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MTOR

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  • ¥1125 - 1875
  • HuaBio/华安生物
  • 2025年07月16日
  • ICC,IHC-P
  • Rabbit
  • Human, Mouse, Rat
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    • 详细信息
    • 文献和实验
    • 技术资料
    • 免疫原

      Synthetic peptide within human MTOR aa 2255-2341.

    • 亚型

      IgG

    • 形态

      Liquid

    • 克隆性

      Rabbit polyclonal Antibody

    • 标记物

      Non-conjugated

    • 适应物种

      Human, Mouse, Rat

    • 库存

      现货

    • 供应商

      华安生物

    • 宿主

      Rabbit

    • 应用范围

      ICC,IHC-P

    • 浓度

      1 mg/mL.

    • 规格

      50ul/100ul

    规格:50ul产品价格:¥1125.0
    规格:100ul产品价格:¥1875.0
    The mechanistic target of rapamycin (mTOR), also known as the mammalian target of rapamycin and FK506-binding protein 12-rapamycin-associated protein 1 (FRAP1), is a kinase that in humans is encoded by the MTOR gene. mTOR is a member of the phosphatidylinositol 3-kinase-related kinase family of protein kinases. mTOR links with other proteins and serves as a core component of two distinct protein complexes, mTOR complex 1 and mTOR complex 2, which regulate different cellular processes. In particular, as a core component of both complexes, mTOR functions as a serine/threonine protein kinase that regulates cell growth, cell proliferation, cell motility, cell survival, protein synthesis, autophagy, and transcription. As a core component of mTORC2, mTOR also functions as a tyrosine protein kinase that promotes the activation of insulin receptors and insulin-like growth factor 1 receptors. mTORC2 has also been implicated in the control and maintenance of the actin cytoskeleton.

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    图标文献和实验
    相关实验
    • Senescence Regulation by mTOR

      The senescence program is activated in response to diverse stress stimuli potentially compromising genetic stability and leads to an irreversible cell cycle arrest. The mTOR pathway plays a crucial role in the regulation of cell metabolism

    • mTOR Activity Under Hypoxia

      The adaptive response to hypoxia, low oxygen tension, involves inhibition of energy-intensive cellular processes including protein translation. This effect is mediated in part through a decrease in the kinase activity of mammalian target

    • Biochemical and Pharmacological Inhibition of mTOR by Rapamycin and an ATP-Competitive mTOR Inhibitor

      The mammalian target of rapamycin (mTOR) is the catalytic subunit of two multiprotein complexes, mTOR complex-1 (mTORC1) and mTOR complex-2 (mTORC2). Clinically used rapamycin and rapalogs are FKBP12-dependent allosteric inhibitors of mTORC

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