資料簡(jiǎn)介
Recombinant human VMAT2 protein
MNAT; Monoamine neurotransmitter transporter; Monoamine transporter; Slc18a2; Solute carrier family 18 (vesicular monoamine) member 2; Solute carrier family 18 member 2; SVAT; SVMT; Synaptic vesicle amine transporter brain; Synaptic vesicle monoamine transporter brain; Synaptic vesicular amine transporter; VAT 2; VAT2; Vesicle monoamine transporter type 2; Vesicle monoamine/H+ antiporter; Vesicular amine transporter 2; Vesicular monoamine transporter 2; VMAT 2; VMAT2; VMAT2_HUMAN; 1110037L13Rik; 9330105E13; MGC120477; MGC120478; MGC26538; MGC90556.
濃度:1mg/ ml
來源:Recombinant Human
純度:≥95% SDS-PAGE
表達(dá)系統(tǒng):Wheat germ
標(biāo)簽:GST tag N-Terminus
蛋白長(zhǎng)度:Protein fragment
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
Neurotransmission depends on the regulated exocytotic release of chemical transmitter molecules. This requires the packaging of these substances into the specialized secretory vesicles of neurons and neuroendocrine cells, a process mediated by specific vesicular transporters. The family of genes encoding the vesicular transporters of monoamines (VMAT 1 and VMAT 2) and acetylcholine (VACht) have been cloned and functionally characterized. The sequence of these integral membrane proteins predicts twelve transmembrane domains and weak homology to a class of bacterial antibiotic resistance proteins. The vesicular transport of neurotransmitter molecules has been shown to be an active ATP- and proton dependent transport mechanism.
產(chǎn)品名稱:Rabbit Anti-VMAT2 protein antibody
Rabbit Anti-VMAT2 protein
別名:MNAT; Monoamine neurotransmitter transporter; Monoamine transporter; Slc18a2; Solute carrier family 18 (vesicular monoamine) member 2; Solute carrier family 18 member 2; SVAT; SVMT; Synaptic vesicle amine transporter brain; Synaptic vesicle monoamine transporter brain; Synaptic vesicular amine transporter; VAT 2; VAT2; Vesicle monoamine transporter type 2; Vesicle monoamine/H+ antiporter; Vesicular amine transporter 2; Vesicular monoamine transporter 2; VMAT 2; VMAT2; VMAT2_HUMAN; 1110037L13Rik; 9330105E13; MGC120477; MGC120478; MGC26538; MGC90556.
來源:Rabbit
克隆類型:Polyclonal
濃度:1mg/ml
亞型:IgG
反應(yīng):Mouse,Rat (predicted: Human,Pig,Cow,Chicken,Dog,Horse)
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
理論分子量:57 kDa
免疫原:KLH conjugated synthetic peptide derived from human VMAT2 protein
保存:-20℃
保質(zhì)期:1年
產(chǎn)品名稱:Anti-VMAT2 protein antibody
Mouse Anti-VMAT2 protein
別名:MNAT; Monoamine neurotransmitter transporter; Monoamine transporter; Slc18a2; Solute carrier family 18 (vesicular monoamine) member 2; Solute carrier family 18 member 2; SVAT; SVMT; Synaptic vesicle amine transporter brain; Synaptic vesicle monoamine transporter brain; Synaptic vesicular amine transporter; VAT 2; VAT2; Vesicle monoamine transporter type 2; Vesicle monoamine/H+ antiporter; Vesicular amine transporter 2; Vesicular monoamine transporter 2; VMAT 2; VMAT2; VMAT2_HUMAN; 1110037L13Rik; 9330105E13; MGC120477; MGC120478; MGC26538; MGC90556.
來源:Mouse
克隆類型:Monoclonal
濃度:1mg/ml
亞型:IgG
反應(yīng):Human
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 VMAT2 protein
保存:-20℃
保質(zhì)期:1年
Neurotransmission depends on the regulated exocytotic release of chemical transmitter molecules. This requires the packaging of these substances into the specialized secretory vesicles of neurons and neuroendocrine cells, a process mediated by specific vesicular transporters. The family of genes encoding the vesicular transporters of monoamines (VMAT 1 and VMAT 2) and acetylcholine (VACht) have been cloned and functionally characterized. The sequence of these integral membrane proteins predicts twelve transmembrane domains and weak homology to a class of bacterial antibiotic resistance proteins. The vesicular transport of neurotransmitter molecules has been shown to be an active ATP- and proton dependent transport mechanism.
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