Human sodium channel gating defects caused by missense mutations in S6 segments associated with myotonia: S804F and V1293I

被引:44
作者
Green, DS
George, AL
Cannon, SC [1 ]
机构
[1] Harvard Univ, Sch Med, Dept Neurobiol, Boston, MA 02115 USA
[2] Vanderbilt Univ, Med Ctr, Dept Med, Nashville, TN 37232 USA
[3] Vanderbilt Univ, Med Ctr, Dept Pharmacol, Nashville, TN 37232 USA
[4] Massachusetts Gen Hosp, Dept Neurol, Boston, MA 02114 USA
来源
JOURNAL OF PHYSIOLOGY-LONDON | 1998年 / 510卷 / 03期
关键词
D O I
10.1111/j.1469-7793.1998.685bj.x
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
1. Missense mutations in the alpha-subunit of the human skeletal muscle sodium channel (hSkM1) have been detected In some heritable forms or myotonia. By recording Na+ currents from cells transfected with cDNA encoding either wild-type or mutant hSkM1, we characterized the functional consequences of two myotonia-associated mutations that lie at the cytoplasmic end of the sixth transmembrane segment in domain II (S804F) or domain III (V1293I). 2. Both mutations caused modest, but unequivocal, alterations in the voltage-dependent gating behaviour of hSkM1. For S804F, the abnormalities were limited to fast inactivation: the persistent Na+ cnrrent at the end of a 50 ms depolarization was increased 3-fold, the rate of inactivation from the open state was slowed 2-fold, and the voltage dependence of fast inactivation (h(infinity)) was shifted by +3 mV. V1293I also disrupted fast inactivation, as evidenced by a 3-fold faster rate of recovery at hyperpolarized potentials (less than or equal to -70 mV). Activation was altered as well for V1293I: the voltage dependence was shifted by -6 mV (hyperpolarized). 3. Slow inactivation was not altered by S804F or V1293I. 4. We conclude that S804F and V1293I are not benign polymorphisms. Either mutation causes detectable alterations in channel gating and, in model simulations, the magnitude of the defects is sufficient to produce runs of myotonic discharges.
引用
收藏
页码:685 / 694
页数:10
相关论文
共 25 条
[1]   RECONSTRUCTION OF ACTION POTENTIAL OF FROG SARTORIUS MUSCLE [J].
ADRIAN, RH ;
PEACHEY, LD .
JOURNAL OF PHYSIOLOGY-LONDON, 1973, 235 (01) :103-131
[2]   A REINTERPRETATION OF MAMMALIAN SODIUM-CHANNEL GATING BASED ON SINGLE CHANNEL RECORDING [J].
ALDRICH, RW ;
COREY, DP ;
STEVENS, CF .
NATURE, 1983, 306 (5942) :436-441
[3]   A SODIUM-CHANNEL DEFECT IN HYPERKALEMIC PERIODIC PARALYSIS - POTASSIUM-INDUCED FAILURE OF INACTIVATION [J].
CANNON, SC ;
BROWN, RH ;
COREY, DP .
NEURON, 1991, 6 (04) :619-626
[4]   FUNCTIONAL EXPRESSION OF SODIUM-CHANNEL MUTATIONS IDENTIFIED IN FAMILIES WITH PERIODIC PARALYSIS [J].
CANNON, SC ;
STRITTMATTER, SM .
NEURON, 1993, 10 (02) :317-326
[5]   From mutation to myotonia in sodium channel disorders [J].
Cannon, SC .
NEUROMUSCULAR DISORDERS, 1997, 7 (04) :241-249
[6]   THEORETICAL RECONSTRUCTION OF MYOTONIA AND PARALYSIS CAUSED BY INCOMPLETE INACTIVATION OF SODIUM-CHANNELS [J].
CANNON, SC ;
BROWN, RH ;
COREY, DP .
BIOPHYSICAL JOURNAL, 1993, 65 (01) :270-288
[7]   SODIUM-CHANNEL MUTATIONS IN PARAMYOTONIA-CONGENITA UNCOUPLE INACTIVATION FROM ACTIVATION [J].
CHAHINE, M ;
GEORGE, AL ;
ZHOU, M ;
JI, S ;
SUN, WJ ;
BARCHI, RL ;
HORN, R .
NEURON, 1994, 12 (02) :281-294
[8]   FUNCTIONAL CONSEQUENCES OF A NA+ CHANNEL MUTATION CAUSING HYPERKALEMIC PERIODIC PARALYSIS [J].
CUMMINS, TR ;
ZHOU, JY ;
SIGWORTH, FJ ;
UKOMADU, C ;
STEPHAN, M ;
PTACEK, LJ ;
AGNEW, WS .
NEURON, 1993, 10 (04) :667-678
[9]   Impaired slow inactivation in mutant sodium channels [J].
Cummins, TR ;
Sigworth, FJ .
BIOPHYSICAL JOURNAL, 1996, 71 (01) :227-236
[10]   PRIMARY STRUCTURE OF THE ADULT HUMAN SKELETAL-MUSCLE VOLTAGE-DEPENDENT SODIUM-CHANNEL [J].
GEORGE, AL ;
KOMISAROF, J ;
KALLEN, RG ;
BARCHI, RL .
ANNALS OF NEUROLOGY, 1992, 31 (02) :131-137