PAGR1 / C16orf53 Antibody (C-Terminus)
Rabbit Polyclonal Antibody
- SPECIFICATION
- CITATIONS
- PROTOCOLS
- BACKGROUND
Application
| WB, IHC-P, E |
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Primary Accession | Q9BTK6 |
Reactivity | Human, Mouse |
Host | Rabbit |
Clonality | Polyclonal |
Calculated MW | 28kDa |
Dilution | IHC-P (5 µg/ml), WB (1-2 µg/ml), |
Gene ID | 79447 |
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Other Names | PAXIP1-associated glutamate-rich protein 1, PAXIP1-associated protein 1, PTIP-associated protein 1, PAGR1, C16orf53, PA1 |
Target/Specificity | Human C16orf53 |
Reconstitution & Storage | Short term 4°C, long term aliquot and store at -20°C, avoid freeze thaw cycles. Store undiluted. |
Precautions | PAGR1 / C16orf53 Antibody (C-Terminus) is for research use only and not for use in diagnostic or therapeutic procedures. |
Name | PAGR1 |
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Synonyms | C16orf53, PA1 |
Function | Its association with the histone methyltransferase MLL2/MLL3 complex is suggesting a role in epigenetic transcriptional activation. However, in association with PAXIP1/PTIP is proposed to function at least in part independently of the MLL2/MLL3 complex. Proposed to be recruited by PAXIP1 to sites of DNA damage where the PAGR1:PAXIP1 complex is required for cell survival in response to DNA damage independently of the MLL2/MLL3 complex (PubMed:19124460). However, its function in DNA damage has been questioned (By similarity). During immunoglobulin class switching in activated B-cells is involved in transcription regulation of downstream switch regions at the immunoglobulin heavy-chain (Igh) locus independently of the MLL2/MLL3 complex (By similarity). Involved in both estrogen receptor-regulated gene transcription and estrogen-stimulated G1/S cell-cycle transition (PubMed:19039327). Acts as a transcriptional cofactor for nuclear hormone receptors. Inhibits the induction properties of several steroid receptors such as NR3C1, AR and PPARG; the mechanism of inhibition appears to be gene-dependent (PubMed:23161582). |
Cellular Location | Nucleus. |
Tissue Location | Ubiquitously expressed. |
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Provided below are standard protocols that you may find useful for product applications.
References
Martin J.,et al.Nature 432:988-994(2004).
Cho Y.-W.,et al.J. Biol. Chem. 282:20395-20406(2007).
Mural R.J.,et al.Submitted (JUL-2005) to the EMBL/GenBank/DDBJ databases.
Tang L.-Y.,et al.Mol. Cell. Proteomics 6:1952-1967(2007).
Cantin G.T.,et al.J. Proteome Res. 7:1346-1351(2008).
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