Kv3.1
1139 literature references associated to Kv3.1
1
Argenziano M
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Arrhythmogenic effect of androgens on the rat heart.
J Physiol Sci,
2016
May
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Schilling JM
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Electrophysiology and metabolism of caveolin-3-overexpressing mice.
Basic Res. Cardiol.,
2016
May
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Gonzalez WG
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Characterization of the Photophysical, Thermodynamic, and Structural Properties of the Terbium(III)-DREAM Complex.
Biochemistry,
2016
Mar
29
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4
Liu X
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MiR-223-3p as a Novel MicroRNA Regulator of Expression of Voltage-Gated K+ Channel Kv4.2 in Acute Myocardial Infarction.
Cell. Physiol. Biochem.,
2016
Jun
20
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5
Arias HR
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Positive allosteric modulators of α7 nicotinic acetylcholine receptors affect neither the function of other ligand- and voltage-gated ion channels and acetylcholinesterase, nor β-amyloid content.
Int. J. Biochem. Cell Biol.,
2016
Jul
, 76 (19-30).
6
Subramani B
et al.
Generation and characterization of human cardiac resident and non-resident mesenchymal stem cell.
Cytotechnology,
2016
Jan
28
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7
Crump SM
et al.
Kcne4 deletion sex- and age-specifically impairs cardiac repolarization in mice.
FASEB J.,
2016
Jan
, 30 (360-9).
8
Cheng W
et al.
The MAPK pathway is involved in the regulation of rapid pacing‑induced ionic channel remodeling in rat atrial myocytes.
Mol Med Rep,
2016
Feb
4
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9
Kim KX
et al.
Maturation of NaV and KV Channel Topographies in the Auditory Nerve Spike Initiator before and after Developmental Onset of Hearing Function.
J. Neurosci.,
2016
Feb
17
, 36 (2111-8).
10
Ferron L
Fragile X mental retardation protein controls ion channel expression and activity.
J. Physiol. (Lond.),
2016
Feb
10
, ().
11
Crumb WJ
et al.
An evaluation of 30 clinical drugs against the comprehensive in vitro proarrhythmia assay (CiPA) proposed ion channel panel.
J Pharmacol Toxicol Methods,
2016
Apr
6
, ().
12
Nassal DM
et al.
Myocardial KChIP2 Expression in Guinea Pig Resolves an Expanded Electrophysiologic Role.
PLoS ONE,
2016
, 11 (e0146561).
13
Portero V
et al.
Dysfunction of the Voltage-Gated K+ Channel β2 Subunit in a Familial Case of Brugada Syndrome.
J Am Heart Assoc,
2016
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14
Piepgras J
et al.
Anti-DPPX encephalitis: pathogenic effects of antibodies on gut and brain neurons.
Neurology,
2015
Sep
8
, 85 (890-7).
15
Simkin D
et al.
Aging-Related Hyperexcitability in CA3 Pyramidal Neurons Is Mediated by Enhanced A-Type K+ Channel Function and Expression.
J. Neurosci.,
2015
Sep
23
, 35 (13206-18).
16
Kitazawa M
et al.
Kv4.2 and accessory dipeptidyl peptidase-like protein 10 (DPP10) subunit preferentially form a 4:2 (Kv4.2:DPP10) channel complex.
J. Biol. Chem.,
2015
Sep
11
, 290 (22724-33).
17
Duarri A
et al.
Spinocerebellar ataxia type 19/22 mutations alter heterocomplex Kv4.3 channel function and gating in a dominant manner.
Cell. Mol. Life Sci.,
2015
Sep
, 72 (3387-99).
18
Rosato-Siri MD
et al.
A Novel Modulator of Kv3 Potassium Channels Regulates the Firing of Parvalbumin-Positive Cortical Interneurons.
J. Pharmacol. Exp. Ther.,
2015
Sep
, 354 (251-60).
19
El Gebeily G
et al.
Estrogen regulation of the transient outward K(+) current involves estrogen receptor α in mouse heart.
J. Mol. Cell. Cardiol.,
2015
Sep
, 86 (85-94).
20
Zhang Y
et al.
Estrogen suppresses epileptiform activity by enhancing Kv4.2-mediated transient outward potassium currents in primary hippocampal neurons.
Int. J. Mol. Med.,
2015
Sep
, 36 (865-72).
21
Gupte RP
et al.
