Wagner S, Lerche H, Mitrovic N, Heine R, George A L, Lehmann-Horn F
Department of Applied Physiology, University of Ulm, Germany.
Neurology. 1997 Oct;49(4):1018-25. doi: 10.1212/wnl.49.4.1018.
A point mutation A4078G predicting the amino acid exchange Met1360Val in segment IV/S1 of the human muscle sodium channel alpha-subunit was identified in a family presenting features of hyperkalemic periodic paralysis and paramyotonia congenita with sex-related modification of expression. In this family, only one male member is clinically affected, presenting episodes of flaccid weakness as well as paradoxical myotonia and cold-induced weakness. Three female family members who have the same mutation show only myotonic bursts on EMG. We studied the functional defect caused by this mutation by investigating recombinant wild type (WT) and mutant sodium channels expressed in a mammalian cell line (HEK293) using the patch-clamp technique. With mutant channels, the decay of the sodium currents was two times slower than with WT, the steady-state inactivation curve was shifted by -13 mV, and recovery from inactivation was 1.5 times faster. High extracellular potassium (9 mM) did not affect channel gating. Single-channel measurements revealed prolonged mean open times and an increased number of channel reopenings. The results are remarkable with respect to the lack of complete penetrance usually seen with sodium channelopathies and the site of mutation that was formerly not thought to be involved in channel inactivation.
在一个呈现高钾性周期性麻痹和先天性副肌强直特征且具有性别相关表达修饰的家族中,鉴定出一种点突变A4078G,该突变预测人类肌肉钠通道α亚基IV/S1段中的氨基酸交换Met1360Val。在这个家族中,只有一名男性成员有临床症状,表现为弛缓性肌无力发作以及反常性肌强直和冷诱导性肌无力。三名具有相同突变的女性家族成员在肌电图上仅显示肌强直爆发。我们使用膜片钳技术,通过研究在哺乳动物细胞系(HEK293)中表达的重组野生型(WT)和突变型钠通道,研究了这种突变引起的功能缺陷。对于突变型通道,钠电流的衰减比野生型慢两倍,稳态失活曲线偏移了-13 mV,失活后的恢复速度快1.5倍。高细胞外钾(9 mM)不影响通道门控。单通道测量显示平均开放时间延长且通道重新开放的次数增加。这些结果在通常与钠通道病相关的完全外显率缺乏以及以前认为不参与通道失活的突变位点方面值得关注。