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Phospho-EphA2 (Tyr772) Recombinant Rabbit mAb (S-3525-94)

Ephrin type-A receptor 2,Epithelial cell kinase,Tyrosine-protein kinase receptor ECK,ECK,EPHA2

价格 600.00 供应商现货 : 3-5个工作日
货号 S0B6736
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产品规格
  • 宿主来源

    Rabbit
  • 抗原名称

    Phospho-EphA2 (Tyr772)
  • 分子别名

    Ephrin type-A receptor 2; Epithelial cell kinase; Tyrosine-protein kinase receptor ECK; ECK; EPHA2
  • 免疫原

    Synthetic Peptide
  • 细胞定位

    Cell membrane
  • Accession

    P29317
  • 克隆号

    S-3525-94
  • 抗体类型

    Recombinant mAb
  • 抗体同种型

    IgG
  • 翻译后修饰类型

    磷酸化
  • 反应种属 ?

    Hu
  • 阳性样本

    MDA-MB-231 (treated with 100 ng/ml Ephrin-A1-Fc for 5 minutes)
  • 纯化方式

    Protein A
  • 浓度

    0.5 mg/ml
  • 标记

    Unconjugated
  • 性状

    Liquid
  • 缓冲体系

    PBS, 40% Glycerol, 0.05% BSA, 0.03% Proclin 300

  • 储存条件

    12 months from date of receipt / reconstitution, -20 °C as supplied

  • 应用

    WB

  • 稀释度

    应用 稀释度 推荐种属
    Dot Blot 1:1000
    WB 1:1000 Hu
背景介绍
  • Phospho-EphA2 (Tyr772) is a distinctive autophosphorylation site located within the activation loop of the EphA2 receptor tyrosine kinase. Its phosphorylation occurs independently of the juxtamembrane tyrosine diphosphorylation event typically required for canonical Eph receptor activation; phosphorylation of Tyr772 alone is sufficient to induce conformational activation of the kinase domain, revealing an alternative activation mechanism that distinguishes EphA2 from other family members such as EphB2. Functionally, phosphorylation at this site serves as a central switch for the ligand-dependent tumor-suppressive function of EphA2. Upon contact between tumor cells and ephrin-A1 ligands on endothelial cell surfaces, Tyr772 is rapidly phosphorylated, initiating cell-cell repulsion signals that inhibit tumor-endothelial adhesion and transendothelial migration. Conversely, inactivation of this site—via Y772F mutation or dephosphorylation mediated by the phosphatase LMW-PTP—directly releases this brake, promoting breast cancer cell extravasation and lung metastatic colonization. Notably, the phosphorylation status of Tyr772 and that of Ser897 exist in a mutually antagonistic equilibrium. The E3 ligase RNF5 downregulates Y772 phosphorylation by promoting EphA2 degradation, concomitantly enhancing oncogenic Ser897 phosphorylation. Conversely, inhibition of RNF5 stabilizes membrane EphA2 expression and shifts the balance toward the Y772 phosphorylation-dominated tumor-suppressive phenotype, increasing cell adhesion and suppressing HER2-negative breast cancer growth. Additionally, the Epstein-Barr virus latent membrane protein LMP2A modulates EphA2 Tyr772 modification via the PI3K-AKT signaling axis in gastric cancer, simultaneously restraining tumor progression and maintaining viral latency—highlighting the unique role of this site in pathogen-host interplay. Thus, pY772 not only serves as a functional epitope distinguishing the tumor-suppressive versus pro-oncogenic duality of EphA2 but also represents a molecular node where the metastatic "brake" fails, positioning it as a critical monitoring target for assessing metastatic potential and developing pro-phosphorylation intervention strategies.

  • 免疫印迹

    • WB result of Phospho-EphA2 (Tyr772) Recombinant Rabbit mAb
      Blocking/Diluting buffer and concentration: 5% NFDM/TBST
      Primary antibody incubation conditions: overnight at 4°C
      Primary antibody: Phospho-EphA2 (Tyr772) Recombinant Rabbit mAb at 1/1000 dilution
      Lane 1: untreated MDA-MB-231 whole cell lysate 20 µg
      Lane 2: MDA-MB-231 treated with 100 ng/ml Ephrin-A1-Fc for 5 minutes whole cell lysate 20 µg
      Secondary antibody: Goat Anti- rabbit IgG, (H+L), HRP conjugated at 1/10000 dilution
      Predicted MW: 108 kDa
      Observed MW: 125 kDa

  • 斑点杂交

    • Dot blot result of Phospho-EphA2 (Tyr772) Recombinant Rabbit mAb
      Lane 1: EphA2 (Tyr772) phospho peptide
      Lane 2: EphA2 (Tyr772) unmodified peptide
      Primary antibody: Phospho-EphA2 (Tyr772) Recombinant Rabbit mAb at 1/1000 dilution
      Secondary antibody: Goat Anti-rabbit IgG, (H+L), HRP conjugated at 1/10000 dilution

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