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E1A (adenovirus early region 1)
E1A (adenovirus early region 1)
- 中文名称:
- E1A (adenovirus early region 1)
- 英文名称:
- E1A (adenovirus early region 1)
- 品牌:
- AAA Biotech
- 品牌介绍:
- AAA Biotech专注于为全球生命科学研究提供高品质的蛋白质研究工具,核心产品包括经严格验证的抗体、重组蛋白及ELISA试剂盒。
- 货号:
- AAA60509
- 规格:
- 0.1 mg|2x0.1 mg|3x0.1 mg|4x0.1 mg|5x0.1 mg
- 保存建议:
- Product should be stored at -20 degree C. Aliquot to avoid freeze/thaw cycles
- 货期:
- 6-8周
- 来源宿主:
- Sheep
- 反应种属:
- Human, Rat
- 应用:
- IP (Immunoprecipitation)
- 免责声明:
- *本产品仅供科研实验使用,不得用于临床诊断。*
- 其他:
克隆性:Polyclonal
同型:IgG
克隆号:N/A
特异性:N/A
纯度:Ammonium Sulfate Precipitation
形式:Provided as solution in phosphate buffered saline with 0.08% sodium azide
浓度:N/A
- 说明书:
The immunogen for the anti-EIA was a recombinant E1A protein recognizing a 43kD protein. EIA gene encodes potent onco-proteins that modify the normal transcriptional growth regulation of key cellular genes and thus alter cell cycle control. E1A protein has both transforming and trans-activating activities. Plays a role in viral genome replication by driving entry of quiescent cells into the cell cycle. Disrupts the function of host retinoblastoma protein RB1/pRb and isoform early E1A 26 kDa protein stabilizes TP53, which are key regulators of the cell cycle. Induces the disassembly of the E2F1 transcription factors from RB1 by direct competition for the same binding site on RB1, with subsequent transcriptional activation of E2F1-regulated S-phase genes. Inactivation of the ability of RB1 to arrest the cell cycle is critical for cellular transformation, uncontrolled cellular growth and proliferation induced by viral infection. Stimulation of progression from G1 to S phase allows the virus to efficiently use the cellular DNA replicating machinery to achieve viral genome replication. Interaction with RBX1 and CUL1 inhibits ubiquitination of the proteins targeted by SCF(FBW7) ubiquitin ligase complex, and may be linked to unregulated host cell proliferation. The tumorigenesis-restraining activity of E1A may be related to the disruption of the host CtBP-CtIP complex through the CtBP binding motif