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Bertin Bioreagent
anti-RARβ, mAb (10B2)
As low as
664
CHF
CHF 664.00
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BRT-G01030-R100100 µlCHF 664.00
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Product Details | |
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Synonyms | Retinoic Acid Receptor beta; RARB; Nuclear Receptor Subfamily 1 Group B Member 2; HBV-activated Protein; RAR epsilon |
Product Type | Monoclonal Antibody |
Properties | |
Clone | 10B2 |
Isotype | Mouse IgG1κ |
Source/Host | Mouse |
Immunogen/Antigen | Recombinant protein. |
Application | ELISA, Western Blot (transfected cells), Immunocytochemistry (transfected cells), Immunoprecipitation (endogenous and recombinant protein), Gel shift (endogenous and recombinant protein). Recommended dilutions: 1/500-1/5000 |
Specificity | Recognizes human and mouse RAR beta. No cross reactivity on RAR alpha and RAR gamma. |
Formulation | Liquid. Does not contain any preservative. |
Other Product Data |
Click here for Original Manufacturer Product Datasheet |
Declaration | Manufactured by Bertin Bioreagent |
Shipping and Handling | |
Shipping | BLUE ICE |
Long Term Storage | -20°C |
Handling Advice | Avoid freeze/thaw cycles. |
Use/Stability | Stable for at least 3 years after receipt when stored at -20°C. |
Documents | |
Product Specification Sheet | |
Datasheet |
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Description
Retinoic acid receptors (RARs) are nuclear hormone receptors of the NRB1 class, which function as heterodimers with retinoid X receptors (RXRs). There are three distinct RAR subtypes: RARα, RARβ, and RARγ. RARα is present in most tissue types, whereas RARβ and RARγ expression is more selective. RXR-RAR heterodimers act as ligand-dependent transcriptional regulators by binding to the specific retinoic acid response element (RARE) found in the promoter regions of target genes. In the absence of an RAR agonist, RXR-RAR recruits co-repressor proteins such as NCoR and associated factors such as histone deacetylase to maintain a condensed chromatin structure. RAR agonist binding stimulates co-repressor release and co-activator complexes, such as histone acetyltransferase, are recruited to activate transcription. RARs transduce retinoid signals in vivo, which mediates proper embryogenesis, differentiation and growth arrest.