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          VGAT抗原,氨基丁酸轉(zhuǎn)運(yùn)蛋白VGAT抗原

          來(lái)源:上海允麥生物科技有限公司   2024年11月27日 10:35  

          Recombinant human VGAT   

          VGAT; bA122O1.1; GABA and glycine transporter; hVIAAT; SLC32A 1; solute carrier family 32 (GABA vesicular transporter) member 1; Solute carrier family 32 member 1; Vesicular GABA Amino Acid Transporter; Vesicular GABA transporter; Vesicular inhibitory amino acid transporter; VGAT; VIAAT; VIAAT_HUMAN.    

          濃度:1mg/ ml

          來(lái)源:Recombinant Human

          純度:≥95% SDS-PAGE

          表達(dá)系統(tǒng):Yeast

          標(biāo)簽:His tag

          蛋白長(zhǎng)度:Full length protein

          內(nèi)毒素水平:<1.000 Eu/µg

          純化方法:HPLC

          應(yīng)用:SDS-PAGE,Western blot,ELISA

          Biological activity,immunology research

          保存:-20℃

          保質(zhì)期:1年

          Synaptic transmission involves the controlled exocytosis of vesicles containing specific neurotransmitters. Usually, neurotransmitters are synthesized in the cytoplasm of the cell and must be transported into synaptic vesicles for release. The vesicular GABA transporter (VGAT) is responsible for loading gamma-aminobutyric acid (GABA), an inhibitory neurotransmitter, from neuronal cytoplasm into synaptic vesicles and is expressed only in the nerve endings of inhibitory neurons that contain GABA and/or glycine. During neocortical development, VGAT expression barely precedes the maturation of inhibitory synaptogenesis, suggesting that it may contribute to the development of neocortical GABAergic circuitry. VGAT may also play a role in epileptogenesis and the recovery mechanisms that occur after a spontaneous seizure


          產(chǎn)品名稱(chēng):Rabbit Anti-VGAT  antibody

          Rabbit Anti-VGAT  

          別名:VGAT; bA122O1.1; GABA and glycine transporter; hVIAAT; SLC32A 1; solute carrier family 32 (GABA vesicular transporter) member 1; Solute carrier family 32 member 1; Vesicular GABA Amino Acid Transporter; Vesicular GABA transporter; Vesicular inhibitory amino acid transporter; VGAT; VIAAT; VIAAT_HUMAN.     

          來(lái)源:Rabbit

          克隆類(lèi)型:Polyclonal

          濃度:1mg/ml

          亞型:IgG

          應(yīng)用: WB=1:1000-1:2000,Elisa=1:1000-1:2000,IHC-P=1:100-500,IHC-F=1:100-500,ICC/IF=1:100-500,IF=1:100-500

          反應(yīng):(predicted: Human,Mouse,Rat,Rabbit,Pig,Sheep,Cow)

          理論分子量:57kDa

          免疫原:KLH conjugated synthetic peptide derived from human VGAT

          保存:-20
          保質(zhì)期:1

           

          單克隆抗體

          產(chǎn)品名稱(chēng):Anti-VGAT antibody

          Mouse Anti-VGAT 

          別名:VGAT; bA122O1.1; GABA and glycine transporter; hVIAAT; SLC32A 1; solute carrier family 32 (GABA vesicular transporter) member 1; Solute carrier family 32 member 1; Vesicular GABA Amino Acid Transporter; Vesicular GABA transporter; Vesicular inhibitory amino acid transporter; VGAT; VIAAT; VIAAT_HUMAN.    

          來(lái)源:Mouse

          克隆類(lèi)型:Monoclonal

          濃度:1mg/ml

          亞型:IgG

          應(yīng)用: WB=1:1000-1:2000,Elisa=1:1000-1:2000,IHC-P=1:100-500,IHC-F=1:100-500,ICC/IF=1:100-500,IF=1:100-500

          反應(yīng): Human

          理論分子量:57kDa

          免疫原:KLH conjugated synthetic peptide derived from human VGAT

          保存:-20
          保質(zhì)期:1

          Synaptic transmission involves the controlled exocytosis of vesicles containing specific neurotransmitters. Usually, neurotransmitters are synthesized in the cytoplasm of the cell and must be transported into synaptic vesicles for release. The vesicular GABA transporter (VGAT) is responsible for loading gamma-aminobutyric acid (GABA), an inhibitory neurotransmitter, from neuronal cytoplasm into synaptic vesicles and is expressed only in the nerve endings of inhibitory neurons that contain GABA and/or glycine. During neocortical development, VGAT expression barely precedes the maturation of inhibitory synaptogenesis, suggesting that it may contribute to the development of neocortical GABAergic circuitry. VGAT may also play a role in epileptogenesis and the recovery mechanisms that occur after a spontaneous seizure




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