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Rabbit Anti-Chicken Vesicular GABA Transporter (VGAT) Polyclonal Antibody

Cat. No.VD7N16

Product TypeVeterinary Antibodies

Size

Product Overview

BioVenic rabbit polyclonal antibody is specific for rat vesicular GABA transporter. It can be applied to ICC, IHC and WB of rat vesicular GABA transporter.

Specifications

Application ICC; IHC; WB
Clonality Polyclonal
Classification Primary Antibody
Clone L8N16
Host Rabbit
Target Species Rat
Species Reactivity Chicken
Specificity Vesicular GABA Transporter Protein
Isotype IgG
Immunogen Synthetic peptide corresponding to amino acid residues from the N-terminal region of rat VGAT
Purification Antigen Affinity Purified
Purity > 90%
Conjugation Unconjugated
Buffer 10 mM HEPES (pH 7.5), 150 mM NaCl, 100 µg per ml BSA and 50% glycerol.
Physical State Liquid

Target Information

The vesicular GABA transporter (VGAT), also known as SLC32A1, is a membrane protein that plays a critical role in the packaging of the neurotransmitter gamma-aminobutyric acid (GABA) into synaptic vesicles in animals. VGAT is responsible for the vesicular uptake of GABA, the primary inhibitory neurotransmitter in the central nervous system. This process is essential for the modulation of neuronal excitability and the regulation of inhibitory synaptic transmission.

Target Vesicular GABA Transporter Protein
Target Synonym GABA and glycine transporter
Taxonomy ID 35364
Gene ID 83612
UniProt ID O35458

Shipping and Storage

This product is shipped with ice gel packs. Store at -20°C (up to 12 months) on receipt. Avoid repeated freezing and thawing as this may denature the antibody.

Documents

COA

To request a Certificate of Analysis, please enter the Lot No. in the search box. Note: Certificate of Analysis not available for kits.

The product is for research use only.
Not for commercial, prophylactic, diagnostic, or therapeutic applications.

References

  1. Hirano, Arlene A., et al. "Targeted deletion of vesicular GABA transporter from retinal horizontal cells eliminates feedback modulation of photoreceptor calcium channels." eneuro 3.1 (2016).
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