Potassium voltage-gated channel subfamily A member 1
Also known as: KCNA1
Function
Voltage-gated potassium channel that mediates transmembrane potassium transport in excitable membranes, primarily in the brain and the central nervous system, but also in the kidney. Contributes to the regulation of the membrane potential and nerve signaling, and prevents neuronal hyperexcitability. Forms tetrameric potassium-selective channels through which potassium ions pass in accordance with their electrochemical gradient. The channel alternates between opened and closed conformations in response to the voltage difference across the membrane. Can form functional homotetrameric channels and heterotetrameric channels that contain variable proportions of KCNA1, KCNA2, KCNA4, KCNA5, KCNA6, KCNA7, and possibly other family members as well; channel properties depend on the type of alpha subunits that are part of the channel. Channel properties are modulated by cytoplasmic beta subunits that regulate the subcellular location of the alpha subunits and promote rapid inactivation of delayed rectifier potassium channels. In vivo, membranes probably contain a mixture of heteromeric potassium channel complexes, making it difficult to assign currents observed in intact tissues to any particular potassium channel family member. Homotetrameric KCNA1 forms a delayed-rectifier potassium channel that opens in response to membrane depolarization, followed by slow spontaneous channel closure. In contrast, a heterotetrameric channel formed by KCNA1 and KCNA4 shows rapid inactivation. Regulates neuronal excitability in hippocampus, especially in mossy fibers and medial perforant path axons, preventing neuronal hyperexcitability. Response to toxins that are selective for KCNA1, respectively for KCNA2, suggests that heteromeric potassium channels composed of both KCNA1 and KCNA2 play a role in pacemaking and regulate the output of deep cerebellar nuclear neurons (By similarity). May function as down-stream effector for G protein-coupled receptors and inhibit GABAergic inputs to basolateral amygdala neurons (By similarity). May contribute to the regulation of neurotransmitter release, such as gamma-aminobutyric acid (GABA) release (By similarity). Plays a role in regulating the generation of action potentials and preventing hyperexcitability in myelinated axons of the vagus nerve, and thereby contributes to the regulation of heart contraction (By similarity). Required for normal neuromuscular responses. Regulates the frequency of neuronal action potential firing in response to mechanical stimuli, and plays a role in the perception of pain caused by mechanical stimuli, but does not play a role in the perception of pain due to heat stimuli (By similarity). Required for normal responses to auditory stimuli and precise location of sound sources, but not for sound perception (By similarity). The use of toxins that block specific channels suggest that it contributes to the regulation of the axonal release of the neurotransmitter dopamine (By similarity). Required for normal postnatal brain development and normal proliferation of neuronal precursor cells in the brain (By similarity). Plays a role in the reabsorption of Mg(2+) in the distal convoluted tubules in the kidney and in magnesium ion homeostasis, probably via its effect on the membrane potential.
Classification
- Family (Pfam)
- PF02214 BTB_2, PF00520 Ion_trans
- InterPro
- BTB/POZ_dom, Ion_trans_dom, K_chnl_volt-dep_Kv, K_chnl_volt-dep_Kv1, K_chnl_volt-dep_Kv1.1, SKP1/BTB/POZ_sf, T1-type_BTB, VG_K_chnl, Volt_channel_dom_sf
- Functional cluster
- Ribosome-Recycling & Clp Protease Factors
Gene Ontology · 38
- GO:0070161 anchoring junction
- GO:0043194 axon initial segment
- GO:0043679 axon terminus
- GO:0030054 cell junction
- GO:0009986 cell surface
- GO:0031410 cytoplasmic vesicle
- GO:0005829 cytosol
- GO:0030425 dendrite
- GO:0005783 endoplasmic reticulum
- GO:0044224 juxtaparanode region of axon
- GO:0016020 membrane
- GO:0043025 neuronal cell body
- GO:0033270 paranode region of axon
- GO:0043204 perikaryon
- GO:0005886 plasma membrane
- GO:0042734 presynaptic membrane
- GO:0045202 synapse
- GO:0008076 voltage-gated potassium channel complex
- GO:0005251 delayed rectifier potassium channel activity
- GO:0097718 disordered domain specific binding
