SMAD5 Antibody
0,1 mg
PA2115
320 €
SMAD5
human
SMAD5
rabbit
Q99717
WB,IHC-P
anticorps
freeze-dried
Polyclonal antibody
Polyclonal antibody
SMAD family member 5
IgG polyclonal antibody
Immunogen affinity purified.
Mothers against decapentaplegic homolog 5
Each vial contains 5mg BSA, 0.9mg NaCl, 0.2mg Na2HPO4, 0.05mg Thimerosal, 0.05mg NaN3.
The powdered antibody should be dissolved in 0.2 ml of distilled water to achieve final concentration of 500ug/ml
If you buy Antibodies supplied by boster they should be stored frozen at - 24°C for long term storage and for short term at + 5°C.
The SMAD5 Antibody did not cross-reacted with other proteins during the test procedures. This antobdy is intended to be used for research analyses and it is not applicale for in vitro diagnostics.
A synthetic peptide corresponding to a sequence in the middle region of human SMAD5(248-267aa IPQIMPSISSRDVQPVAYEE), identical to the related rat sequence, and different from the related mouse sequence by one amino acid.
Keep the SMAD5 Antibodyat minus twenty degrees Celsius for 1 year. The ready-to-use solutions can be stored at four degrees Celsius for a month. Our specialsits recommend to freeze the aliquotes at minus twenty degrees Celsius for long-term application. Multiple procedures of freezing and thawing influence the specifity and reactivity of the antibody in a negative way.
Mother against decapentaplegic homolog 5 also known as SMAD5 is a protein that in humans is encoded by the SAMD5 gene. It belongs to the SMAD family of proteins, which belong to the TGFbeta superfamily of modulators. The gene was assigned to human chromosome 5q31. Like many other TGFbeta family members SMAD5 is involved in cell signalling and modulates signals of bone morphogenetic proteins(BMP's). It may play a role in the pathway where TGFbeta is an inhibitor of hematopoietic progenitor cells.
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1. Bruno, E., Horrigan, S. K., Van Den Berg, D., Rozler, E., Fitting, P. R., Moss, S. T., Westbrook, C., Hoffman, R. The Smad5 gene is involved in the intracellular signaling pathways that mediate the inhibitory effects of transforming growth factor-beta on human hematopoiesis. Blood 91: 1917-1923, 1998. 2. Davis, B. N., Hilyard, A. C., Lagna, G., Hata, A. SMAD proteins control DROSHA-mediated microRNA maturation. Nature 454: 56-61, 2008. 3. Gemma, A., Hagiwara, K., Vincent, F., Ke, Y., Hancock, A. R., Nagashima, M., Bennett, W. P., Harris, C. C. hSmad5 gene, a human hSmad family member: its full length cDNA, genomic structure, promoter region and mutation analysis in human tumors. Oncogene 16: 951-956, 1998. 4. Riggins, G. J., Thiagalingam, S., Rozenblum, E., Weinstein, C. L., Kern, S. E., Hamilton, S. R., Willson, J. K. V., Markowitz, S. D., Kinzler, K. W., Vogelstein, B. Mad-related genes in the human. Nature Genet. 13: 347-349, 1996.
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