首页> 外文期刊>The Journal of Physiology >Characterization of a new sodium channel mutation at arginine 1448 associated with moderate Paramyotonia congenita in humans.
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Characterization of a new sodium channel mutation at arginine 1448 associated with moderate Paramyotonia congenita in humans.

机译:精氨酸1448与人类中度副肌强直相关的新钠通道突变的特征。

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1. Paramyotonia congenita is a temperature-sensitive skeletal muscle disorder caused by missense mutations that occur in the adult skeletal muscle voltage-gated sodium channel. We report here the identification of a new genetic mutation in a family with the paramyotonia congenita phenotype. 2. Single-strand conformation polymorphism analysis and DNA sequencing showed that the defect was linked to a single nucleotide substitution causing an amino acid change from an arginine to a serine at position 1448 in the human sodium channel alpha-subunit. 3. Expression of the altered protein in human embryonic kidney (HEK) 293 cells revealed several defects in channel function: (i) the rate of fast inactivation was slower in the mutant channel compared with wild-type, (ii) steady-state fast inactivation was shifted towards hyperpolarizing potentials, (iii) the R1448S channels deactivated much more slowly, and (iv) the mutant channels recovered from the fast inactivated state more rapidly. 4. By contrast, the activation curve, steady-state slow inactivation and the rate of onset and recovery from slow inactivation were not altered by the R1448S mutation. 5. These data show that the defects observed in the sodium channel function could well explain the onset of the paramyotonia congenita in this family and emphasize the role of segment S4 of domain IV in sodium channel inactivation.
机译:1.先天性肌强直是一种对温度敏感的骨骼肌疾病,由成人骨骼肌电压门控钠通道中发生的错义突变引起。我们在这里报告了一种新的遗传突变的鉴定,该家族具有先天性副肌强直表型。 2.单链构象多态性分析和DNA测序表明,该缺陷与单核苷酸取代有关,引起人钠通道α-亚基的1448位氨基酸从精氨酸变为丝氨酸。 3.在人类胚胎肾脏(HEK)293细胞中表达的改变的蛋白表明,通道功能存在一些缺陷:(i)与野生型相比,突变通道中快速失活的速度较慢;(ii)稳态快速失活被转移到超极化电位,(iii)R1448S通道失活的速度要慢得多,(iv)突变通道从快速失活状态恢复得更快。 4.相比之下,R1448S突变并没有改变激活曲线,稳态缓慢失活以及缓慢失活的发作和恢复速率。 5.这些数据表明,在钠通道功能中观察到的缺陷可以很好地解释该家族先天性副肌强直的发作,并强调域IV的S4段在钠通道失活中的作用。

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