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AB5062P Anti-Vesicular GABA Transporter (VGAT) Antibody

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AB5062P
50 µg  
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      Tableau de caractéristiques principal

      Species ReactivityKey ApplicationsHostFormatAntibody Type
      R, M, H, MkELISA, IF, IHCRbAffinity PurifiedPolyclonal Antibody
      Description
      Catalogue NumberAB5062P
      Brand Family Chemicon®
      Trade Name
      • Chemicon
      DescriptionAnti-Vesicular GABA Transporter (VGAT) Antibody
      Alternate Names
      • Vesicular Inhibitory Amino Acid Transporter
      Background InformationVesicular GABA Transporter (unc-47) homologue is a 525 amino acid long protein belonging to the family of neurotransmitter transporter (1). VGAT functions in the uptake of GABA and glycine into synaptic vesicles. Since the protein is bound to synaptic vesicles, VGAT antibodies are excellent markers of presynaptic GABAergic and glycinergic neurons.
      References
      Product Information
      FormatAffinity Purified
      HS Code3002 15 90
      Control
      • Brain tissue, rat retina lysate
      PresentationPurified rabbit polyclonal in buffer containing PBS with 0.1% BSA.
      Quality LevelMQ100
      Applications
      ApplicationThis Anti-Vesicular GABA Transporter (VGAT) Antibody is validated for use in ELISA, IF, IH for the detection of Vesicular GABA Transporter (VGAT).
      Key Applications
      • ELISA
      • Immunofluorescence
      • Immunohistochemistry
      Application NotesImmunohistochemistry/Immunofluorescence:
      2-20 µg/mL of a previous lot was used on paraformaldehyde fixed sections.

      ELISA:
      1:10,000 – 1:100,000 dilution of a previous lot was used on ELISA, using 50-100 ng of control peptide (Cat. No. AG379) per well.

      Optimal working dilutions must be determined by the end user.
      Biological Information
      ImmunogenA 17 amino acid peptide sequence near the carboxy terminal region of rat VGAT (McIntire, S., 1997).
      EpitopeC-terminus
      ConcentrationPlease refer to the Certificate of Analysis for the lot-specific concentration.
      HostRabbit
      SpecificitySpecific for Vesicular GABA Transporter (VGAT). Vesicular GABA Transporter (unc-47) homologue is a 525 amino acid long protein belonging to the family of neurotransmitter transporter. The immunogen peptide shows no significant homology with other known proteins.
      Species Reactivity
      • Rat
      • Mouse
      • Human
      • Monkey
      Species Reactivity NoteRat. Antibody cross-reactivity with various species is not known. The immunogen sequence is 100% conserved in mouse, human and monkey.
      Antibody TypePolyclonal Antibody
      Entrez Gene Number
      Entrez Gene SummaryThe protein encoded by this gene is an integral membrane protein involved in gamma-aminobutyric acid (GABA) and glycine uptake into synaptic vesicles. The encoded protein is a member of amino acid/polyamine transporter family II.
      Gene Symbol
      • SLC32A1
      • VIAAT
      • VGAT
      • bA122O1.1
      • hVIAAT
      Purification MethodImmunoAffinity Purified
      UniProt Number
      UniProt SummaryFUNCTION: SwissProt: Q9H598 # Involved in the uptake of GABA and glycine into the synaptic vesicles.
      SIZE: 525 amino acids; 57415 Da
      SUBCELLULAR LOCATION: Cytoplasmic vesicle membrane; Multi-pass membrane protein (By similarity).
      TISSUE SPECIFICITY : Retina. Expressed throughout the horizontal cells or more specifically at the terminals.
      SIMILARITY: SwissProt: Q9H598 ## Belongs to the amino acid/polyamine transporter 2 family.
      Molecular Weight57 kDa
      Physicochemical Information
      Dimensions
      Materials Information
      Toxicological Information
      Safety Information according to GHS
      Safety Information
      Product Usage Statements
      Usage Statement
      • Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.
      Storage and Shipping Information
      Storage ConditionsStable for 1 year at -20ºC from date of receipt.
      Packaging Information
      Material Size50 µg
      Transport Information
      Supplemental Information
      Specifications
      Global Trade Item Number
      Référence GTIN
      AB5062P 04053252287381