Convergent phosphomodulation of the major neuronal dendritic potassium channel Kv4.2 by pituitary adenylate cyclase-activating polypeptide.
Neuropharmacology,
2015
Oct
9
, 101 (291-308).
22
Jiang L
et al.
Activation of m1 muscarinic acetylcholine receptor induces surface transport of KCNQ channel via CRMP-2 mediated pathway.
J. Cell. Sci.,
2015
Oct
7
, ().
23
Perez-Cortes EJ
et al.
Modulation of the transient outward current (Ito) in rat cardiac myocytes and human Kv4.3 channels by mefloquine.
Toxicol. Appl. Pharmacol.,
2015
Oct
15
, 288 (203-12).
24
Shi J
et al.
[Response of potassium channels to estrogen and progesterone in the uterine smooth muscle cells of adenomyosis in vitro].
Zhonghua Fu Chan Ke Za Zhi,
2015
Nov
, 50 (843-7).
25
Yu H
et al.
Effect of Tyrphostin AG879 on Kv4.2 and Kv4.3 potassium channels.
Br. J. Pharmacol.,
2015
Mar
8
, ().
26
Najac M
et al.
Intraglomerular lateral inhibition promotes spike timing variability in principal neurons of the olfactory bulb.
J. Neurosci.,
2015
Mar
11
, 35 (4319-31).
27
Ma SF
et al.
H2S targets the Cys320/Cys529 motif in Kv4.2 to inhibit the Ito potassium channels in cardiomyocytes and regularizes fatal arrhythmia in myocardial infarction.
Antioxid. Redox Signal.,
2015
Mar
10
, ().
28
Wang WC
et al.
Immunohistochemical localization of DPP10 in rat brain supports the existence of a Kv4/KChIP/DPPL ternary complex in neurons.
J. Comp. Neurol.,
2015
Mar
1
, 523 (608-28).
29
Turnow K
et al.
Interaction of DPP10a with Kv4.3 channel complex results in a sustained current component of human transient outward current Ito.
Basic Res. Cardiol.,
2015
Mar
, 110 (5).
30
Ping Y
et al.
Linking aβ42-induced hyperexcitability to neurodegeneration, learning and motor deficits, and a shorter lifespan in an Alzheimer's model.
PLoS Genet.,
2015
Mar
, 11 (e1005025).
31
Bougis PE
et al.
Shal-type (Kv4.x) potassium channel pore blockers from scorpion venoms.
Sheng Li Xue Bao,
2015
Jun
25
, 67 (248-54).
32
Zhou J
et al.
Different KChIPs compete for heteromultimeric assembly with pore-forming Kv4 subunits.
Biophys. J.,
2015
Jun
2
, 108 (2658-69).
33
Mulholland PJ
et al.
Neuroplasticity of A-type potassium channel complexes induced by chronic alcohol exposure enhances dendritic calcium transients in hippocampus.
Psychopharmacology (Berl.),
2015
Jun
, 232 (1995-2006).
34
Taskin B
et al.
Biophysical characterization of KV3.1 potassium channel activating compounds.
Eur. J. Pharmacol.,
2015
Jul
5
, 758 (164-70).
35
You T
et al.
Two novel Brugada syndrome-associated mutations increase KV4.3 membrane expression and function.
Int. J. Mol. Med.,
2015
Jul
, 36 (309-15).
36
Fan J
et al.
Atrial overexpression of angiotensin-converting enzyme 2 improves the canine rapid atrial pacing-induced structural and electrical remodeling. Fan, ACE2 improves atrial substrate remodeling.
Basic Res. Cardiol.,
2015
Jul
, 110 (45).
37
Ednie AR
et al.
Reduced sialylation impacts ventricular repolarization by modulating specific K+ channel isoforms distinctly.
J. Biol. Chem.,
2015
Jan
30
, 290 (2769-83).
38
Muona M
et al.
A recurrent de novo mutation in KCNC1 causes progressive myoclonus epilepsy.
Nat. Genet.,
2015
Jan
, 47 (39-46).
39
Chen C
et al.
Effects of fluoxetine on protein expression of potassium ion channels in the brain of chronic mild stress rats.
Acta Pharm Sin B,
2015
Jan
, 5 (55-61).
40
Chen X
et al.
KChIP-like auxiliary subunits of Kv4 channels regulate excitability of muscle cells and control male turning behavior during mating in Caenorhabditis elegans.
