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Potassium voltage-gated channel subfamily C member 4 (Kv3.4) (Kv3.4)

Target
Kv3.4
Molecular classification
Ion channel, Voltage-gated potassium channel, Shaw-related subfamily
01

Overview

Potassium voltage-gated channel subfamily C member 4 (Kv3.4) is a specialized ion channel encoded by the KCNC4 gene, primarily found in the central and peripheral nervous systems (UniProt: P48544). It belongs to the Shaw-related subfamily and is characterized by its unique ability to activate and deactivate rapidly at high voltages, which is essential for maintaining high-frequency firing in neurons (PubMed: 10751448). The channel is prominently expressed at presynaptic terminals, where it plays a vital role in repolarizing the membrane and regulating the duration of neurotransmitter release (PubMed: 22414369). In clinical research, Kv3.4 has been identified as a significant factor in the early pathogenesis of Alzheimer's disease, with its upregulation in the hippocampus and cortex linked to amyloid-beta-induced synaptic dysfunction (PubMed: 15159487). Furthermore, Kv3.4 is implicated in the transmission of chronic and neuropathic pain, making it a promising target for novel analgesic therapies (PubMed: 22414369). It also appears to play a role in cell cycle regulation in certain cancers, such as oral squamous cell carcinoma (PubMed: 25605104). Pharmacological targeting of Kv3.4 often involves peptide toxins like Blood-depressing substance I (BDS-I), which selectively block the channel to modulate neuronal excitability (IUPHAR/BPS Guide to Pharmacology). However, the high degree of structural similarity among Kv3 family members poses a significant challenge for developing highly selective small-molecule inhibitors without causing off-target effects like seizures or cognitive deficits.

Other names
KCNC4Shaw-related subfamily member 4Voltage-gated potassium channel subunit Kv3.4KSHIIIC
02

Mechanism of action

Blockade of the ion-conducting pore to inhibit potassium efflux and prolong action potential duration (PubMed: 10751448); modulation of channel gating kinetics to restore normal neuronal firing patterns (PubMed: 22414369).

03

Biological functions

Action potential repolarizationRegulation of neurotransmitter releaseFast-spiking neuronal activityPotassium ion transport
04

Disease associations

Alzheimer's diseaseChronic painNeuropathic painOral squamous cell carcinoma
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Safety considerations

Risk of seizures due to altered neuronal excitability (PubMed: 22414369)Potential for cognitive impairmentLack of subtype selectivity leading to off-target effects on Kv3.1 and Kv3.2 channels (IUPHAR/BPS Guide to Pharmacology)Cardiac rhythm disturbances
06

Interacting drugs

Blood-depressing substance I (BDS-I)

4 more in the full profile.

07

Biomarkers

KCNC4 mRNA expression levels (NCBI Gene: 3749)Kv3.4 protein expression in hippocampal neurons (PubMed: 15159487)Kv3.4 levels in cerebrospinal fluid (CSF)

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