产品详情
  • 产品名称:Anti-GAPDH(3E12)-Loading Control/FITC抗体

  • 产品型号:Anti-GAPDH(3E12)-Loading Control/FITC
  • 产品厂商:科研抗体
  • 产品价格:0
  • 折扣价格:0
  • 产品文档:
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简单介绍:
Anti-GAPDH(3E12)-Loading Control/FITC抗体和抗原之间的结合具有高度的特异性,**组织化学正是利用了这一原理。先将组织或细胞中的某种化学物质提取出来,以此作为抗原或半抗原,Anti-GAPDH(3E12)-Loading Control/FITC抗体通过**动物后获得特异性的抗体,再以此抗体去探测组织或细胞中的同类的抗原物质。由于抗原与抗体的复合物是无色的,因此还必须借助于组织化学的方法将抗原抗体结合的部位显示出来,以其达到对组织或细胞中的未知抗原进行定性,定位或定量的研究。
详情介绍:

Anti-GAPDH(3E12)-Loading Control/FITC抗体

产品编号YB0978M-FITC

英文名称Anti-GAPDH(3E12)-Loading Control/FITC

中文名称FITC标记的3-磷酸甘油醛脱氢酶单克隆抗体(内参抗体)

别    名38 kDa BFA-dependent ADP-ribosylation substrate; Aging-associated gene 9 protein; BARS-38; cb609; EC 1.2.1.12; G3PD; G3PDH; GAPD; Glyceraldehyde 3 phosphate dehydrogenase;Glyceraldehyde 3 phosphate dehydrogenase liver;Glyceraldehyde 3 phosphate dehydrogenase muscle; KNC-NDS6; MGC102544; MGC102546; MGC103190; MGC103191; MGC105239; MGC127711; MGC88685; OCAS, p38 component; OCT1 coactivator in S phase, 38-KD component; wu:fb33a10.  

Anti-GAPDH(3E12)-Loading Control/FITC抗体

说 明 书100ul  

产品类型内参抗体

研究领域肿瘤  **学  神经生物学  信号转导  通道蛋白  新陈代谢  Alzheimer's  

抗体来源Mouse

克隆类型Monoclonal

克 隆 号3E12

交叉反应 Mouse, Rat, Rabbit,

产品应用Flow-Cyt=1:50-200 IF=1:50-200  

not yet tested in other applications.

optimal dilutions/concentrations should be determined by the end user.

分 子 量38kDa

Anti-GAPDH(3E12)-Loading Control/FITC抗体细胞定位细胞膜

性    状Lyophilized or Liquid

浓    度1mg/ml

免 疫 原Full length GAPDH protein purified from rabbit muscle

亚    型IgG

纯化方法affinity purified by Protein G

储 存 液0.01M TBS(pH7.4) with 1% BSA, 0.03% Proclin300 and 50% Glycerol.

保存条件Store at -20 癈 for one year. Avoid repeated freeze/thaw cycles. The lyophilized antibody is stable at room temperature for at least one month and for greater than a year when kept at -20癈. When reconstituted in sterile pH 7.4 0.01M PBS or diluent of antibody the antibody is stable for at least two weeks at 2-4 癈.

Anti-GAPDH(3E12)-Loading Control/FITC抗体

产品介绍background:

Loading Control

Glyceraldehyde 3 phosphate dehydrogenase (GAPDH) is well known as one of the key enzymes involved in glycolysis. As well as functioning as a glycolytic enzyme in cytoplasm, recent evidence suggests that mammalian GAPDH is also involved in a great number of intracellular proceses such as membrane fusion, microtubule bundling, phosphotransferase activity, nuclear RNA export, DNA replication, and DNA repair. During the last decade a lot of data appeared concerning the role of GAPDH in different pathologies including prostate cancer progression, programmed neuronal cell death, age related neuronal diseases, such as Alzheimer's and Huntington's disease. GAPDH is expressed in all cells. It is constitutively expressed in almost all tissues at high levels. There are however some physiological factors such as hypoxia and diabetes that increase GAPDH expression in certain cell types. GAPDH molecule is composed of four 36kDa subunits.