J. Neurosci.,
2015
Feb
4
, 35 (1880-91).
41
Männikkö R
et al.
Pharmacological and electrophysiological characterisation of hERG activator AZSMO-23.
Br. J. Pharmacol.,
2015
Feb
12
, ().
42
Aidi-Knani S
et al.
Kv4 channel blockade reduces motor and neuropsychiatric symptoms in rodent models of Parkinson's disease.
Behav Pharmacol,
2015
Feb
, 26 (91-100).
43
Scala F
et al.
Intraneuronal Aβ accumulation induces hippocampal neuron hyperexcitability through A-type K(+) current inhibition mediated by activation of caspases and GSK-3.
Neurobiol. Aging,
2015
Feb
, 36 (886-900).
44
Rudakova E
et al.
Localization of Kv4.2 and KChIP2 in lipid rafts and modulation of outward K+ currents by membrane cholesterol content in rat left ventricular myocytes.
Pflugers Arch.,
2015
Feb
, 467 (299-309).
45
Smith KE
et al.
Phosphoinositide Modulation of Heteromeric Kv1 Channels Adjusts Output of Spiral Ganglion Neurons from Hearing Mice.
J. Neurosci.,
2015
Aug
12
, 35 (11221-32).
46
Grubb S
et al.
Preservation of cardiac function by prolonged action potentials in mice deficient of KChIP2.
Am. J. Physiol. Heart Circ. Physiol.,
2015
Aug
1
, 309 (H481-9).
47
Quang KL
et al.
Loss of Cardiomyocyte Integrin-Linked Kinase Produces an Arrhythmogenic Cardiomyopathy in Mice.
Circ Arrhythm Electrophysiol,
2015
Aug
, 8 (921-32).
48
Chae YJ
et al.
Raloxifene inhibits cloned Kv4.3 channels in an estrogen receptor-independent manner.
Pflugers Arch.,
2015
Aug
, 467 (1663-76).
49
Hall AM
et al.
Tau-dependent Kv4.2 depletion and dendritic hyperexcitability in a mouse model of Alzheimer's disease.
J. Neurosci.,
2015
Apr
15
, 35 (6221-30).
50
Strube C
et al.
Kv4 channels underlie A-currents with highly variable inactivation time courses but homogeneous other gating properties in the nucleus tractus solitarii.
Pflugers Arch.,
2015
Apr
, 467 (789-803).
51
Labro AJ
et al.
Kv3.1 uses a timely resurgent K(+) current to secure action potential repolarization.
Nat Commun,
2015
, 6 (10173).
52
Wang K
et al.
Apamin Boosting of Synaptic Potentials in CaV2.3 R-Type Ca2+ Channel Null Mice.
PLoS ONE,
2015
, 10 (e0139332).
53
Hall MK
et al.
Complex N-Glycans Influence the Spatial Arrangement of Voltage Gated Potassium Channels in Membranes of Neuronal-Derived Cells.
PLoS ONE,
2015
, 10 (e0137138).
54
Liu J
et al.
Kv4.3-Encoded Fast Transient Outward Current Is Presented in Kv4.2 Knockout Mouse Cardiomyocytes.
PLoS ONE,
2015
, 10 (e0133274).
55
Chiu SN
et al.
Repolarization Alternans and Ventricular Arrhythmia in a Repaired Tetralogy of Fallot Animal Model.
J Am Heart Assoc,
2015
, 4 ().
56
Smets K
et al.
First de novo KCND3 mutation causes severe Kv4.3 channel dysfunction leading to early onset cerebellar ataxia, intellectual disability, oral apraxia and epilepsy.
BMC Med. Genet.,
2015
, 16 (51).
57
Yamanushi TT
et al.
Comparison of formaldehyde and methanol fixatives used in the detection of ion channel proteins in isolated rat ventricular myocytes by immunofluorescence labelling and confocal microscopy.
Folia Morphol. (Warsz),
2015
, 74 (258-61).
58
Li X
et al.
Overexpression of tau downregulated the mRNA levels of Kv channels and improved proliferation in N2A cells.
PLoS ONE,
2015
, 10 (e0116628).
59
Bezerra GA
et al.
Structure of human dipeptidyl peptidase 10 (DPPY): a modulator of neuronal Kv4 channels.
Sci Rep,
2015
, 5 (8769).
