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PI3K p110 gamma Antibody

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  • $495
  • Leading Biology
  • 2025年09月30日
  • WB
  • Rabbit
  • Human
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    • 详细信息
    • 询价记录
    • 文献和实验
    • 技术资料
    • 保存条件

      Store at +4°C short term. For long-term storage, aliquot and store at -20°C or below. Stable for 12 months at -20°C. Avoid repeated freeze-thaw cycles.

    • 适应物种

      Human

    • 库存

      100

    • 宿主

      Rabbit

    • 应用范围

      WB

    • 规格

      100 μl

    Prouduct: We constantly strive to ensure we provide our customers with the best antibodies. As a result of this work we offer this antibody in purified format. We are in the process of updating our datasheets. If you have any questions regarding this update, please feel free to contact our technical support team. This product is a high quality PI3K p110 gamma Antibody. Functiong: Phosphoinositide-3-kinase (PI3K) that phosphorylates PtdIns(4,5)P2 (Phosphatidylinositol 4,5-bisphosphate) to generate phosphatidylinositol 3,4,5-trisphosphate (PIP3). PIP3 plays a key role by recruiting PH domain-containing proteins to the membrane, including AKT1 and PDPK1, activating signaling cascades involved in cell growth, survival, proliferation, motility and morphology. Links G-protein coupled receptor activation to PIP3 production. Involved in immune, inflammatory and allergic responses. Modulates leukocyte chemotaxis to inflammatory sites and in response to chemoattractant agents. May control leukocyte polarization and migration by regulating the spatial accumulation of PIP3 and by regulating the organization of F-actin formation and integrin- based adhesion at the leading edge. Controls motility of dendritic cells. Together with PIK3CD is involved in natural killer (NK) cell development and migration towards the sites of inflammation. Participates in T-lymphocyte migration. Regulates T-lymphocyte proliferation and cytokine production. Together with PIK3CD participates in T-lymphocyte development. Required for B- lymphocyte development and signaling. Together with PIK3CD participates in neutrophil respiratory burst. Together with PIK3CD is involved in neutrophil chemotaxis and extravasation. Together with PIK3CB promotes platelet aggregation and thrombosis. Regulates alpha-IIb/beta-3 integrins (ITGA2B/ ITGB3) adhesive function in platelets downstream of P2Y12 through a lipid kinase activity-independent mechanism. May have also a lipid kinase activity-dependent function in platelet aggregation. Involved in endothelial progenitor cell migration. Negative regulator of cardiac contractility. Modulates cardiac contractility by anchoring protein kinase A (PKA) and PDE3B activation, reducing cAMP levels. Regulates cardiac contractility also by promoting beta-adrenergic receptor internalization by binding to ADRBK1 and by non-muscle tropomyosin phosphorylation. Also has serine/threonine protein kinase activity: both lipid and protein kinase activities are required for beta-adrenergic receptor endocytosis. May also have a scaffolding role in modulating cardiac contractility. Contributes to cardiac hypertrophy under pathological stress. Through simultaneous binding of PDE3B to RAPGEF3 and PIK3R6 is assembled in a signaling complex in which the PI3K gamma complex is activated by RAPGEF3 and which is involved in angiogenesis. Summary: Phosphoinositide-3-kinase (PI3K) that phosphorylates PtdIns(4,5)P2 (Phosphatidylinositol 4,5-bisphosphate) to generate phosphatidylinositol 3,4,5-trisphosphate (PIP3). PIP3 plays a key role by recruiting PH domain-containing proteins to the membrane, including AKT1 and PDPK1, activating signaling cascades involved in cell growth, survival, proliferation, motility and morphology. Links G-protein coupled receptor activation to PIP3 production. Involved in immune, inflammatory and allergic responses. Modulates leukocyte chemotaxis to inflammatory sites and in response to chemoattractant agents. May control leukocyte polarization and migration by regulating the spatial accumulation of PIP3 and by regulating the organization of F-actin formation and integrin- based adhesion at the leading edge. Controls motility of dendritic cells. Together with PIK3CD is involved in natural killer (NK) cell development and migration towards the sites of inflammation. Participates in T-lymphocyte migration. Regulates T-lymphocyte proliferation and cytokine production. Together with PIK3CD participates in T-lymphocyte development. Required for B- lymphocyte development and signaling. Together with PIK3CD participates in neutrophil respiratory burst. Together with PIK3CD is involved in neutrophil chemotaxis and extravasation. Together with PIK3CB promotes platelet aggregation and thrombosis. Regulates alpha-IIb/beta-3 integrins (ITGA2B/ ITGB3) adhesive function in platelets downstream of P2Y12 through a lipid kinase activity-independent mechanism. May have also a lipid kinase activity-dependent function in platelet aggregation. Involved in endothelial progenitor cell migration. Negative regulator of cardiac contractility. Modulates cardiac contractility by anchoring protein kinase A (PKA) and PDE3B activation, reducing cAMP levels. Regulates cardiac contractility also by promoting beta-adrenergic receptor internalization by binding to ADRBK1 and by non-muscle tropomyosin phosphorylation. Also has serine/threonine protein kinase activity: both lipid and protein kinase activities are required for beta-adrenergic receptor endocytosis. May also have a scaffolding role in modulating cardiac contractility. Contributes to cardiac hypertrophy under pathological stress. Through simultaneous binding of PDE3B to RAPGEF3 and PIK3R6 is assembled in a signaling complex in which the PI3K gamma complex is activated by RAPGEF3 and which is involved in angiogenesis.

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    图标文献和实验
    相关实验
    • PI3K―Akt信号通路

      存在于胞质中,等待适当的信号激活。P13K通过两种方式激活:一种是与具有磷酸化酪氨酸残基的生长因子受体或连接蛋白相互作用,引起二聚体构象改变而被激活。对RTK而言,这种信号来自于配体介导的激酶的活化,结果使位于细胞膜内表面的酪氨酸残基磷酸化。磷酸化的酪氨酸残基立即成为细胞内信号蛋白的结合位点,通过与P85的SH2结构域结合而把P85―P110复合物聚集到细胞膜上并使之活化。另一种是通过Ras和Pll0直接结合,导致P13K的活化。PI3K被激活后,在细胞膜上生成第二信使PIPa,PIPa与细胞内含有PH

    • PI3K/Akt/mTOR信号通路

      目的:通过特异性阻断PI3K和mTOR,观察HepG2和Hep3B细胞株PI3K/Akt/mTOR信号通路活性及生物学行为的改变,探讨相关的分子机制。 方法:在培养的HepG2、Hep3B人肝癌细胞株和人正常肝细胞株QSG-7701上,以免疫印迹方法(Western blot)检测各细胞株中PI3Kp110α亚单位)、PTEN、pAkt(S473,T308)和p-mTOR(S2448)的表达情况;分别用 PI3K抑制剂LY294002(50μmol/ml)和mTOR抑制

    • 经典信号通路之PI3K/AKT信号通路

      的I型PI3K. 哺乳动物 细胞中Ι型PI3K又分为IA和IB两个亚型, 他们分别从酪氨酸激酶连接受体和G蛋白连接受体传递信号.IA 型PI3K是由催化亚单位p110和调节亚单位p85所组成的二聚体蛋白, 具有类脂激酶和蛋白激酶的双重活性.PI3K通过两种方式激活, 一种是与具有磷酸化酪氨酸残基的生长因子受体或连接蛋白相互作用, 引起二聚体构象改变而被激活; 另一种是通过Ras和p110直接结合导致PI3K的活化. PI3K激活的结果是在质膜上产生第二信使PIP3, PIP3与细胞内含有PH结构

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