      Documentation

      Anti-Vesicular GABA Transporter (VGAT) Antibody FDS

      Titre

      Fiche de données de sécurité des matériaux (FDS) 

      Anti-Vesicular GABA Transporter (VGAT) Antibody Certificats d'analyse

      TitreNuméro de lot
      Anti-Vesicular GABA Transporter (VGAT) 2462787
      Anti-Vesicular GABA Transporter (VGAT) 3071907
      Anti-Vesicular GABA Transporter (VGAT) - 2147046 2147046
      Anti-Vesicular GABA Transporter (VGAT) - 2397060 2397060
      Anti-Vesicular GABA Transporter (VGAT) - 2002162 2002162
      Anti-Vesicular GABA Transporter (VGAT) - 2021181 2021181
      Anti-Vesicular GABA Transporter (VGAT) - 2038246 2038246
      Anti-Vesicular GABA Transporter (VGAT) - 2070389 2070389
      Anti-Vesicular GABA Transporter (VGAT) - 2219289 2219289
      Anti-Vesicular GABA Transporter (VGAT) - 2332491 2332491

      Références bibliographiques

      Aperçu de la référence bibliographiqueApplicationNº PubMed
      MeCP2 phosphorylation limits psychostimulant-induced behavioral and neuronal plasticity.
      Deng, JV; Wan, Y; Wang, X; Cohen, S; Wetsel, WC; Greenberg, ME; Kenny, PJ; Calakos, N; West, AE
      The Journal of neuroscience : the official journal of the Society for Neuroscience  34  4519-27  2014

      Afficher le résumé
      Western Blotting24671997 24671997
      Characterization of axo-axonic synapses in the piriform cortex of Mus musculus.
      Xinjun Wang,Qian-Quan Sun
      The Journal of comparative neurology  520  2011

      Afficher le résumé
      22020781 22020781
      Sonic hedgehog regulates presynaptic terminal size, ultrastructure and function in hippocampal neurons.
      Mitchell, N; Petralia, RS; Currier, DG; Wang, YX; Kim, A; Mattson, MP; Yao, PJ
      Journal of cell science  125  4207-13  2011

      Afficher le résumé
      22641692 22641692
      Kidins220/ARMS is a novel modulator of short-term synaptic plasticity in hippocampal GABAergic neurons.
      Scholz-Starke, J; Cesca, F; Schiavo, G; Benfenati, F; Baldelli, P
      PloS one  7  e35785  2011

      Afficher le résumé
      22563401 22563401
      Social, Communication, and Cortical Structural Impairments in Epac2-Deficient Mice.
      Srivastava, Deepak P, et al.
      J. Neurosci., 32: 11864-11878 (2012)  2011

      Afficher le résumé
      22915127 22915127
      Developmental maturation of excitation and inhibition balance in principal neurons across four layers of somatosensory cortex.
      Zhang, Z; Jiao, YY; Sun, QQ
      Neuroscience  174  10-25  2010

      Afficher le résumé
      Western Blotting21115101 21115101
      Cleavage of the vesicular GABA transporter under excitotoxic conditions is followed by accumulation of the truncated transporter in nonsynaptic sites.
      Gomes, João R, et al.
      J. Neurosci., 31: 4622-35 (2011)  2010

      Afficher le résumé
      21430162 21430162
      Abnormal neuronal migration changes the fate of developing neurons in the postnatal olfactory bulb.
      Belvindrah, R; Nissant, A; Lledo, PM
      The Journal of neuroscience : the official journal of the Society for Neuroscience  31  7551-62  2010

      Afficher le résumé
      21593340 21593340
      MeCP2 in the nucleus accumbens contributes to neural and behavioral responses to psychostimulants.
      Deng, JV; Rodriguiz, RM; Hutchinson, AN; Kim, IH; Wetsel, WC; West, AE
      Nature neuroscience  13  1128-36  2009

      Afficher le résumé
      20711186 20711186
      GABAergic neurons intermingled with orexin and MCH neurons in the lateral hypothalamus discharge maximally during sleep.
      Oum Kaltoum Hassani,Pablo Henny,Maan Gee Lee,Barbara E Jones
      The European journal of neuroscience  32  2009

      Afficher le résumé Article en texte intégral
      20597977 20597977