Kv3 CHANNELS: ENABLERS OF RAPID FIRING, NEUROTRANSMITTER RELEASE, AND NEURONAL ENDURANCE

被引:128
作者
Kaczmarek, Leonard K. [1 ]
Zhang, Yalan
机构
[1] Yale Univ, Sch Med, Dept Pharmacol, 333 Cedar St,POB 208066, New Haven, CT 06520 USA
基金
美国国家卫生研究院;
关键词
GATED POTASSIUM CHANNEL; AUDITORY BRAIN-STEM; RAT COCHLEAR NUCLEUS; ACTION-POTENTIAL REPOLARIZATION; CEREBELLAR PURKINJE-CELLS; CENTRAL-NERVOUS-SYSTEM; ATAXIA TYPE 13; INFERIOR COLLICULUS NEURONS; MENTAL-RETARDATION PROTEIN; FAST-SPIKING INTERNEURONS;
D O I
10.1152/physrev.00002.2017
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
The intrinsic electrical characteristics of different types of neurons are shaped by the K+ channels they express. From among the more than 70 different K+ channel genes expressed in neurons, Kv3 family voltage-dependent K+ channels are uniquely associated with the ability of certain neurons to fire action potentials and to release neurotransmitter at high rates of up to 1,000 Hz. In general, the four Kv3 channels Kv3.1-Kv3.4 share the property of activating and deactivating rapidly at potentials more positive than other channels. Each Kv3 channel gene can generate multiple protein isoforms, which contribute to the high-frequency firing of neurons such as auditory brain stem neurons, fast-spiking GABAergic interneurons, and Purkinje cells of the cerebellum, and to regulation of neurotransmitter release at the terminals of many neurons. The different Kv3 channels have unique expression patterns and biophysical properties and are regulated in different ways by protein kinases. In this review, we cover the function, localization, and modulation of Kv3 channels and describe how levels and properties of the channels are altered by changes in ongoing neuronal activity. We also cover how the protein-protein interaction of these channels with other proteins affects neuronal functions, and how mutations or abnormal regulation of Kv3 channels are associated with neurological disorders such as ataxias, epilepsies, schizophrenia, and Alzheimer's disease.
引用
收藏
页码:1431 / 1468
页数:38
相关论文
共 265 条
[1]   Phosphorylation and protonation of neighboring MiRP2 sites: function and pathophysiology of MiRP2-Kv3.4 potassium channels in periodic paralysis [J].
Abbott, Geoffrey W. ;
Butler, Margaret H. ;
Goldstein, Steve A. N. .
FASEB JOURNAL, 2006, 20 (02) :293-301
[2]   A superfamily of small potassium channel subunits: form and function of the MinK-related peptides (MiRPs) [J].
Abbott, GW ;
Goldstein, SAN .
QUARTERLY REVIEWS OF BIOPHYSICS, 1998, 31 (04) :357-398
[3]   MiRP2 forms potassium channels in skeletal muscle with Kv3.4 and is associated with periodic paralysis [J].
Abbott, GW ;
Butler, MH ;
Bendahhou, S ;
Dalakas, MC ;
Ptacek, LJ ;
Goldstein, SAN .
CELL, 2001, 104 (02) :217-231
[4]   Opposite actions of brain-derived neurotrophic factor and neurotrophin-3 on firing features and ion channel composition of murine spiral ganglion neurons [J].
Adamson, CL ;
Reid, MA ;
Davis, RL .
JOURNAL OF NEUROSCIENCE, 2002, 22 (04) :1385-1396
[5]   Firing features and potassium channel content of murine spiral ganglion neurons vary with cochlear location [J].
Adamson, CL ;
Reid, MA ;
Mo, ZL ;
Bowne-English, J ;
Davis, RL .
JOURNAL OF COMPARATIVE NEUROLOGY, 2002, 447 (04) :331-350
[6]  
ADRAIN RH, 1970, J PHYSIOL-LONDON, V208, P607
[7]   Interaction of Kv3 potassium channels and resurgent sodium current influences the rate of spontaneous firing of Purkinje neurons [J].
Akemann, W ;
Knopfel, T .
JOURNAL OF NEUROSCIENCE, 2006, 26 (17) :4602-4612
[8]   Sparse But Highly Efficient Kv3 Outpace BKCa Channels in Action Potential Repolarization at Hippocampal Mossy Fiber Boutons [J].
Alle, Henrik ;
Kubota, Hisahiko ;
Geiger, Joerg R. P. .
JOURNAL OF NEUROSCIENCE, 2011, 31 (22) :8001-8012
[9]   Subcellular localization of the voltage-gated potassium channels Kv3.1b and Kv3.3 in the cerebellar dentate nucleus of glutamic acid decarboxylase 67-green fluorescent protein transgenic mice [J].
Alonso-Espinaco, V. ;
Elezgarai, I. ;
Diez-Garcia, J. ;
Puente, N. ;
Knopfel, T. ;
Grandes, P. .
NEUROSCIENCE, 2008, 155 (04) :1059-1069
[10]   Up-regulation of the Kv3.4 potassium channel subunit in early stages of Alzheimer's disease [J].
Angulo, E ;
Noé, V ;
Casadó, V ;
Mallol, J ;
Gomez-Isla, T ;
Lluis, C ;
Ferrer, I ;
Ciudad, CJ ;
Franco, R .
JOURNAL OF NEUROCHEMISTRY, 2004, 91 (03) :547-557