GABA A Receptor delta (GABRD) Rabbit Polyclonal Antibody

CAT#: AP21176PU-N

GABA A Receptor delta (GABRD) rabbit polyclonal antibody, Aff - Purified


USD 445.00

3 Weeks*

Size
    • 100 ug

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Specifications

Product Data
Applications WB
Recommended Dilution Western blot: 1/500 - 1/1000.
Reactivities Human, Mouse, Rat
Host Rabbit
Clonality Polyclonal
Specificity This antibody detects endogenous levels of GABAA Rδ protein.
(region surrounding Asp181)
Formulation Phosphate buffered saline (PBS), pH 7.2
State: Aff - Purified
State: Liquid purified Ig fraction
Preservative: 0.05% sodium azide
Concentration 1.0 mg/ml
Purification Affinity-chromatography using epitope-specific immunogen and the purity is > 95% (by SDS-PAGE)
Conjugation Unconjugated
Storage Store undiluted at 2-8°C for one month or (in aliquots) at -20°C for longer.
Avoid repeated freezing and thawing.
Stability Shelf life: one year from despatch.
Predicted Protein Size ~ 51 kDa
Gene Name gamma-aminobutyric acid type A receptor delta subunit
Background GAD-65 and GAD-67, glutamate decarboxylases function to catalyze the production of GABA (γ-aminobutyric acid). In the central nervous system GABA functions as the main inhibitory transmitter by increasing a Cl-conductance that inhibits neuronal firing. GABA has been shown to activate both ionotropic (GABAA) and metabotropic (GABAB) receptors as well as a third class of receptors called GABAC. Both GABAA and GABAC are ligand-gated ion channels, however, they are structurally and functionally distinct. Members of the GABAA receptor family include GABAA Rα1-6, GABAA R β1-3, GABAA Rγ1-3, GABAA Rδ, GABAA Rε, GABAA Rρ1 and GABAA Rρ2. The GABAB family is composed of GABAB R1α and GABAB R1β. GABA transporters have also been identified and include GABA T-1, GABA T-2 and GABA T-3 (also designated GAT-1, -2, and -3). The GABA transporters function to terminate GABA action.
Synonyms GABA A receptor subunit delta
Reference Data
Protein Families Druggable Genome, Ion Channels: Cys-loop Receptors, Transmembrane
Protein Pathways Neuroactive ligand-receptor interaction

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