首页> 外文期刊>Epilepsia: Journal of the International League against Epilepsy >Impaired NaV1.2 function and reduced cell surface expression in benign familial neonatal-infantile seizures.
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Impaired NaV1.2 function and reduced cell surface expression in benign familial neonatal-infantile seizures.

机译:在良性家族性新生儿-婴儿癫痫发作中,NaV1.2功能受损,细胞表面表达降低。

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SUMMARY PURPOSE: Mutations in SCN2A, the gene encoding the brain voltage-gated sodium channel alpha-subunit Na(V)1.2, are associated with inherited epilepsies including benign familial neonatal-infantile seizures (BFNIS). Functional characterization of three BFNIS mutations was performed to identify defects in channel function that underlie this disease. METHODS: We examined three BFNIS mutations (R1319Q, L1330F, and L1563V) using whole-cell patch-clamp recording of heterologously expressed human Na(V)1.2. Membrane biotinylation was employed to examine the cell surface protein expression of the four Na(V)1.2 alleles. RESULTS: R1319Q displayed mixed effects on activation and fast inactivation gating, consistent with a net loss of channel function. L1563V exhibited impaired fast inactivation predicting a net gain of channel function. The L1330F mutation significantly decreased overall channel availability during repetitive stimulation. Patch-clamp analysis also revealed that cells expressing BFNIS mutants exhibited lower levels of sodium current compared to wild type (WT) Na(V)1.2. Biochemical experiments demonstrated that all three BFNIS mutations exhibited a significant reduction in cell surface expression compared to WT. DISCUSSION: Our findings indicate that BFNIS is associated with a range of biophysical defects accompanied by reduced levels of channel protein at the plasma membrane.
机译:目的:SCN2A中的突变是编码脑电压门控性钠通道α-亚基Na(V)1.2的基因,与遗传性癫痫有关,包括良性家族性新生儿小儿惊厥(BFNIS)。进行了三个BFNIS突变的功能表征,以鉴定该疾病基础的通道功能缺陷。方法:我们使用异源表达的人Na(V)1.2的全细胞膜片钳记录,检查了三个BFNIS突变(R1319Q,L1330F和L1563V)。膜生物素化被用来检查四个Na(V)1.2等位基因的细胞表面蛋白表达。结果:R1319Q对激活和快速灭活门控显示出混合的影响,与通道功能的净损失一致。 L1563V的快速失活受损,预示着通道功能的净增益。 L1330F突变在重复刺激过程中显着降低了总体通道可用性。膜片钳分析还显示,与野生型(WT)Na(V)1.2相比,表达BFNIS突变体的细胞表现出较低水平的钠电流。生化实验表明,与WT相比,所有三个BFNIS突变均表现出细胞表面表达的显着降低。讨论:我们的发现表明BFNIS与一系列生物物理缺陷相关,并伴随着质膜通道蛋白水平的降低。

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