Anti-Retinoid X Receptor, ß-Isotype Antibody
Our Anti-Retinoid X Receptor, ß-Isotype primary antibody from PhosphoSolutions is mouse monoclonal.
- SPECIFICATION
- CITATIONS
- PROTOCOLS
- BACKGROUND
Primary Accession | P28702 |
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Host | Mouse |
Clonality | Monoclonal |
Isotype | IgG1 |
Clone Names | 147 |
Calculated MW | 56922 Da |
Gene ID | 6257 |
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Other Names | DAUD I6 antibody, DAUDI6 antibody, H 2RIIBP antibody, H2RIIBP antibody, MGC1831 antibody, MHC class I promoter binding protein antibody, NR2B2 antibody, nuclear receptor subfamily 2 group B member 2 antibody, RCoR 1 antibody, RCoR1 antibody, Retinoic acid receptor RXR beta antibody, RXR beta antibody, RXRB antibody, RXRbeta antibody |
Target/Specificity | Retinoic acid (RA; active metabolite of vitamin A) plays a prominent role in regulating the transition of proliferating precursor cells (such as carcinoma cells and neuronal precursors) to postmitotic differentiated cells (Joshi et al., 2005). The retinoid X receptors (RXRs) family (RXRα, β and γ), preferentially bind 9-cis-RA and regulate gene transcription by forming heterodimers with a second family of RA receptors. RAs have been suggested to potentially play a therapeutic role in cervical cancer (Abu et al., 2005). RAs are known to play key roles in neuronal development and an increasing body of evidence indicates that retinoid signaling may regulate synaptic plasticity and associated learning and memory behaviors (Lane and Bailey, 2005). |
Format | Protein G Purified |
Storage | Maintain refrigerated at 2-8°C for up to 6 months. For long term storage store at -20°C in small aliquots to prevent freeze-thaw cycles. |
Precautions | Anti-Retinoid X Receptor, ß-Isotype Antibody is for research use only and not for use in diagnostic or therapeutic procedures. |
Shipping | Blue Ice |
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Provided below are standard protocols that you may find useful for product applications.
Background
Retinoic acid (RA; active metabolite of vitamin A) plays a prominent role in regulating the transition of proliferating precursor cells (such as carcinoma cells and neuronal precursors) to postmitotic differentiated cells (Joshi et al., 2005). The retinoid X receptors (RXRs) family (RXRα, β and γ), preferentially bind 9-cis-RA and regulate gene transcription by forming heterodimers with a second family of RA receptors. RAs have been suggested to potentially play a therapeutic role in cervical cancer (Abu et al., 2005). RAs are known to play key roles in neuronal development and an increasing body of evidence indicates that retinoid signaling may regulate synaptic plasticity and associated learning and memory behaviors (Lane and Bailey, 2005).
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