or 4ºC |
Certificate of Analysis | A 1:1000 dilution of SPC-730 was sufficient for detection of SMAD4 in 15 µg of human HeLa cell lysates by ECL immunoblot analysis using goat anti-rabbit IgG:HRP as the secondary antibody. |
Cellular Localization | Cytoplasm | Nucleus |
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Provided below are standard protocols that you may find useful for product applications.
Background
Members of the Smad family of cell signaling molecules are components of a critical intracellular pathway that transmit TGF-β signals from the cell surface into the nucleus. There are three distinct classes of Smads: the receptor-regulated Smads (R-Smads), the common-mediator Smad (co-Smad), and the antagonistic or inhibitory Smads. Following stimulation by TGF-β, Smad2 and Smad3 become phosphorylated at their carboxyl termini (Ser465 and 467 on Smad2; Ser423 and 425 on Smad3) by TGF-β Receptor I. Phosphorylated Smad 2/3 can complex with Smad4, translocate to the nucleus and regulate gene expression.
References
1. Heldin C.H. et al. (1997) Nature. 390: 465-471.
2. Attisano L. and Wrana, J.L. (1998) Curr Opin Cell Biol. 10: 188-194.
3. Massagué J. (1998) Annu Rev Biochem. 67: 753-791.
4. Whitman M. (1998) Genes Dev. 12: 2445-2462.
5. Wu G. et al. (2000) Science. 287: 92-97.
6. Abdollah S., et al. (1997) J. Biol. Chem. 272: 27678-27685.
7. Souchelnytskyi S., et al. (1997) J. Biol. Chem. 272: 28107-28115.
8. Liu X., et al. (1997) Proc. Natl. Acad. Sci. USA. 94: 10669-10674.
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