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Cdc42-GTP

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  • ¥4800
  • Bioyears
  • TD-26905
  • 美国
  • 2026年04月20日
  • IP, IHC IP, IHC and IF (Not applicable for WB since WB denatures the GTPase)
  • Mouse
  • 脊椎动物
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    • 详细信息
    • 文献和实验
    • 技术资料
    • 供应商

      Bioyears

    • 库存

      88

    • 靶点

      cdc42

    • 级别

      科研级

    • 目录编号

      TD-26905

    • 克隆性

      单克隆

    • 抗原来源

      蛋白表达

    • 保质期

      24个月

    • 抗体英文名

      Anti active Cdc42 Mouse Monoclonal Antibody

    • 抗体名

      Cdc42-GTP

    • 标记物

      FITC

    • 宿主

      Mouse

    • 适应物种

      脊椎动物

    • 免疫原

      Recombinant full length protein of active Cdc42

    • 亚型

      IgMG1

    • 形态

      液体

    • 应用范围

      IP, IHC IP, IHC and IF (Not applicable for WB since WB denatures the GTPase)

    • 保存条件

      -20℃

    • 浓度

      1mg/ml

    • 规格

      30μl

    Cdc42-GTP

    Cat. #:  TD-26905
    Size:  30 µL
    Gene Symbol:  CDC42
    Description:   Anti-Cdc42-GTP Monoclonal Antibody
    Background:   Small GTPases are a super-family of cellular signaling regulators. Cdc42 belongs to the Rho sub-family of GTPases that regulate cell motility, cell division, and gene transcription. GTP binding increases the activity of Cdc42, and the hydrolysis of GTP to GDP renders it inactive. GTP hydrolysis is aided by GTPase activating proteins (GAPs), while exchange of GDP for GTP is facilitated by guanine nucleotide exchange factors (GEFs).
    Immunogen:   Recombinant full length protein of active Cdc42
    Applications:   IP, IHC and IF (Not applicable for WB since WB denatures the GTPase)
    Recommended Dilutions:    IP: 1 µg for 1~2 mg total cellular proteins IHC, IF: 1:50-1:250
    Concentration:   1 mg/ml
    Host Species:   Mouse
    Format:   Liquid
    Clonality:   Monoclonal
    Isotype:   IgG1
    Purity:   Purified from ascites
    Preservative:  No
    Constituents:  PBS (without Mg2+ and Ca2+), pH 7.4, 150 mM NaCl, 50% glycerol
    Species Reactivity:  Anti-Cdc42-GTP monoclonal antibody recognizes active Cdc42 from vertebrates.
    Storage Conditions:  Store at -20°C. Avoid repeated freezing and thawing
    IP-Western blot:  
    产品细节图片1
    IP/WB analysis of active Cdc42 protein. Purified recombinant Cdc42 proteins were loaded with GDP (lane 1) or GTPγS (lane 2). These proteins were immunoprecipitated with anti-Cdc42-GTP mouse monoclonal antibody (Cat. # TD-26905). After SDS/PAGE, the membrane filter was probed with anti-Cdc42 mouse monoclonal antibody (Cat. # ).
    Immunofluorescence:
    产品细节图片2
    Immunofluorescent labeling of Cdc42-GTP in MS1 mouse endothelial cells. The MS1 cells cultured on glass coverslips (Fisher) in DMEM containing 5% FBS were fixed with 4% parafo/rmaldehyde for 10 minutes at RT (room temperature) and permeabilized in PBSN (PBS+0.1%NP40) for 15 minutes at RT. The cells were stained with primary antibody (Cdc42-GTP) at 1:25 dilution in Invitrogen’s CAS-BLOCK (00-8120) reagent at RT for 1 hour. After brief washing in PBSN (3x5min), a secondary Alexa555 conjugated goat anti mouse antibody (Invitrogen A21424) was applied in 1:200 in CAS-BLOCK at RT for 1 hour. The coverslips were then washed in PBSN (3x5min) and mounted using vectorsheld’s hard set mounting medium (H-1500), and examined using a Zeiss inverted fluorescence microscope.

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    图标文献和实验
    相关实验
    • GTP结合蛋白(small GTP binding protein)

      细胞中有两类结构不同的GTP结合蛋白:一种是单体GTP结合蛋白( 也称单体GTPase), 含有一条多肽链, 即是小GTP结合蛋白;另一种即是参与信号转导的三体G蛋白。 小GTP结合蛋白是细胞内的一个大的蛋白家族, 它以两种状态存在: 同GTP结合时, 具活性状态; 同GDP结合, 则是非活性状态。小GTP结合蛋白的活性和非活性状态的转变取决于两种蛋白: 一种是鸟嘌呤核苷释放蛋白(guanine-nucleotide-releasing protein, GNRP

    • GTP结合蛋白(GTP binding protein, G蛋白)

      GTP或GDP结合的蛋白质,又叫鸟苷酸结合调节蛋白(guanine nucleotide-binding regulatory protein)。从组成上看,有单体G蛋白(一条多肽链)和多亚基G蛋白(多条多肽链组成)。G蛋白参与细胞的多种生命活动,如细胞通讯、核糖体与内质网的结合、小泡运输、蛋白质合成等。 G蛋白偶联系统中的G蛋白是由三个不同亚基组成的异源三体,三个亚基分别是α、β、γ, 总相对分子质量在100kDa左右, β亚基为36 kDa左右, γ亚基

    • A Sensitive Assay for the Enzymatic Activity of GTP Cyclohydrolase I

      high-affinity binding sites for BH 4 . This cofactor is enzymatically synthesized in the cell from guanosine 5′-triphosphate (GTP) by the sequential actions of three distinct enzymes ( see Chapter 24 , Fig. 1 , this volume). The first and rate-limiting

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