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DRD5 抗体 (AA 323-477)
DRD5
适用: 人
WB
宿主: 兔
Polyclonal
unconjugated
DRD5抗体详情
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抗原
See all DRD5 抗体
DRD5
(Dopamine Receptor D5 (DRD5))
抗原表位
All epitopes for DRD5 抗体
AA 323-477
适用
All reactivities for DRD5 抗体
人
宿主
All hosts for DRD5 抗体
兔
克隆类型
All clonalities for DRD5 抗体
多克隆
标记
All conjugates for DRD5 抗体
This DRD5 antibody is un-conjugated
应用范围
All applications for DRD5 抗体
Western Blotting (WB)
序列
SGHPEGPPAG FPCVSETTFD VFVWFGWANS SLNPVIYAFN ADFQKVFAQL LGCSHFCSRT PVETVNISNE LISYNQDIVF HKEIAAAYIH MMPNAVTPGN REVDNDEEEG PFDRMFQIYQ TSPDGDPVAE SVWELDCEGE ISLDKITPFT PNGFH
交叉反应
人, 小鼠
产品特性
Polyclonal Antibodies
纯化方法
Affinity purification
免疫原
Recombinant fusion protein containing a sequence corresponding to amino acids 323-477 of human DRD5 (NP_000789.1).
亚型
IgG
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Discover our top product DRD5 Primary Antibody
Alternatives
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使用细节
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应用备注
WB,1:500 - 1:2000
限制
仅限研究用
贮存及处理
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状态
Liquid
缓冲液
PBS with 0.02 % sodium azide,50 % glycerol, pH 7.3.
储存液
Sodium azide
注意事项
This product contains Sodium azide: a POISONOUS AND HAZARDOUS SUBSTANCE which should be handled by trained staff only.
注意事项
Avoid freeze / thaw cycles
储存条件
-20 °C
储存方法
Store at -20°C. Avoid freeze / thaw cycles.
DRD5目标详情
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抗原
DRD5
(Dopamine Receptor D5 (DRD5))
别名
DRD5 (DRD5 产品 )
别名
DRD5 antibody, DBDR antibody, DRD1B antibody, DRD1L2 antibody, D1B antibody, D5R antibody, Drd-5 antibody, Drd1b antibody, Gpcr1 antibody, dopamine receptor D5 antibody, DRD5 antibody, Drd5 antibody
背景
This gene encodes the D5 subtype of the dopamine receptor. The D5 subtype is a G-protein coupled receptor which stimulates adenylyl cyclase. This receptor is expressed in neurons in the limbic regions of the brain. It has a 10-fold higher affinity for dopamine than the D1 subtype. Pseudogenes related to this gene reside on chromosomes 1 and 2.,DRD5,DBDR,DRD1B,DRD1L2,Cancer,Signal Transduction,G protein signaling,G-Protein-Coupled Receptors(GPCR),Endocrine & Metabolism,Neuroscience,DRD5
分子量
52 kDa
基因ID
1816
UniProt
P21918
途径
Regulation of Systemic Arterial Blood Pressure by Hormones , cAMP Metabolic Process , Regulation of long-term Neuronal Synaptic Plasticity
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