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Potassium voltage-gated channel subfamily A member 4 (Kv1.4) (Kv1.4)

Target
Kv1.4
Molecular classification
Ion channel [1.3.1], Voltage-gated potassium channel [1.3.5], Shaker-related potassium channel [1.3.1]
01

Overview

Potassium voltage-gated channel subfamily A member 4 (Kv1.4), encoded by the KCNA4 gene, is a member of the Shaker-related family of voltage-gated potassium channels [1.3.1]. It is primarily expressed in the brain and heart, where it mediates the transient outward potassium current (Ito,s) and plays a critical role in the repolarization phase of action potentials [1.3.1, 1.3.3]. The specific construct fKv1.4ΔN refers to a ferret-derived Kv1.4 channel with an N-terminal deletion (residues 2-146), a modification used in research to eliminate fast N-type inactivation and study slower C-type inactivation mechanisms [1.2.1, 1.4.1]. Biologically, Kv1.4 regulates neuronal firing patterns and cardiac rhythm; its dysregulation is associated with heart failure, hypertrophy, and various neurological disorders [1.3.3, 1.3.5]. Pharmacologically, Kv1.4 is sensitive to small molecule blockers like 4-aminopyridine and quinidine, which are used to modulate cellular excitability in therapeutic contexts [1.4.2, 1.5.3]. Research using the fKv1.4ΔN construct has been instrumental in understanding how drugs interact with the channel's pore and influence its gating properties [1.4.2]. Overall, Kv1.4 serves as a key regulator of excitability across multiple organ systems, making it a significant focus for drug development in cardiovascular and neurological medicine [1.3.3, 1.3.5].

Other names
KCNA4Shaker-related subfamily member 4HK1PCN2HBK4HPCN2HUKIIKCNA4LKCNA8MCIDDSfKv1.4 (ferret ortholog)fKv1.4ΔN (N-terminal deletion construct)
02

Mechanism of action

Drugs targeting Kv1.4 typically act as pore blockers that physically obstruct the ion conduction pathway or as gating modifiers that alter the voltage-sensitivity or inactivation kinetics of the channel [1.3.5, 1.4.1].

03

Biological functions

Action potential repolarization [1.3.1]Regulation of membrane potential [1.1.1]Neurotransmitter release regulation [1.5.3]Cardiac transient outward current (Ito,s) [1.3.1]Regulation of neuronal excitability [1.3.3]
04

Disease associations

Cardiac arrhythmia [1.3.3]Epilepsy [1.3.5]Multiple sclerosis [1.3.2]Alzheimer's disease [1.3.4]Heart failure [1.2.1]Hypertrophy [1.2.1]
05

Safety considerations

Pro-arrhythmic risk (QT prolongation) [1.5.1]Central nervous system excitability [1.3.4]Potential for seizures [1.3.5]Cardiac toxicity [1.5.1]
06

Interacting drugs

4-Aminopyridine [1.3.4]

5 more in the full profile.

07

Biomarkers

KCNA4 gene mutations [1.3.5]Kv1.4 protein expression levels in cardiac tissue [1.3.3]

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