
产品型号:K106430P
更新时间:2022-08-15
厂商性质:生产厂家
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产品分类
Anti-APP Polyclonal Antibody
| 英文名称 | Anti-APP Polyclonal Antibody |
|---|---|
| 宿主 | Rabbit |
| 别名 | AAA;ABETA;ABPP;AD1;APPI;CTFgamma;CVAP;PN-II;PN2;preA4 |
| 应用 | WB |
| 稀释比例 | WB 1:3000. |
| 交叉反应 | Human Mouse Rat |
| 蛋白分子量 | 120kDa |
| Gene ID | 351 |
| 保存 | Store at -20°C. Avoid freeze / thaw cycles. |
| 储存液 | Buffer: PBS with 0.03% Proclin300, 50% glycerol, pH7.3. |
| 纯化方法 | Affinity purification |
| 亚型 | IgG |
| 免疫原 | A synthetic peptide of human APP |
| 性状 | 液体 |
| Public Immunogen Range | A synthetic peptide of human APP |
| Subcellular Locations | Amyloid Coated pit Membrane |
| Swiss Prot | P05067 |
| 克隆类型 | Polyclonal Antibody |
| 背景资料 | Functions as a cell surface receptor and performs physiological functions on the surface of neurons relevant to neurite growth, neuronal adhesion and axonogenesis. Involved in cell mobility and transcription regulation through protein-protein interactions. Can promote transcription activation through binding to APBB1-KAT5 and inhibits Notch signaling through interaction with Numb. Couples to apoptosis-inducing pathways such as those mediated by G(O) and JIP. Inhibits G(o) alpha ATPase activity (By similarity). Acts as a kinesin I membrane receptor, mediating the axonal transport of beta-secretase and presenilin 1. Involved in copper homeostasis/oxidative stress through copper ion reduction. In vitro, copper-metallated APP induces neuronal death directly or is potentiated through Cu2+-mediated low-density lipoprotein oxidation. Can regulate neurite outgrowth through binding to components of the extracellular matrix such as heparin and collagen I and IV. The splice isoforms that contain the BPTI domain possess protease inhibitor activity. Induces a AGER-dependent pathway that involves activation of p38 MAPK, resulting in internalization of amyloid-beta peptide and leading to mitochondrial dysfunction in cultured cortical neurons. Provides Cu2+ ions for GPC1 which are required for release of nitric oxide (NO) and subsequent degradation of the heparan sulfate chains on GPC1. |