KCTD7 Rabbit pAb, PE-Cy7 conjugated(bs-11729R-PE-Cy7)-100ul

KCTD7 Rabbit pAb, PE-Cy7 conju

gated(bs-11729R-PE-Cy7)-100ul
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  • ¥2980
  • Bioss已认证
  • bs-11729R-PE-Cy7
  • 2025年09月30日
  • 产品信息以Bioss网站为准
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      100ul

    产品编号bs-11729R-PE-Cy7
    英文名称KCTD7 Rabbit pAb, PE-Cy7 conjugated
    中文名称PE-Cy7标记的钾离子通道多聚体结构域蛋白7抗体
    英文别名BTB/POZ domain containing protein KCTD7; EPM3; FLJ32069; Potassium channel tetramerisation domain containing 7; KCTD7_HUMAN.
    产品应用Flow-Cyt=1ug/test

    Not yet tested in other applications.
    Optimal working dilutions must be determined by the end user.

    抗体来源Rabbit
    免疫原KLH conjugated synthetic peptide derived from human KCTD7
    亚型IgG
    纯化方法affinity purified by Protein A
    克隆类型Polyclonal
    浓度1mg/ml
    储存液0.01M TBS (pH7.4) with 1% BSA, 0.02% Proclin300 and 50% Glycerol.
    亚基May be involved in the control of excitability of cortical neurons
    亚细胞定位Cell membrane. Cytoplasm, cytosol.
    相似性Contains 1 BTB (POZ) domain.
    功能The KCTD gene family, including KCTD7, encode predicted proteins that contain N terminal domain that is homologous to the T1 domain in voltage gated potassium channels. KCTD7 displays a primary sequence and hydropathy profile indicating intracytoplasmic localization. There are two named isoforms._x000D_
    保存条件Shipped at 4℃. Store at -20°C for one year. Avoid repeated freeze/thaw cycles.
    注意事项This product as supplied is intended for research use only, not for use in human, therapeutic or diagnostic applications.
    背景资料Epilepsy affects about 0.5% of the world’s population and has a large genetic component. Epilepsy results from an electrical hyperexcitability in the central nervous system. Potassium channels are important regulators of electrical signaling, determining the firing properties and responsiveness of a variety of neurons. Benign familial neonatal convulsions (BFNC), an autosomal dominant epilepsy of infancy, has been shown to be caused by mutations in the KCNQ2 or the KCNQ3 potassium channel genes. KCNQ2 and KCNQ3 are voltage-gated potassium channel proteins with six putative transmembrane domains. Both proteins display a broad distribution within the brain, with expression patterns that largely overlap.

     

    应用推荐稀释比例
    {Flow-Cyt}{1ug/test}

     

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