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  2. Polyclonal

GTX105558

PKA 2 beta antibody

Cannot supply to this region.

SKU:
GTX105558
Additional Names:
protein kinase cAMP-dependent type II regulatory subunit beta , PRKAR2 , RII-BETA
Application:
WB, IHC-P, IHC-Fr, IF, ICC
Concentration:
0.67 mg/ml
Physical State:
Liquid
Species Reactivity:
Human
Purification:
Affinity Purified
Storage Conditions:
-20[o]C Aliquot. Avoid freeze/thaw cycles. Store undiluted., 2-8[o]C Aliquot. Avoid freeze/thaw cycles. Store undiluted., -20[o]C/-70[o]C Aliquot. Avoid freeze/thaw cycles. Store undiluted.
Supplier:
Genetex
Host:
Rabbit
Reactivities:
Human, Mouse, Rat
Buffer:
0.1M Tris, 0.1M Glycine, 10% Glycerol, 0.01% Thimerosal.
Immunogen:
Recombinant protein encompassing a sequence within the center region of human PKA 2 beta. The exact sequence is proprietary.
Uniprot:
P31323
Synonyms:
cAMP-dependent protein kinase type II-beta regulatory chain;cAMP-dependent protein kinase type II-beta regulatory subunit;H_RG363E19.2;PRKAR2;protein kinase, cAMP-dependent, regulatory subunit type II beta;protein kinase, cAMP-dependent, regulatory, type II, beta;RII-BETA;WUGSC:H_RG363E19.2
Extra Details:
cAMP is a signaling molecule important for a variety of cellular functions. cAMP exerts its effects by activating the cAMP-dependent protein kinase, which transduces the signal through phosphorylation of different target proteins. The inactive kinase holoenzyme is a tetramer composed of two regulatory and two catalytic subunits. cAMP causes the dissociation of the inactive holoenzyme into a dimer of regulatory subunits bound to four cAMP and two free monomeric catalytic subunits. Four different regulatory subunits and three catalytic subunits have been identified in humans. The protein encoded by this gene is one of the regulatory subunits. This subunit can be phosphorylated by the activated catalytic subunit. This subunit has been shown to interact with and suppress the transcriptional activity of the cAMP responsive element binding protein 1 (CREB1) in activated T cells. Knockout studies in mice suggest that this subunit may play an important role in regulating energy balance and adiposity. The studies also suggest that this subunit may mediate the gene induction and cataleptic behavior induced by haloperidol. [provided by RefSeq]
Shipping Conditions:
Blue Ice