The contribution of resurgent sodium current to high-frequency firing in Purkinje neurons: An experimental and modeling study

被引:246
作者
Khaliq, ZM
Gouwens, NW
Raman, IM
机构
[1] Northwestern Univ, Dept Neurobiol & Physiol, Evanston, IL 60208 USA
[2] Northwestern Univ, Inst Neurosci, Evanston, IL 60208 USA
[3] Northwestern Univ, Integrated Sci Program, Evanston, IL 60208 USA
关键词
cerebellum; Scn8a; Na(V)1.6; med; spontaneous firing; K channel; Na channel; NEURON simulation; ataxia;
D O I
10.1523/jneurosci.23-12-04899.2003
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Purkinje neurons generate high-frequency action potentials and express voltage-gated, tetrodotoxin-sensitive sodium channels with distinctive kinetics. Their sodium currents activate and inactivate during depolarization, as well as reactivate during repolarization from positive potentials, producing a "resurgent" current. This reopening of channels not only generates inward current after each action potential, but also permits rapid recovery from inactivation, leading to the hypothesis that resurgent current may facilitate high-frequency firing. Mutant med mice are ataxic and lack expression of the Scn8a gene, which encodes the Na(V)1.6 protein. In med Purkinje cells, transient sodium current inactivates more rapidly than in wild-type cells, and resurgent current is nearly abolished. To investigate how Na(V)1.6-specific kinetics influence firing patterns, we recorded action potentials of Purkinje neurons isolated from wild-type and med mice. We also recorded non-sodium currents from Purkinje cells of both genotypes to test whether the Scn8a mutation induced changes in other ion channels. Last, we modeled action potential firing by simulating eight currents directly recorded from Purkinje cells in both wild-type and med mice. Regular, high-frequency firing was slowed in med Purkinje neurons. In addition to disrupted sodium currents, med neurons had small but significant changes in potassium and leak currents. Simulations indicated that these modified non-sodium currents could not account for the reduced excitability of med cells but instead slightly facilitated spiking. The loss of Na(V)1.6-specific kinetics, however, slowed simulated spontaneous activity. Together, the data suggest that across a range of conditions, sodium currents with a resurgent component promote and accelerate firing.
引用
收藏
页码:4899 / 4912
页数:14
相关论文
共 60 条
[1]   Adaptive regulation of neuronal excitability by a voltage-independent potassium conductance [J].
Brickley, SG ;
Revilla, V ;
Cull-Candy, SG ;
Wisden, W ;
Farrant, M .
NATURE, 2001, 409 (6816) :88-92
[2]   MUTATION OF A NEW SODIUM-CHANNEL GENE, SCN8A, IN THE MOUSE MUTANT MOTOR END-PLATE DISEASE [J].
BURGESS, DL ;
KOHRMAN, DC ;
GALT, J ;
PLUMMER, NW ;
JONES, JM ;
SPEAR, B ;
MEISLER, MH .
NATURE GENETICS, 1995, 10 (04) :461-465
[3]   Sodium channel Nav1.6 is localized at nodes of Ranvier, dendrites, and synapses [J].
Caldwell, JH ;
Schaller, KL ;
Lasher, RS ;
Peles, E ;
Levinson, SR .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (10) :5616-5620
[4]   Developmental regulation of small-conductance Ca2+-activated K+ channel expression and function in rat Purkinje neurons [J].
Cingolani, LA ;
Gymnopoulos, M ;
Boccaccio, A ;
Stocker, M ;
Pedarzani, P .
JOURNAL OF NEUROSCIENCE, 2002, 22 (11) :4456-4467
[5]   Theta-frequency bursting and resonance in cerebellar granule cells:: Experimental evidence and modeling of a slow K+-dependent mechanism [J].
D'Angelo, E ;
Nieus, T ;
Maffei, A ;
Armano, S ;
Rossi, P ;
Taglietti, V ;
Fontana, A ;
Naldi, G .
JOURNAL OF NEUROSCIENCE, 2001, 21 (03) :759-770
[6]   AN ACTIVE MEMBRANE MODEL OF THE CEREBELLAR PURKINJE-CELL .1. SIMULATION OF CURRENT CLAMPS IN SLICE [J].
DESCHUTTER, E ;
BOWER, JM .
JOURNAL OF NEUROPHYSIOLOGY, 1994, 71 (01) :375-400
[8]   ELECTROPHYSIOLOGICAL STUDIES OF NEUROMUSCULAR TRANSMISSION IN HEREDITARY MOTOR-END-PLATE-DISEASE OF MOUSE [J].
DUCHEN, LW ;
STEFANI, E .
JOURNAL OF PHYSIOLOGY-LONDON, 1971, 212 (02) :535-&
[9]   Distinct contributions of small and large conductance Ca2+-activated K+ channels to rat Purkinje neuron function [J].
Edgerton, JR ;
Reinhart, PH .
JOURNAL OF PHYSIOLOGY-LONDON, 2003, 548 (01) :53-69
[10]   Sodium channel alpha-subunit mRNAs I, II, III, NaG, Na6 and hNE (PN1): Different expression patterns in developing rat nervous system [J].
Felts, PA ;
Yokoyama, S ;
DibHajj, S ;
Black, JA ;
Waxman, SG .
MOLECULAR BRAIN RESEARCH, 1997, 45 (01) :71-82