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Merck
CN
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文件

AB5561

Sigma-Aldrich

抗-GABA A受体β2抗体,细胞质环

Chemicon®, from rabbit

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About This Item

UNSPSC代码:
12352203
eCl@ss:
32160702
NACRES:
NA.41

生物来源

rabbit

质量水平

抗体形式

affinity purified immunoglobulin

抗体产品类型

primary antibodies

克隆

polyclonal

纯化方式

affinity chromatography

种属反应性

rat, mouse, bovine, human

制造商/商品名称

Chemicon®

技术

immunoprecipitation (IP): suitable
western blot: suitable

UniProt登记号

运输

dry ice

靶向翻译后修饰

unmodified

基因信息

human ... GABRB2(2561)

特异性

GABAA受体β2亚基。该抗体对大鼠脑膜组分中的〜50至56kDa具有特异性。

免疫原

来自大鼠GABAA受体β2亚基胞质环的MBP融合蛋白。

应用

抗GABA A受体β2抗体,细胞质环是用于IP&WB的针对GABA A受体β2的抗体。
蛋白质印迹:1:1,000

免疫沉淀:使用15 μg抗体,该抗体可免疫沉淀大鼠前脑(150μ L)十二烷基硫酸盐提取物中68%的全部GABAA受体。

最佳工作稀释度必须由最终用户进行确定。

法律信息

CHEMICON is a registered trademark of Merck KGaA, Darmstadt, Germany

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Evangelos Sotiriou et al.
Journal of neuroscience research, 82(5), 690-700 (2005-11-08)
Recent data demonstrate weaker gamma-aminobutyric acid (GABA)-ergic inhibition in ventral (VH) compared with dorsal (DH) hippocampus. Therefore, we examined possible differences regarding the GABAA receptors between VH and DH as follows: 1) the expression of the GABAA receptor subunits (alpha1/2/4/5
GABA(A) receptor alpha1 subunit mutation A322D associated with autosomal dominant juvenile myoclonic epilepsy reduces the expression and alters the composition of wild type GABA(A) receptors.
Ding, L; Feng, HJ; Macdonald, RL; Botzolakis, EJ; Hu, N; Gallagher, MJ
The Journal of Biological Chemistry null
George E Farmer et al.
American journal of physiology. Regulatory, integrative and comparative physiology, 315(5), R972-R982 (2018-08-30)
The median preoptic nucleus (MnPO) is an integrative site involved in body fluid homeostasis, cardiovascular control, thermoregulation, and sleep homeostasis. Angiotensin II (ANG II), a neuropeptide shown to have excitatory effects on MnPO neurons, is of particular interest with regard
Altered cortical GABAA receptor composition, physiology, and endocytosis in a mouse model of a human genetic absence epilepsy syndrome.
Zhou, C; Huang, Z; Ding, L; Deel, ME; Arain, FM; Murray, CR; Patel, RS; Flanagan, CD; Gallagher, MJ
The Journal of Biological Chemistry null
Jingjing Duan et al.
Frontiers in cellular neuroscience, 13, 217-217 (2019-06-25)
In the adult brain GABAA receptors (GABAARs) mediate the majority of synaptic inhibition that provides inhibitory balance to excitatory drive and controls neuronal output. In the immature brain GABAAR signaling is critical for neuronal development. However, the cell-autonomous role of

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