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Retinoid X Receptor, γ-Isotype Antibody

Applications

  • WB

Reactivity

  • Human
  • Rat

Predicted Reactivity

  • Mouse
  • Bovine
  • Non-Human Primate
Overview
Catalog # bsm-70247M
Product Name Retinoid X Receptor, γ-Isotype Antibody
Applications WB
Specificity Specific for endogenous levels of the ~48 kDa RXR-γ isotype.
Reactivity Human, Rat
Predicted Reactivity Mouse, Bovine, Non-Human Primate
Specifications
Conjugation Unconjugated
Host Mouse
Source Synthetic peptide corresponding to amino acid residues from the hinge region of human retinoid X receptor, γ-isotype, conjugated to keyhole limpet hemocyanin (KLH).
Clonality Monoclonal
Clone # 1373
Isotype IgG1
Concentration Lot Dependent
Purification Purified by Protein G.
Storage Buffer 10 mM HEPES (pH 7.5), 150 mM NaCl, 100 µg per ml BSA and 50% glycerol.
Storage Condition Storage at -20°C is recommended, as aliquots may be taken without freeze/thawing due to presence of 50% glycerol. Stable for at least 1 year at -20°C.
Target
Gene ID 6258
Swiss Prot P48443
Synonyms MGC109416 antibody, NR2B3 antibody, Nuclear receptor subfamily 2 group B member 3 antibody, OTTHUMP00000060418 antibody, Retanoic X receptor gamma antibody, Retinoic acid receptor RXR gamma antibody, Retinoic acid receptor RXR-gamma antibody, Retinoid X receptor gamma antibody, RXR G antibody, RXR gamma antibody, RXRC antibody, Rxrg antibody, RXRG_HUMAN antibody, RXRgamma antibody
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).
Application Dilution
WB 1:300-5000