- GO:0005249 voltage-gated potassium channel activity
- GO:0001508 action potential
- GO:0010644 cell communication by electrical coupling
- GO:0071286 cellular response to magnesium ion
- GO:0050966 detection of mechanical stimulus involved in sensory perception of pain
- GO:0050976 detection of mechanical stimulus involved in sensory perception of touch
- GO:0021766 hippocampus development
- GO:0010960 magnesium ion homeostasis
- GO:0086011 membrane repolarization during action potential
- GO:0007405 neuroblast proliferation
- GO:0050905 neuromuscular process
- GO:0019228 neuronal action potential
- GO:0023041 neuronal signal transduction
- GO:0071805 potassium ion transmembrane transport
- GO:0051260 protein homooligomerization
- GO:0042391 regulation of membrane potential
- GO:0006937 regulation of muscle contraction
- GO:0001964 startle response
Disease associations
- episodic ataxia type 1 MONDO:0008047
Drugs targeting this protein · 6
- TEDISAMIL blocker
- GUANIDINE HYDROCHLORIDE blocker
- NERISPIRDINE blocker
- DALFAMPRIDINE blocker
- AMIFAMPRIDINE PHOSPHATE blocker
- AMIFAMPRIDINE blocker
Related proteins · sequence + function similarity
- Potassium voltage-gated channel subfamily A member 1 1.00
- Potassium voltage-gated channel subfamily A member 1 1.00
- Potassium voltage-gated channel subfamily A member 2 0.98
- Potassium voltage-gated channel subfamily A member 2 0.98
- Potassium voltage-gated channel subfamily A member 2 0.98
- Potassium voltage-gated channel subfamily A member 2 0.98
- Potassium voltage-gated channel subfamily A member 2 0.98
- Potassium voltage-gated channel subfamily A member 2 0.98
- Potassium voltage-gated channel subfamily A member 2 0.97
- Potassium voltage-gated channel subfamily A member 10 0.96
- Potassium voltage-gated channel subfamily A member 10 0.96
- Shaker-related potassium channel tsha2 0.96
Co-cited proteins · studied together in the literature
- Potassium voltage-gated channel subfamily A member 1 5 shared papers
- Potassium voltage-gated channel subfamily A member 4 3 shared papers
- Voltage-gated potassium channel subunit beta-1 2 shared papers
- Potassium channel regulatory protein 1 shared papers
- Potassium voltage-gated channel subfamily A member 2 4 shared papers
- Potassium voltage-gated channel subfamily A member 1 4 shared papers
- Ankyrin-3 1 shared papers
- Voltage-gated potassium channel subunit beta-2 1 shared papers
- Ankyrin-3 1 shared papers
- Acetylcholine receptor subunit beta-like 2 1 shared papers
- Sodium channel protein 60E 1 shared papers
- Voltage-gated potassium channel subunit beta-2 1 shared papers
Literature · 28 cited papers
- Diagnostic targeted resequencing in 349 patients with drug-resistant pediatric epilepsies identifies causative mutations in 30 different genes. Hum. Mutat. · 2017
- Ankyrin-3 is a novel binding partner of the voltage-gated potassium channel Kv1.1 implicated in renal magnesium handling. Kidney Int. · 2014
- Potassium channel KCNA1 modulates oncogene-induced senescence and transformation. Cancer Res. · 2013
- Evidence for presence and functional effects of Kv1.1 channels in beta-cells: general survey and results from mceph/mceph mice. PLoS ONE · 2011
- Nerve excitability studies characterize Kv1.1 fast potassium channel dysfunction in patients with episodic ataxia type 1. Brain · 2010
- Potassium channel regulator KCNRG regulates surface expression of Shaker-type potassium channels. Biochem. Biophys. Res. Commun. · 2010
- Human potassium channel genes: molecular cloning and functional expression. Mol. Cell. Neurosci. · 1990
- Functional analysis of the Kv1.1 N255D mutation associated with autosomal dominant hypomagnesemia. J. Biol. Chem. · 2010
- A missense mutation in the Kv1.1 voltage-gated potassium channel-encoding gene KCNA1 is linked to human autosomal dominant hypomagnesemia. J. Clin. Invest. · 2009
- Ionic channel function in action potential generation: current perspective. Mol. Neurobiol. · 2007
- Episodic ataxia type 1 mutations in the KCNA1 gene impair the fast inactivation properties of the human potassium channels Kv1.4-1.1/Kvbeta1.1 and Kv1.4-1.1/Kvbeta1.2. Eur. J. Neurosci. · 2006
- Functional analysis of a novel potassium channel (KCNA1) mutation in hereditary myokymia. Neurogenetics · 2007
- … and 16 more in the literature graph