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ATP1A2 突变与表型谱的功能相关性:从单纯偏瘫性偏头痛到其变异型。

Functional correlation of ATP1A2 mutations with phenotypic spectrum: from pure hemiplegic migraine to its variant forms.

机构信息

Department of Neurology, The First Medical Center of Chinese PLA General Hospital, Fuxing Road 28, Haidian District, 100853, Beijing, China.

School of Medicine, Nankai University, 300071, Tianjin, China.

出版信息

J Headache Pain. 2021 Aug 12;22(1):92. doi: 10.1186/s10194-021-01309-4.

Abstract

BACKGROUND

Mutations in ATP1A2, the gene encoding the α2 subunit of Na/K-ATPase, are the main cause of familial hemiplegic migraine type 2 (FHM2). The clinical presentation of FHM2 with mutations in the same gene varies from pure FHM to severe forms with epilepsy and intellectual disability, but the correlation of these symptoms with different ATP1A2 mutations is still unclear.

METHODS

Ten ATP1A2 missense mutations were selected according to different phenotypes of FHM patients. They caused pure FHM (FHM: R65W, R202Q, R593W, G762S), FHM with epilepsy (FHME: R548C, E825K, R938P), or FHM with epilepsy and intellectual disability (FHMEI: T378N, G615R, D718N). After ouabain resistance and fluorescence modification, plasmids carrying those mutations were transiently transfected into HEK293T and HeLa cells. The biochemical functions were studied including cell survival assays, membrane protein extraction, western blotting, and Na/K-ATPase activity tests. The electrophysiological functions of G762S, R938P, and G615R mutations were investigated in HEK293T cells using whole-cell patch-clamp. Homology modeling was performed to determine the locational distribution of ATP1A2 mutations.

RESULTS

Compared with wild-type pumps, all mutations showed a similar level of protein expression and decreased cell viability in the presence of 1 µM ouabain, and there was no significant difference among the mutant groups. The changes in Na/K-ATPase activity were correlated with the severity of FHM phenotypes. In the presence of 100 µM ouabain, the Na/K-ATPase activity was FHM > FHME > FHMEI. The ouabain-sensitive Na/K-ATPase activity of each mutant was significantly lower than that of the wild-type protein, and there was no significant difference among all mutant groups. Whole-cell voltage-clamp recordings in HEK293T cells showed that the ouabain-sensitive pump currents of G615R were significantly reduced, while those of G762S and R938P were comparable to those of the wild-type strain.

CONCLUSIONS

ATP1A2 mutations cause phenotypes ranging from pure FHM to FHM with epilepsy and intellectual disability due to varying degrees of deficits in biochemical and electrophysiological properties of Na/K-ATPase. Mutations associated with intellectual disability presented with severe impairment of Na/K-ATPase. Whether epilepsy is accompanied, or the type of epilepsy did not seem to affect the degree of impairment of pump function.

摘要

背景

ATP1A2 基因突变是家族性偏瘫性偏头痛 2 型(FHM2)的主要病因,该基因编码钠/钾-ATP 酶的α2 亚基。具有相同基因突变的 FHM2 的临床表现从单纯 FHM 到伴有癫痫和智力障碍的严重形式各不相同,但这些症状与不同 ATP1A2 突变的相关性尚不清楚。

方法

根据 FHM 患者不同的表型选择了 10 种 ATP1A2 错义突变。它们导致单纯 FHM(FHM:R65W、R202Q、R593W、G762S)、伴有癫痫的 FHM(FHME:R548C、E825K、R938P)或伴有癫痫和智力障碍的 FHM(FHMEI:T378N、G615R、D718N)。经过哇巴因抗性和荧光修饰后,将携带这些突变的质粒瞬时转染到 HEK293T 和 HeLa 细胞中。通过细胞存活试验、膜蛋白提取、Western blot 和 Na/K-ATPase 活性试验研究生化功能。在 HEK293T 细胞中使用全细胞膜片钳技术研究 G762S、R938P 和 G615R 突变的电生理功能。通过同源建模确定 ATP1A2 突变的位置分布。

结果

与野生型泵相比,所有突变在 1µM 哇巴因存在的情况下均表现出相似水平的蛋白表达和细胞活力降低,且突变组之间无显著差异。Na/K-ATPase 活性的变化与 FHM 表型的严重程度相关。在 100µM 哇巴因存在的情况下,Na/K-ATPase 活性为 FHM>FHME>FHMEI。各突变体的哇巴因敏感 Na/K-ATPase 活性均显著低于野生型蛋白,且各突变体组之间无显著差异。HEK293T 细胞全细胞膜片钳记录显示,G615R 的哇巴因敏感泵电流明显降低,而 G762S 和 R938P 的泵电流与野生型相似。

结论

由于 Na/K-ATPase 的生化和电生理特性不同程度的缺陷,ATP1A2 突变导致从单纯 FHM 到伴有癫痫和智力障碍的 FHM 等表型。与智力障碍相关的突变表现出严重的 Na/K-ATPase 缺陷。是否伴有癫痫发作或癫痫发作类型似乎并不影响泵功能的损伤程度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/962b/8359390/9b4e446b3d58/10194_2021_1309_Fig1_HTML.jpg

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