体内钠通道结构/功能研究:在IVS4细胞外表面,Arg1448连续改变为Cys、His和Pro。

J Wang, V Dubowitz, F Lehmann-Horn, K Ricker, L Ptacek, E P Hoffman
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引用次数: 0

摘要

通过克隆离子通道亚基在异源细胞环境中的表达,研究了离子通道的结构/功能关系。通过这种方法已收集到相当多的信息。然而,它在体内的作用是突出的:异体系统与体内功能正常的神经和肌肉之间存在许多差异,任何一种差异都可能影响通道功能。这些变量的例子包括通道蛋白的糖基化状态,肌肉特异性膜或细胞骨架蛋白的关联,以及作为波动细胞生理学功能的细胞内和细胞外液体环境的波动。人类和马遗传疾病中电压敏感肌钠通道α亚基单氨基酸变化的鉴定为研究离子通道的结构/功能关系提供了新的途径。重要的是,可以在体内系统中研究环境和异常通道之间的相互作用。在这里,我们报告了一种新的人类钠通道突变(R1448P)的鉴定,该突变可导致严重类型的冷敏感性肌强直和虚弱。将该患者与一系列具有R1448C和R1448H突变的其他患者进行比较。我们表明,氨基酸变化的严重程度与临床症状的严重程度相关。这些数据表明,尽管缺乏异源表达数据表明该区域的功能重要性,但细胞外表面IV S4区域的不同氨基酸替换对通道功能很重要。在R1443处脯氨酸取代的极端冷敏感性表明低温可能会影响通道的结构完整性,脯氨酸可能会破坏正常结构的稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In vivo sodium channel structure/function studies: consecutive Arg1448 changes to Cys, His, and Pro at the extracellular surface of IVS4.

Structure/function relationships in ion channels have been intensively studied through expression of cloned channel subunits in heterologous cellular environments. Considerable information has been gleaned via this approach. However, it is prominent role in vivo: there are many differences between heterologous systems and functioning nerves and muscle in vivo, any one of which is likely to affect channel function. Examples of such variables include glycosylation status of the channel protein, association of muscle-specific membrane or cytoskeletal proteins, and fluctuations of intracellular and extracellular fluid milieu as a function of fluctuating cellular physiology. The identification of single amino acid changes in the voltage-sensitive muscle sodium channel alpha subunit in human and horse genetic disease has permitted a new approach to the study of structure/function relationships in ion channels. Importantly, the interactions between the environment and the abnormal channel can be studied in this in vivo system. Here we report the identification of a novel human sodium channel mutation (R1448P), which causes a severe type of cold-sensitive myotonia and weakness. This patient is compared to a series of other patients having R1448C, and R1448H mutations. We show that the severity of the amino acid change correlates with the severity of clinical symptoms. This data shows that different amino acid replacements in the extracellular surface of domain IV S4 are important for channel function, despite the paucity of heterologous expression data suggesting functional importance of this region. The extreme cold sensitivity of the proline substitution at R1443 suggests that cold temperatures may affect the structural integrity of the channel, and that proline may destabilize the normal structure.

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