SGK2 (D7G1) Rabbit mAb

SGK2 (D7G1) Rabbit mAb

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  • 询价
  • Cell Signaling Technology已认证
  • USA
  • 2025年10月05日
  • W
  • H,M,R
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    • 详细信息
    • 技术资料
    • 抗体英文名

      SGK2 (D7G1) Rabbit mAb

    • 抗原

      synthetic peptide corresponding to residues surrounding Lys331 of human SGK2 protein

    • 应用范围

      W

    • 保质期

      详见说明书

    • 适应物种

      H,M,R

    • 库存

      大量

    • 级别

      详见MSDS文件

    • 供应商

      CST

    • 是否单克隆

      1

    • 保存条件

      -20°c

    • 规格

      100 ul (10 western blots)/carrier free & custom formulation / quantity

    规格:产品价格:¥请询价
    规格:100 ul (10 western blots)产品价格:¥请询价
    规格:carrier free & custom formulation / quantity产品价格:¥请询价

    pathway more info application references datasheet PDF MSDS PDF protocols

    Applications Key:  W=Western Blotting
    Reactivity Key:  H=Human  M=Mouse  R=Rat
    Species cross-reactivity is determined by western blot. Species enclosed in parentheses are predicted to react based on 100% sequence homology.

    Applications Reactivity Sensitivity MW (kDa) Isotype
    W H M R Endogenous 42 Rabbit IgG
    Protocols
    Specificity / Sensitivity

    SGK2 (D7G1) Rabbit mAb recognizes endogenous levels of total SGK2 protein. The antibody does not cross react with other SGK family members (e.g. SGK1 and SGK3).

    Source / Purification

    Monoclonal antibody is produced by immunizing animals with a synthetic peptide corresponding to residues surrounding Lys331 of human SGK2 protein.

    Western Blotting

    Western Blotting

    Western blot analysis of extracts from HT-29 cells, mouse liver, and rat liver using SGK2 (D7G1) Rabbit mAb.

    Background

    Serum and glucocorticoid-inducible kinase (SGK) is a serine/threonine kinase closely related to Akt (1). SGK is rapidly induced in response to a variety of stimuli, including serum, glucocorticoid, follicle stimulating hormone, osmotic shock, and mineralocorticoids. SGK activation can be accomplished via HGF PI3K-dependent pathways and by integrin-mediated PI3K-independent pathways (2,3). Induction and activation of SGK has been implicated in activating the modulation of anti-apoptotic and cell cycle regulation (4-6). SGK also plays an important role in activating certain potassium, sodium, and chloride channels, suggesting its involvement in the regulation of processes such as cell survival, neuronal excitability, and renal sodium excretion (2). SGK is negatively regulated by ubiquitination and proteasome degradation (7).

    1. Webster, M.K. et al. (1993) Mol. Cell. Biol. 13, 2031-2040.
    2. Kobayashi, T. and Cohen, P. (1999) Biochem. J. 339, 319-328.
    3. Park, J. et al. (1999) EMBO J. 18, 3024-3033.
    4. Brunet, A. et al. (2001) Mol. Cell. Biol. 21, 952-965.
    5. Mikosz, C.A. et al. (2001) J. Biol. Chem. 276, 16649-16654.
    6. Hayashi, M. et al. (2001) J. Biol. Chem. 276, 8631-8634.
    7. Brickley, D.R. et al. (2002) J. Biol. Chem. 277, 43064-43070.
    Application References

    Have you published research involving the use of our products? If so we'd love to hear about it. Please let us know !

    Companion Products

    For Research Use Only. Not For Use In Diagnostic Procedures.

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