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Glucocorticoid receptor rabbit pAb

Glucocorticoid receptor rabbit pAb

ENT-A15996

Description

 

 

 

REF ENT-A15996
Category Antibody Polyclonal
Description Glucocorticoid receptor rabbit pAb
Source Rabbit
Applications WB
Reactivity Human;Mouse;Rat
Reactivity Human;Mouse;Rat
Dilution WB: 1:1000-3000
Immunogen Recombinant Protein of Glucocorticoid receptor
Storage Stability -20°C/1 year
Clonality Polyclonal
Isotype IgG
Concentration
Observed Band KD 80-97kD
Human Gene ID 2908
Human Swiss Prot Nº P04150
Subcellular Location [Isoform Alpha]: Cytoplasm . Nucleus . Mitochondrion . Cytoplasm, cytoskeleton, spindle . Cytoplasm, cytoskeleton, microtubule organizing center, centrosome . After ligand activation, translocates from the cytoplasm to the nucleus. In the presence of NR1D1 shows a time-dependent subcellular localization, localizing to the cytoplasm at ZT8 and to the nucleus at ZT20 (By similarity). Lacks this diurnal pattern of localization in the absence of NR1D1, localizing to both nucleus and the cytoplasm at ZT8 and ZT20 (By similarity). .; [Isoform Beta]: Nucleus . Cytoplasm . Expressed predominantly in the nucleus with some expression also detected in the cytoplasm. .; [Isoform Alpha-B]: Nucleus . Cytoplasm . After ligand activation, translocates from the cytoplasm to the nucleus. .

Other Name: NR3C1; GRL; Glucocorticoid receptor; GR; Nuclear receptor subfamily 3 group C member 1

Background: This gene encodes glucocorticoid receptor, which can function both as a transcription factor that binds to glucocorticoid response elements in the promoters of glucocorticoid responsive genes to activate their transcription, and as a regulator of other transcription factors. This receptor is typically found in the cytoplasm, but upon ligand binding, is transported into the nucleus. It is involved in inflammatory responses, cellular proliferation, and differentiation in target tissues. Mutations in this gene are associated with generalized glucocorticoid resistance. Alternative splicing of this gene results in transcript variants encoding either the same or different isoforms. Additional isoforms resulting from the use of alternate in-frame translation initiation sites have also been described, and shown to be functional, displaying diverse cytoplasm-to-nucleus trafficking pat