60
Mirams GR
et al.
Prediction of Thorough QT study results using action potential simulations based on ion channel screens.
J Pharmacol Toxicol Methods,
2014 Nov-Dec
, 70 (246-54).
61
Tang YQ
et al.
The tetramerization domain potentiates Kv4 channel function by suppressing closed-state inactivation.
Biophys. J.,
2014
Sep
2
, 107 (1090-104).
62
Zhi-Bin H
et al.
Valsartan improves the electrophysiological characteristics of left ventricular hypertrophic myocardium in spontaneously hypertensive rats.
Hypertens. Res.,
2014
Sep
, 37 (824-9).
63
Picco C
et al.
Interaction of the scorpion toxin discrepin with Kv4.3 channels and A-type K(+) channels in cerebellum granular cells.
Biochim. Biophys. Acta,
2014
Sep
, 1840 (2744-51).
64
Subramaniam M
et al.
Mutant α-synuclein enhances firing frequencies in dopamine substantia nigra neurons by oxidative impairment of A-type potassium channels.
J. Neurosci.,
2014
Oct
8
, 34 (13586-99).
65
Lee HJ
et al.
Effects of haloperidol on Kv4.3 potassium channels.
Eur. J. Pharmacol.,
2014
Oct
5
, 740 (1-8).
66
Hoppa MB
et al.
Control and plasticity of the presynaptic action potential waveform at small CNS nerve terminals.
Neuron,
2014
Nov
19
, 84 (778-89).
67
Yunoki T
et al.
Differential contribution of Kv4-containing channels to A-type, voltage-gated potassium currents in somatic and visceral dorsal root ganglion neurons.
J. Neurophysiol.,
2014
Nov
15
, 112 (2492-504).
68
Lin L
et al.
DPP6 domains responsible for its localization and function.
J. Biol. Chem.,
2014
Nov
14
, 289 (32153-65).
69
Gonzalez WG
et al.
Modulation of the voltage-gated potassium channel (Kv4.3) and the auxiliary protein (KChIP3) interactions by the current activator NS5806.
J. Biol. Chem.,
2014
Nov
14
, 289 (32201-13).
70
Tobin WO
et al.
DPPX potassium channel antibody: frequency, clinical accompaniments, and outcomes in 20 patients.
Neurology,
2014
Nov
11
, 83 (1797-803).
71
Maleckar MM
et al.
NS5806 partially restores action potential duration but fails to ameliorate calcium transient dysfunction in a computational model of canine heart failure.
Europace,
2014
Nov
, 16 Suppl 4 (iv46-iv55).
72
Cheikh A
et al.
Inhibition of human Kv3.1 current expressed in Xenopus oocytes by the toxic venom fraction of Androctonus australis hector.
Arch. Pharm. Res.,
2014
Nov
, 37 (1445-53).
73
Frolov RV
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Celecoxib and ion channels: a story of unexpected discoveries.
Eur. J. Pharmacol.,
2014
May
5
, 730 (61-71).
74
Battonyai I
et al.
Potassium channels in the central nervous system of the snail, Helix pomatia: localization and functional characterization.
Neuroscience,
2014
May
30
, 268 (87-101).
75
Shi S
et al.
Chronic N-Methyl-d-Aspartate Receptor Activation Induces Cardiac Electrical Remodeling and Increases Susceptibility to Ventricular Arrhythmias.
Pacing Clin Electrophysiol,
2014
May
30
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76
Hsueh CH
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Pathogenesis of Arrhythmias in a Model of CKD.
J. Am. Soc. Nephrol.,
2014
May
22
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77
Zhang H
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Long‑term treatment of spontaneously hypertensive rats with losartan and molecular basis of modulating Ito of ventricular myocytes.
Mol Med Rep,
2014
May
, 9 (1959-67).
78
Zhang YY
et al.
Characterization of functional ion channels in human cardiac c-kit+ progenitor cells.
Basic Res. Cardiol.,
2014
May
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79
Proepper C
et al.
The Kvβ2 subunit of voltage-gated potassium channels is interacting with ProSAP2/Shank3 in the PSD.
Neuroscience,
2014
Mar
7
, 261 (133-43).
80
Li M
et al.
Interactions of KChIP4a and its mutants with Ca2+ or Kv4.3 N-terminus by affinity capillary electrophoresis.
Anal. Biochem.,
2014
Mar
15
, 449 (99-105).
