离子通道相关基因的非同义变异是癫痫的危险因素

Burcu BİTERGE SÜT, Hayriye Soytürk
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引用次数: 1

摘要

反复发作是癫痫的特征,通常是由于电活动增加引起的。配体门控离子通道通过调节离子运输调节和维持神经元膜电位,被认为是癫痫的关键因素。因此,本研究旨在利用计算机方法识别被认为是癫痫危险因素的离子通道相关的单核苷酸变异,并确定其对致病性、蛋白质稳定性和结构的潜在影响。为此,从ClinVar中检索了与癫痫相关的离子通道相关突变。分别用FATHMM-XF和MUpro预测致病性评分和蛋白质稳定性。通过HOPE服务器确定结构变化。我们发现了17个与癫痫相关的错义突变,其中11个在离子通道相关基因中。p.E177A、p.D219N、p.A322D、p.R577Q、p.E282K、p.V831M和p.R1072C的非同义替换被确定为致病基因,而所有突变均导致整体蛋白稳定性不同程度的降低。此外,所有变异都被标注有疾病风险,不同侧链的引入导致了大小、电荷和疏水性的差异,以及与其他蛋白质和配体的接触。总之,离子通道相关基因的突变先前在一些遗传关联研究中被发现,但它们的功能注释没有得到解决。本研究结果为离子通道相关基因突变的致病作用提供了功能上的解释,这些突变被认为是癫痫的危险因素。
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Nonsynonymous variations of ion channel-related genes as risk factors in epilepsy
Recurrent seizures are characteristic to epilepsy, which often arise due to increased electrical activity. Ligand-gated ion channels are considered as key factors in epilepsy as they regulate and maintain neuronal membrane potential via regulating ion transportation. Therefore, this study aims to identify ion channel-related single nucleotide variations that are considered as risk factors in epilepsy and determine their potential effects on pathogenicity, protein stability and structure using in silico methods. For this purpose, ion channel-related mutations linked with epilepsy were retrieved from ClinVar. Pathogenicity scores and protein stability were predicted using FATHMM-XF and MUpro, respectively. Structural alterations were determined via HOPE server. We identified 17 epilepsy-related missense mutations, 11 of which were in ion channel-related genes. Nonsynonymous substitutions of p.E177A, p.D219N, p.A322D, p.R577Q, p.E282K, p.V831M and p.R1072C were determined as pathogenic, while all mutations resulted in varying degrees of decrease in overall protein stability. Furthermore, all variants were annotated with risk for disease and introduction of distinct side chains caused differences in size, charge and hydrophobicity, as well as contact with other proteins and ligands. In conclusion, mutations in ion channel-related genes were previously identified in several genetic association studies while their functional annotations were not addressed. The results of this study provide a functional explanation to the pathogenic effects of ion channel-related gene mutations that are considered as risk factors in epilepsy.
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