MDM2 抗体
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Quick Overview for MDM2 抗体 (ABIN271933)
抗原
See all MDM2 抗体适用
宿主
克隆类型
标记
应用范围
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特异性
- This antibody detects endogenous levels of MDM2 protein. (region surrounding Ser160)
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交叉反应 (详细)
- Species reactivity (tested):Human, Mouse.
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纯化方法
- Affinity Chromatography using epitope-specific immunogen.
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应用备注
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ELISA: 1: 1000approx. 1: 5000. WB: 1: 500approx. 1: 1000. IF: 1: 50approx. 1: 200.
Other applications not tested.
Optimal dilutions are dependent on conditions and should be determined by the user. -
限制
- 仅限研究用
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浓度
- 1.0 mg/mL
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缓冲液
- Phosphate buffered saline (PBS), pH ~7.2, 0.05 % Sodium Azide
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储存液
- Sodium azide
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注意事项
- This product contains sodium azide: a POISONOUS AND HAZARDOUS SUBSTANCE which should be handled by trained staff only.
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注意事项
- Avoid repeated freezing and thawing.
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储存条件
- 4 °C/-20 °C
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储存方法
- Store the antibody undiluted at 2-8 °C for one month or (in aliquots) at -20 °C for longer.
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- MDM2 (Mdm2, p53 E3 Ubiquitin Protein Ligase Homolog (Mouse) (MDM2))
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别名
- MDM2
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背景
- P53 is the most commonly mutated gene in human cancer identified to date. Expression of p53 leads to inhibition of cell growth by preventing progression of cells from G1 to S phase of the cell cycle. Most importantly, p53 functions to cause arrest of cells in the G1 phase of the cell cycle following any exposure of cells to DNA-damaging agents. The MDM2 (murine double minute-2) protein was initially identified as an oncogene in a murine transformation system. MDM2 functions to bind p53 and block p53-mediated transactivation of cotransfected reporter constructs. The MDM2 gene is amplified in a high percentage of human sarcomas that retain wildtype p53 and tumor cells that overexpress MDM2 can tolerate high levels of p53 expression. These findings argue that MDM2 overexpression represents at least one mechanism by which p53 function can be abrogated during tumorigenesis.Synonyms: Double minute 2 protein, E3 ubiquitin-protein ligase Mdm2, Hdm2, Oncoprotein Mdm2, p53-binding protein Mdm2
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分子量
- approx. 55, 90 kDa
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基因ID
- 4193
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NCBI登录号
- NP_002383
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UniProt
- Q00987
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途径
- p53 Pathway, PI3K-Akt Signaling, Cell Division Cycle, Fc-epsilon Receptor Signaling Pathway, EGFR Signaling Pathway, Neurotrophin Signaling Pathway, Autophagy, Ubiquitin Proteasome Pathway
抗原
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