Function:

Has both glyceraldehyde-3-phosphate dehydrogenase and nitrosylase activities, thereby playing a role in glycolysis and nuclear functions, respectively. Participates in nuclear events including transcription, RNA transport, DNA replication and apoptosis. Nuclear functions are probably due to the nitrosylase activity that mediates cysteine S-nitrosylation of nuclear target proteins such as SIRT1, HDAC2 and PRKDC. Glyceraldehyde-3-phosphate dehydrogenase is a key enzyme in glycolysis that catalyzes the first step of the pathway by converting D-glyceraldehyde 3-phosphate (G3P) into 3-phospho-D-glyceroyl phosphate.


Subunit:

Homotetramer. Interacts with TPPP; the interaction is direct. Anti-GAPDH(3E12)-Loading Control/FITC抗体Interacts (when S-nitrosylated) with SIAH1; leading to nuclear translocation. Interacts with RILPL1/GOSPEL, leading to prevent the interaction between GAPDH and SIAH1 and prevent nuclear translocation. Interacts with EIF1AD, USP25, PRKCI and WARS.


Subcellular Location:

Cytoplasm, cytosol. Nucleus. Cytoplasm, perinuclear region. Membrane. Note=Translocates to the nucleus following S-nitrosylation and interaction with SIAH1, which contains a nuclear localization signal. Postnuclear and Perinuclear regions.


Post-translational modifications:

S-nitrosylation of Cys-152 leads to interaction with SIAH1, followed by translocation to the nucleus.

ISGylated (Probable).

Sulfhydration at Cys-152 increases catalytic activity.


Similarity:

Belongs to the glyceraldehyde-3-phosphate dehydrogenase family.


Database links:

Entrez Gene: 374193 Chicken

Entrez Gene: 2597 Human

Entrez Gene: 100042025 Mouse

Entrez Gene: 14433 Mouse

Entrez Gene: 24383 Rat

Entrez Gene: 685186 Rat

Entrez Gene: 317743 Zebrafish

Omim: 138400 Human

SwissProt: P00356 Chicken

SwissProt: P04406 Human

SwissProt: P16858 Mouse

SwissProt: P04797 Rat

SwissProt: Q5XJ10 Zebrafish



Important Note:

This product as supplied is intended for research use only, not for use in human, therapeutic or diagnostic applications.


GAPDH蛋白几乎在所有组织中都高水平表达,广泛用作Western blot蛋白质标准化的内参,是很好的内参抗体。

GAPDH 作为管家基因在同种细胞或者组织中的蛋白质表达量一般是恒定的。在实验中,可能存在总蛋白浓度测定不准确;或者蛋白质样品在电泳前上样时产生的样品间的操作误差;这些误差需要通过测定每个样品中实际转到膜上的GAPDH的含量来进行校正,所以一般的western实验都需要进行内参设置。具体校正的方法就是将每个样品测得的目的蛋白含量与本样品的GAPDH含量相除,得到每个样品目的蛋白的相对含量。然后才进行样品与样品之间的比较。

甘油醛-3-磷酸脱氢酶(Glyceraldehyde 3 phosphate dehydrogenase,GAPDH)是糖酵解(glycolysis)过程中的关键酶。除了在胞质中作为糖酵解的酶以外,有证据表明哺乳动物细胞中的GAPDH参与了多种胞内生化过程,包括膜融合(membrane fusion)、微管成束(microtubule bundling)、磷酸转移酶(phosphotransferase)激活、核内RNA出核、DNA复制与DNA修复。一些生理因素,诸如低氧(hypoxia)和尿糖(diabetes),可以增加GAPDH在特定细胞中的表达。GAPDH存在于几乎所有的组织中,以高水平持续表达。

GAPDH(甘油醛-3-磷酸脱氢酶)是参与糖酵解的一种关键酶,由4个30-40kDa的亚基组成.


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