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Merck
CN

06-600

抗-NR2B抗体

Upstate®, from rabbit

别名:

N-methyl D-aspartate receptor subtype 2B, N-methyl-D-aspartate receptor subunit 2B, N-methyl-D-aspartate receptor subunit 3, glutamate receptor subunit epsilon-2, glutamate receptor, ionotropic, N-methyl D-aspartate 2B

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关于此项目

UNSPSC Code:
12352203
NACRES:
NA.41
eCl@ss:
32160702
Conjugate:
unconjugated
Clone:
polyclonal
Application:
western blot
Species reactivity:
mouse, rat (based on 100% sequence homology)
Citations:
145
Technique(s):
western blot: suitable
Uniprot accession no.:
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产品名称

抗-NR2B抗体, Upstate®, from rabbit

biological source

rabbit

conjugate

unconjugated

antibody form

purified immunoglobulin

antibody product type

primary antibodies

clone

polyclonal

species reactivity

mouse, rat (based on 100% sequence homology)

species reactivity (predicted by homology)

monkey (based on 100% sequence homology), canine (based on 100% sequence homology), bovine (based on 100% sequence homology), human (based on 100% sequence homology), chimpanzee (based on 100% sequence homology)

manufacturer/tradename

Upstate®

technique(s)

western blot: suitable

isotype

IgG

NCBI accession no.

UniProt accession no.

shipped in

dry ice

target post-translational modification

unmodified

Quality Level

Gene Information

bovine ... Grin2B(537804)
chimpanzee ... Grin2B(473373)
dog ... Grin2B(494009)
human ... GRIN2B(2904)
mouse ... Grin2B(14812)
rat ... Grin2B(24410)
rhesus monkey ... Grin2B(698571)

Analysis Note

在大鼠脑微粒体样品中通过蛋白质印迹进行验证。 蛋白印迹分析:该抗体的1:1000稀释液在大鼠脑微粒体样品中检测到NR2B。
对照
小鼠脑组织

Application

抗NR2B抗体(货号06-600)是一种兔多克隆抗体,可检测NR2B,经过测试可用于蛋白质印迹法。
研究子类别
神经递质&受体

神经退行性疾病
研究类别
神经科学

Biochem/physiol Actions

该兔多克隆抗体可特异性检测NR2B。它靶向胞质结构域C末端的20个氨基酸之内的表位。

Disclaimer

除非我们的产品目录或产品附带的其他公司文档另有说明,否则我们的产品仅供研究使用,不得用于任何其他目的,包括但不限于未经授权的商业用途、体外诊断用途、离体或体内治疗用途或任何类型的消费或应用于人类或动物。

General description

目标分子量:观察值为~165 kDa;计算值为165.96 kDa。在一些裂解液中可能会观察到未表征的条带。
谷氨酸受体离子型NMDA 2B(UniProt:Q01097;也称为GluN2B、谷氨酸[NMDA]受体亚基epsilon-2、N-甲基-D-天冬氨酸受体亚型2B、NMDAR2B、NR2B)由小鼠的Grin2b基因(Gene ID:14812)编码。NMDA受体是一类离子型谷氨酸受体。NMDA受体通道已被证明与长期增强有关,长期增强是突触传递效率的活性依赖性增加,被认为是某些类型的记忆和学习的基础。NMDA受体通道是由关键受体亚基NMDAR1(GRIN1)和4个NMDAR2亚基中的1个或多个组成的异聚体:NMDAR2A(GRIN2A),NMDAR2B(GRIN2B或NR2B),NMDAR2C(GRIN2C)和NMDAR2D(GRIN2D)。GRIN2B可能是神经退行性疾病dentato-rubro-pallidoluysian atrophy(DRPLA)的候选基因。NMDAR的特性包括甘氨酸调节,Zn2+抑制,电压依赖性Mg2+阻滞和高Ca2+渗透性。NMDAR在中枢神经系统中的作用已成为阿尔茨海默′病、癫痫和缺血性神经元死亡等神经退行性疾病的研究热点。

Immunogen

KLH偶联的线性肽,对应于来自小鼠NR2B细胞质域C末端的20个氨基酸。

Physical form

形式:纯化
纯化的兔多克隆抗体,溶于含有0.1 M Tris-甘氨酸(pH 7.4)、150 mM NaCl和0.05%叠氮化钠的缓冲液中。
蛋白A纯化

Preparation Note

储存于-10°C至-25°C。 处理建议:收货后,在取下瓶盖之前,将小瓶离心并轻轻混合溶液。分装到微量离心管中,并储存于-20°C。避免反复冻融循环,以免损坏IgG和影响产品性能

Legal Information

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

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存储类别

10 - Combustible liquids

wgk

WGK 1


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Perturbing PSD-95 interactions with NR2B-subtype receptors attenuates spinal nociceptive plasticity and neuropathic pain.
D'Mello, R; Marchand, F; Pezet, S; McMahon, SB; Dickenson, AH
Molecular Therapy null
Amino terminal domain regulation of NMDA receptor function.
Herin, Greta Ann and Aizenman, Elias
European Journal of Pharmacology, 500, 101-111 (2004)
Peripheral N-methyl-d-aspartate receptors contribute to mechanical hypersensitivity in a rat model of inflammatory temporomandibular joint pain.
Ivanusic, JJ; Beaini, D; Hatch, RJ; Staikopoulos, V; Sessle, BJ; Jennings, EA
European Journal of Pain null
Polyglutamine-modulated striatal calpain activity in YAC transgenic huntington disease mouse model: impact on NMDA receptor function and toxicity.
Cowan, CM; Fan, MM; Fan, J; Shehadeh, J; Zhang, LY; Graham, RK; Hayden, MR; Raymond, LA
The Journal of Neuroscience null
Tianyun Zhao et al.
Scientific reports, 6, 26865-26865 (2016-05-27)
Ketamine is commonly used for anesthesia and as a recreational drug. In pregnant users, a potential neurotoxicity in offspring has been noted. Our previous work demonstrated that ketamine exposure of pregnant rats induces affective disorders and cognitive impairments in offspring.

相关内容

Glutamate is an excitatory neurotransmitter found in the synaptic vesicles of glutamatergic synapses. The post-synaptic neurons in these synapses contain ionotropic and metabotropic glutamate receptors. Glutamate binds to AMPA (α-amino-3-hydroxy-5- methylisoxazole-4-propionic acid) subtype glutamate receptors, leading to sodium influx into the post-synaptic cell and resulting in neuronal excitability and synaptic transmission. The NMDA (N-methyl-d-aspartate) subtype glutamate receptors, on the other hand, regulate synaptic plasticity, and can influence learning and memory. The metabotropic g-protein coupled mGluRs modulate downstream calcium signaling pathways and indirectly influence the synapse’s excitability. The synaptic architecture includes intracellular scaffolding proteins (PSD-95, GRIP), intercellular cell adhesion molecules (NCAMs, N-Cadherins), and a variety of signaling proteins (CaMKII/PKA, PP1/PP2B). Processes critical for synaptic transmission and plasticity are influenced by these molecules and their interactions. When the function of these molecules is disrupted, it leads to synaptic dysfunction and degeneration, and can contribute to dementia as seen in Alzheimer’s disease.

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