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BAIAP2 Polyclonal Antibody

规格: / 20μL / 60μL / 120μL / 200μL
价格: / ¥420 / ¥1010 / ¥1640 / ¥2365

货号:E-AB-10414

宿主: Rabbit

反应性: H,M,R

应用: IHC,ELISA

  • 详情
  • Overview

    Synonyms BAI-associated protein 2,BAI1 associated protein 2,BAI1-associated protein 2,BAIAP 2,Baiap2,BAIP2,BAP2,Brain-specific angiogenesis inhibitor 1-associated protein 2,Fas ligand-associated factor 3,FLAF3,Insulin receptor substrate p53,Insulin receptor substrate p53/p58,Insulin receptor substrate protein of 53 kDa,IRS-58,IRSp53,IRSp53/58,Protein BAP2,BAIAP2抗体
    Swissprot Q9UQB8
    Source Rabbit
    Reactivity Human,Mouse,Rat
    Immunogen Recombinant protein of human BAIAP2
    Application IHC(Detection kit: E-IR-R213),ELISA
    Recommended dilution IHC,,1:50-1:200;
    Concentration 0.2 mg/mL
    Clonality Polyclonal

    Properties

    Cellular localization Cytoplasm. Membrane. Cell projection>filopodium. Cell projection>ruffle. Detected throughout the cytoplasm in the absence of specific binding partners. Detected in filopodia and close to membrane ruffles.
    Tissue specificity Isoform 1 and isoform 4 are expressed almost exclusively in brain. Isoform 4 is barely detectable in placenta, prostate and testis. A short isoform is ubiquitous, with the highest expression in liver, prostate, testis and placenta.
    Isotype IgG
    Purification Affinity purification
    Conjugation Unconjugated
    Storage instructions Store at -20℃. Avoid freeze / thaw cycles.
    Storage buffer PBS with 0.05% sodium azide, 50% glycerol, PH7.3
    Background The protein encoded by this gene has been identified as a brain-specific angiogenesis inhibitor (BAI1)-binding protein. This adaptor protein links membrane bound G-proteins to cytoplasmic effector proteins. This protein functions as an insulin receptor tyrosine kinase substrate and suggests a role for insulin in the central nervous system. It also associates with a downstream effector of Rho small G proteins, which is associated with the formation of stress fibers and cytokinesis. This protein is involved in lamellipodia and filopodia formation in motile cells and may affect neuronal growth-cone guidance. This protein has also been identified as interacting with the dentatorubral-pallidoluysian atrophy gene, which is associated with an autosomal dominant neurodegenerative disease. Alternative splicing results in multiple transcript variants encoding distinct isoforms
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