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- 品牌:EnkiLife
- 产地:中国
- 型号:50uL
- 货号:AMRe02434
- 价格: ¥1350/支
- 发布日期: 2024-12-03
- 更新日期: 2025-05-22
产地 | 中国 |
品牌 | EnkiLife |
保存条件 | Store at 4°C short term. Aliquot and store at -20°C long term. Avoid freeze/thaw cycles. |
货号 | AMRe02434 |
用途 | WB,IHC-P,IP |
应用范围 | |
抗原来源 | |
保质期 | |
抗体名 | PHD3 Rabbit Monoclonal Antibody |
是否单克隆 | 是 |
克隆性 | Monoclonal Antibody |
靶点 | EGLN3 |
适应物种 | Human,Mouse,Rat |
形态 | Liquid |
宿主 | Rabbit |
标记物 | Unconjugated |
包装规格 | 50uL |
亚型 | IgG |
标识物 | |
浓度 | % |
免疫原 | |
是否进口 | 否 |
产品概述
产品性能
免疫原
产品应用
研究背景
Cellular oxygen sensor that catalyzes, under normoxic conditions, the post-translational formation of 4-hydroxyproline in hypoxia-inducible factor (HIF) alpha proteins. Hydroxylates a specific proline found in each of the oxygen-dependent degradation (ODD) domains (N-terminal, NODD, and C-terminal, CODD) of HIF1A. Also hydroxylates HIF2A. Has a preference for the CODD site for both HIF1A and HIF2A. Hydroxylation on the NODD site by EGLN3 appears to require prior hydroxylation on the CODD site. Hydroxylated HIFs are then targeted for proteasomal degradation via the von Hippel-Lindau ubiquitination complex. Under hypoxic conditions, the hydroxylation reaction is attenuated allowing HIFs to escape degradation resulting in their translocation to the nucleus, heterodimerization with HIF1B, and increased expression of hypoxy-inducible genes. EGLN3 is the most important isozyme in limiting physiological activation of HIFs (particularly HIF2A) in hypoxia. Also hydroxylates PKM in hypoxia, limiting glycolysis. Under normoxia, hydroxylates and regulates the stability of ADRB2. Regulator of cardiomyocyte and neuronal apoptosis. In cardiomyocytes, inhibits the anti-apoptotic effect of BCL2 by disrupting the BAX-BCL2 complex. In neurons, has a NGF-induced proapoptotic effect, probably through regulating CASP3 activity. Also essential for hypoxic regulation of neutrophilic inflammation. Plays a crucial role in DNA damage response (DDR) by hydroxylating TELO2, promoting its interaction with ATR which is required for activation of the ATR/CHK1/p53 pathway. Target proteins are preferentially recognized via a LXXLAP motif.
研究领域
Cardiovascular