Anti-KCNQ1 antibody,Abcam,AB192425

Host

Rabbit

Reactivity

Mouse, Rat, Human

Application

WB

Platform ID

BAB426051013

Abcam

Headquarters

Discovery Drive Cambridge Biomedical Campus Cambridge CB2 0AX UK

Contact

Tel: +44 (0)1223 696000
Fax: +44 (0)1223 215 215

Product Specifications
Scientific Background

Specifications

NameAnti-KCNQ1 antibody
Cat. No.AB192425
HostRabbit
IsotypeIgG
ReactivityMouse, Rat, Human
ApplicationWB
ClonalityPolyclonal
Concentration1 mg/mL Batch dependent concentration
ImmunogenSynthetic Peptide within Human KCNQ1. The exact immunogen used to generate this antibody is proprietary information.
PurityAffinity purification Immunogen
Appearance/FormLiquid
ShippingBlue Ice
FormulationpH: 7.2 Preservative: 0.05% Sodium azide Constituents: PBS
Storage-20°C
Regulatory StatusResearch Use Only

Scientific Background

Target data Pore-forming subunit of the voltage-gated potassium (Kv) channel involved in the regulation of cardiomyocyte excitability and important in normal development and functions of myocardium, inner ear, stomach and colon (PubMed : 10646604, PubMed : 25441029). Associates with KCNE beta subunits that modulates current kinetics (PubMed : 10646604, PubMed : 11101505, PubMed : 19687231, PubMed : 8900283, PubMed : 9108097, PubMed : 9312006). Induces a voltage-dependent current by rapidly activating and slowly deactivating potassium-selective outward current (PubMed : 10646604, PubMed : 11101505, PubMed : 25441029, PubMed : 8900283, PubMed : 9108097, PubMed : 9312006). Promotes also a delayed voltage activated potassium current showing outward rectification characteristic (By similarity). During beta-adrenergic receptor stimulation, participates in cardiac repolarization by associating with KCNE1 to form the I(Ks) cardiac potassium current that increases the amplitude and slows down the activation kinetics of outward potassium current I(Ks) (By similarity) (PubMed : 10646604, PubMed : 11101505, PubMed : 8900283, PubMed : 9108097, PubMed : 9312006). Muscarinic agonist oxotremorine-M strongly suppresses KCNQ1/KCNE1 current (PubMed : 10713961). When associated with KCNE3, forms the potassium channel that is important for cyclic AMP-stimulated intestinal secretion of chloride ions (PubMed : 10646604). This interaction with KCNE3 is reduced by 17beta-estradiol, resulting in the reduction of currents (By similarity). During conditions of increased substrate load, maintains the driving force for proximal tubular and intestinal sodium ions absorption, gastric acid secretion, and cAMP-induced jejunal chloride ions secretion (By similarity). Allows the provision of potassium ions to the luminal membrane of the secretory canaliculus in the resting state as well as during stimulated acid secretion (By similarity). When associated with KCNE2, forms a heterooligomer complex leading to currents with an apparently instantaneous activation, a rapid deactivation process and a linear current-voltage relationship and decreases the amplitude of the outward current (PubMed : 11101505). When associated with KCNE4, inhibits voltage-gated potassium channel activity (PubMed : 19687231). When associated with KCNE5, this complex only conducts current upon strong and continued depolarization (PubMed : 12324418). Also forms a heterotetramer with KCNQ5; has a voltage-gated potassium channel activity (PubMed : 24855057). Binds with phosphatidylinositol 4,5-bisphosphate (PubMed : 25037568). KCNQ1-KCNE2 channel associates with Na(+)-coupled myo-inositol symporter in the apical membrane of choroid plexus epithelium and regulates the myo-inositol gradient between blood and cerebrospinal fluid with an impact on neuron excitability (By similarity).. Isoform 2. Non-functional alone but modulatory when coexpressed with the full-length isoform 1. See full target information KCNQ1

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