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AB10615
Sigma-AldrichAnti-PDEF Antibody
Detect PDEF using this Anti-PDEF Antibody validated for use in ELISA & WB.
More>>Detect PDEF using this Anti-PDEF Antibody validated for use in ELISA & WB. Less<<
Anti-PDEF Antibody: SDB (Sicherheitsdatenblätter), Analysenzertifikate und Qualitätszertifikate, Dossiers, Broschüren und andere verfügbare Dokumente.
PDEF (prostate-derived Ets factor) is a 37.5-kDa protein that acts as an androgen-independent transcriptional activator for the PSA (prostate specific antigen) promoter. It also interacts directly with the DNA binding domain of androgen receptor and enhances androgen-mediated activation of the PSA promoter. PDEF was shown to have transcript levels 192-fold higher in the peripheral blood of some breast cancer patients in comparison with normal individuals. PDEF mRNA is also frequently over-expressed in human breast tumors as well as in human ovarian tumors. In ovarian tumors, PDEF expression seems to down-modulate malignant potential, and thus provides a rationale to screen for drugs that induce PDEF expression in epithelial ovarian tumors.
References
Product Information
Format
Affinity Purified
Presentation
This polyclonal antibody is supplied in 400 μL of phosphate buffered saline (pH 7.4) containing 0.1% sodium azide.
Applications
Application
Detect PDEF using this Anti-PDEF Antibody validated for use in ELISA & WB.
Key Applications
ELISA
Western Blotting
Application Notes
ELISA: 0.1-1μg/mL Western Blotting: 1-3 μg/mL
Biological Information
Immunogen
Synthetic peptide derived from the internal region of human PDEF (prostate-derived Ets factor).
Concentration
Please refer to the Certificate of Analysis for the lot-specific concentration.
PDEF is an ETS transcription factor expressed in prostate epithelial cells. It acts as an androgen-independent transactivator of PSA (MIM 176820) expression.[supplied by OMIM]
FUNCTION: SwissProt: O95238 # May function as an androgen-independent transactivator of the prostate-specific antigen (PSA) promoter. Binds to 5'-GGAT- 3' DNA sequences. May play a role in the regulation of the prostate gland and/or prostate cancer development. Acts as a transcriptional activator for SERPINB5 promoter. SIZE: 335 amino acids; 37518 Da SUBUNIT: Interacts with the DNA-binding domain of the androgen receptor. Interacts with NKX3-1. SUBCELLULAR LOCATION: Nucleus (Probable). TISSUE SPECIFICITY: Expressed in a very restricted set of primarily hormone-regulated epithelial tissues with particularly high expression in the prostate gland. Significantly lower expression is seen in other hormone regulated tissues such as mammary gland, salivary gland, and ovary. Expressed in prostate carcinoma cells. SIMILARITY: SwissProt: O95238 ## Belongs to the ETS family. & Contains 1 ETS DNA-binding domain. & Contains 1 PNT (pointed) domain.
Physicochemical Information
Dimensions
Materials Information
Toxicological Information
Safety Information according to GHS
Safety Information
Product Usage Statements
Usage Statement
Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.
Storage and Shipping Information
Storage Conditions
Store at -20°C in undiluted aliquots for 1 year from date of shipment.
Prostate epithelium-derived Ets transcription factor mRNA is overexpressed in human breast tumors and is a candidate breast tumor marker and a breast tumor antigen. Ghadersohi, A and Sood, A K Clin. Cancer Res., 7: 2731-8 (2001)
2001
PURPOSE: There is a need to identify novel breast tumor-associated molecules with a potential as diagnostic/prognostic markers of breast cancer as well as targets of vaccine and drug discovery against this cancer. EXPERIMENTAL DESIGN: We used a combination of digital differential display and reverse transcription-PCR (RT-PCR) methods to identify breast tumor-associated cDNAs. RESULTS: It was found that prostate epithelium-derived Ets transcription factor (PDEF) and five other cDNAs occur at high frequency in the cDNA libraries from normal human breast tissue and human breast tumors. In contrast, these cDNAs are either undetectable or present at low frequencies in the cDNA libraries from other normal human tissues. RT-PCR expression analysis of PDEF showed it to be overexpressed in 14 of 20 primary human breast tumors and in one metastases tested. Also, consistent with the digital differential display data, RT-PCR analysis of PDEF expression showed highly restricted expression in normal human tissues. Furthermore, we show that PDEF transcript levels are 192-fold higher in the peripheral blood of a breast cancer patient in comparison with two normal individuals and another breast cancer patient. In contrast to PDEF, RT-PCR analysis of the expression of the other three cDNAs, including MYL5, Hs.44017, and Hs.215937, showed that these cDNAs are expressed in several normal human tissues. CONCLUSIONS: These results suggest that PDEF is a breast tumor-associated cDNA and should be further evaluated for its potential as a breast tumor marker and a breast tumor antigen.
PDEF, a novel prostate epithelium-specific ets transcription factor, interacts with the androgen receptor and activates prostate-specific antigen gene expression. Oettgen, P, et al. J. Biol. Chem., 275: 1216-25 (2000)
1999
Prostate cancer, the most frequent solid cancer in older men, is a leading cause of cancer deaths. Although proliferation and differentiation of normal prostate epithelia and the initial growth of prostate cancer cells are androgen-dependent, prostate cancers ultimately become androgen-independent and refractory to hormone therapy. The prostate-specific antigen (PSA) gene has been widely used as a diagnostic indicator for androgen-dependent and -independent prostate cancer. Androgen-induced and prostate epithelium-specific PSA expression is regulated by a proximal promoter and an upstream enhancer via several androgen receptor binding sites. However, little progress has been made in identifying androgen-independent regulatory elements involved in PSA gene regulation. We report the isolation of a novel, prostate epithelium-specific Ets transcription factor, PDEF (prostate-derived Ets factor), that among the Ets family uniquely prefers binding to a GGAT rather than a GGAA core. PDEF acts as an androgen-independent transcriptional activator of the PSA promoter. PDEF also directly interacts with the DNA binding domain of androgen receptor and enhances androgen-mediated activation of the PSA promoter. Our results, as well as the critical roles of other Ets factors in cellular differentiation and tumorigenesis, strongly suggest that PDEF is an important regulator of prostate gland and/or prostate cancer development.