81
López-Izquierdo A
et al.
The absence of insulin signaling in the heart induces changes in potassium channel expression and ventricular repolarization.
Am. J. Physiol. Heart Circ. Physiol.,
2014
Mar
1
, 306 (H747-54).
82
Heath NC
et al.
The expression pattern of a Cav3-Kv4 complex differentially regulates spike output in cerebellar granule cells.
J. Neurosci.,
2014
Jun
25
, 34 (8800-12).
83
Boczek NJ
et al.
Characterization of SEMA3A-Encoded Semaphorin as a Naturally Occurring Kv4.3 Protein Inhibitor and its Contribution to Brugada Syndrome.
Circ. Res.,
2014
Jun
24
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84
Coleman N
et al.
New Positive KCa Channel Gating Modulators with Selectivity for KCa3.1.
Mol. Pharmacol.,
2014
Jun
23
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85
Kitazawa M
et al.
The Stoichiometry and Biophysical Properties of the Kv4 Potassium Channel Complex with K+ Channel-interacting Protein (KChIP) Subunits Are Variable, Depending on the Relative Expression Level.
J. Biol. Chem.,
2014
Jun
20
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86
Wu CT
et al.
Disease and region-related cardiac fibroblast potassium current variations and potential functional significance.
Cardiovasc. Res.,
2014
Jun
1
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87
Kimm T
et al.
Inhibition of A-type potassium current by the peptide toxin SNX-482.
J. Neurosci.,
2014
Jul
9
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88
Beebe K
et al.
Distribution of fragile X mental retardation protein in the human auditory brainstem.
Neuroscience,
2014
Jul
25
, 273 (79-91).
89
Lee H
et al.
Exome sequencing identifies de novo gain of function missense mutation in KCND2 in identical twins with autism and seizures that slows potassium channel inactivation.
Hum. Mol. Genet.,
2014
Jul
1
, 23 (3481-9).
90
Gelernter J
et al.
Genome-wide association study of opioid dependence: multiple associations mapped to calcium and potassium pathways.
Biol. Psychiatry,
2014
Jul
1
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91
Kulesza RJ
Characterization of human auditory brainstem circuits by calcium-binding protein immunohistochemistry.
Neuroscience,
2014
Jan
31
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92
Martins RP
et al.
Dominant Frequency Increase Rate Predicts Transition from Paroxysmal to Long-Term Persistent Atrial Fibrillation.
Circulation,
2014
Jan
24
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93
Wang K
et al.
Distinct Ca2+ sources in dendritic spines of hippocampal CA1 neurons couple to SK and Kv4 channels.
Neuron,
2014
Jan
22
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95
Qu YH
et al.
Remodeling of ion channel expression may contribute to electrophysiological consequences caused by methamphetamine in vitro and in vivo.
Biochem. Biophys. Res. Commun.,
2014
Jan
10
, 443 (441-6).
96
Hall MK
et al.
N-Linked glycan site occupancy impacts the distribution of a potassium channel in the cell body and outgrowths of neuronal-derived cells.
Biochim. Biophys. Acta,
2014
Jan
, 1840 (595-604).
97
Xie C
et al.
Kv1.3 potassium channel-blocking toxin Ctri9577, novel gating modifier of Kv4.3 potassium channel from the scorpion toxin family.
Biochem. Biophys. Res. Commun.,
2014
Feb
14
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98
Gallego M
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Adrenergic regulation of cardiac ionic channels: role of membrane microdomains in the regulation of kv4 channels.
Biochim. Biophys. Acta,
2014
Feb
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99
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AaTX1, from Androctonus australis scorpion venom: purification, synthesis and characterization in dopaminergic neurons.
Toxicon,
2014
Dec
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100
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Reduced expression of IA channels is associated with postischemic seizures in hyperglycemic rats.
J. Neurosci. Res.,
2014
Dec
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101
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Block of Kv4.3 potassium channel by trifluoperazine independent of CaMKII.
Neurosci. Lett.,
2014
Aug
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102
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Expression of astrocyte-related receptors in cortical dysplasia with intractable epilepsy.
J. Neuropathol. Exp. Neurol.,
2014
Aug
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103
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Somatodendritic ion channel expression in substantia nigra pars compacta dopaminergic neurons across postnatal development.
