深圳欣博盛生物科技有限公司 a1

CSEN antibody
货号:GTX23474 规格:100μg 目录价:¥5300
产品详情
* 以下信息仅供参考,详情请以原厂网站为准
产品名称:
CSEN antibody
别名:
potassium voltage-gated channel interacting protein 3
反应种属:
Human, Rabbit
宿主来源:
Rabbit
实验应用:
ICC/IF, IHC-Fr, WB
同种型:
IgG
免疫原:
Synthetic Peptide: I(30) K W Q R P R F T R Q A L M R C(45)
克隆性:
Polyclonal
克隆号:
纯化方式:
Purified by antigen-affinity chromatography
偶联:
Unconjugated
产品浓度:
1 mg/ml (Please refer to the vial label for the specific concentration.)
保存温度:
Store as concentrated solution. Centrifuge briefly prior to opening vial. For short-term storage (1-2 weeks), store at 4ºC. For long-term storage, aliquot and store at -20ºC or below. Avoid multiple freeze-thaw cycles.
运输温度:
4°C
产品形式:
Liquid
存储溶液:
PBS, 0.1% BSA, 0.05% Sodium azide.
生产商:
GeneTex
功能与背景:
Voltage-gated potassium (Kv) channels are key components of the potassium currents in the heart and central nervous system. In the heart, Kv4 channels are involved in the repolarization phase of the action potential. In the brain however, these channels prevent reverse-propagation of action potentials. Found associated with Kv4 channels are a group of calcium-binding proteins termed KChIPs (Kv channel interacting proteins). KChIPs are small molecular weight proteins that bind to the cytoplasmic amino termini of Kv4 alpha-subunits and help to modulate its function. There are currently three known KChIPs; KChIP1 expressed in the brain; KChIP2 expressed in the brain, heart, and lung, and has three isoforms, a, b, and c; and KChIP3, also known as calsenilin and DREAM (downstream regulatory elements (DRE)-antagonist modulator) which is expressed in the brain and testis. KChIP3 has activities beyond the modulation of Kv4 currents. It has been shown that KChIP3 binds to the regulatory DRE and represses transcription from the early-response gene c-fos. Thus, KCHiP3 is the first known calcium-binding protein to function as a DNA-binding transcriptional regulator. KChIP3 is also found associated with the presenilins and is implicated in the mediation of beta-amyloid formation.
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