J. Neurosci. Res.,
2014
Aug
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104
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Progressive encephalomyelitis with rigidity and myoclonus: a new variant with DPPX antibodies.
Neurology,
2014
Apr
29
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105
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Specific sorting and post-Golgi trafficking of dendritic potassium channels in living neurons.
J. Biol. Chem.,
2014
Apr
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106
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Type 2 diabetes induces subendocardium-predominant reduction in transient outward K+ current with downregulation of Kv4.2 and KChIP2.
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2014
Apr
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107
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Recombinant expression and functional characterization of martentoxin: a selective inhibitor for BK channel (α + β4).
Toxins (Basel),
2014
Apr
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108
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Inhibition of G protein-coupled P2Y2 receptor induced analgesia in a rat model of trigeminal neuropathic pain.
Mol Pain,
2014
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109
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Dipeptidyl peptidase 10 (DPP10(789)): a voltage gated potassium channel associated protein is abnormally expressed in Alzheimer's and other neurodegenerative diseases.
Biomed Res Int,
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110
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Effects of candesartan on electrical remodeling in the hearts of inherited dilated cardiomyopathy model mice.
PLoS ONE,
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111
Tabarean IV
Electrical remodeling of preoptic GABAergic neurons involves the Kv1.5 subunit.
PLoS ONE,
2014
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112
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Gain-of-function mutations in potassium channel subunit KCNE2 associated with early-onset lone atrial fibrillation.
Biomark Med,
2014
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113
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Voltage dependent potassium channel remodeling in murine intestinal smooth muscle hypertrophy induced by partial obstruction.
PLoS ONE,
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114
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Local plasticity of dendritic excitability can be autonomous of synaptic plasticity and regulated by activity-based phosphorylation of Kv4.2.
PLoS ONE,
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115
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Physiological characterization of vestibular efferent brainstem neurons using a transgenic mouse model.
PLoS ONE,
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116
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Modulatory mechanisms and multiple functions of somatodendritic A-type K (+) channel auxiliary subunits.
Front Cell Neurosci,
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117
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S-glutathionylation of an auxiliary subunit confers redox sensitivity to Kv4 channel inactivation.
PLoS ONE,
2014
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118
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The potential role of Kv4.3 K+ channel in heart hypertrophy.
Channels (Austin),
2014
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119
Tan XQ
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Multi-walled carbon nanotubes impair Kv4.2/4.3 channel activities, delay membrane repolarization and induce bradyarrhythmias in the rat.
PLoS ONE,
2014
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120
Wang Y
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The beneficial effect of electro-acupuncture given at PC6 (Neiguan-point) by the increase in cardiac transient outward K+ current channel which depends on the gene and protein expressions in artificially induced myocardial ischemia rats.
Acupunct Electrother Res,
2014
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121
Kurokawa S
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Cardiomyocyte-derived mitochondrial superoxide causes myocardial electrical remodeling by downregulating potassium channels and related molecules.
Circ. J.,
2014
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122
Wang W
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Effects of voltage-gated K+ channel on cell proliferation in multiple myeloma.
ScientificWorldJournal,
2014
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123
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Homology model and targeted mutagenesis identify critical residues for arachidonic acid inhibition of Kv4 channels.
Channels (Austin),
2013 Mar-Apr
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124
Elkins RC
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Variability in high-throughput ion-channel screening data and consequences for cardiac safety assessment.
J Pharmacol Toxicol Methods,
2013 Jul-Aug
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125
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Computational insights into the neuroprotective action of riluzole on 3-acetylpyridine-induced ataxia in rats.
Cell J,
2013
Summer
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126
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Spinocerebellar ataxia-13 Kv3.3 potassium channels: arginine-to-histidine mutations affect both functional and protein expression on the cell surface.
Biochem. J.,
2013
Sep
1
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127
Foeger NC
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Stabilization of Kv4 protein by the accessory K(+) channel interacting protein 2 (KChIP2) subunit is required for the generation of native myocardial fast transient outward K(+) currents.
J. Physiol. (Lond.),
2013
Sep
1
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128
Sack JT
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Antibody-guided photoablation of voltage-gated potassium currents.
J. Gen. Physiol.,
2013
Sep
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129
Kaufmann WA
et al.
Kv4.2 potassium channels segregate to extrasynaptic domains and influence intrasynaptic NMDA receptor NR2B subunit expression.
Brain Struct Funct,
2013
Sep
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130
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