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与严重致残性癫痫发作和神经发育迟缓相关的钾通道Kir4.1()和SLACK()中的致死性双基因变异。

Lethal digenic mutations in the K channels Kir4.1 () and SLACK () associated with severe-disabling seizures and neurodevelopmental delay.

作者信息

Hasan Sonia, Balobaid Ameera, Grottesi Alessandro, Dabbagh Omar, Cenciarini Marta, Rawashdeh Rifaat, Al-Sagheir Afaf, Bove Cecilia, Macchioni Lara, Pessia Mauro, Al-Owain Mohammed, D'Adamo Maria Cristina

机构信息

Department of Physiology, Faculty of Medicine, Kuwait University, Safat, Kuwait.

Department of Medical Genetics, King Faisal Specialist Hospital and Research Centre, Riyadh, Saudi Arabia.

出版信息

J Neurophysiol. 2017 Oct 1;118(4):2402-2411. doi: 10.1152/jn.00284.2017. Epub 2017 Jul 26.

Abstract

A 2-yr-old boy presented profound developmental delay, failure to thrive, ataxia, hypotonia, and tonic-clonic seizures that caused the death of the patient. Targeted and whole exome sequencing revealed two heterozygous missense variants: a novel mutation in the gene that encodes for the inward-rectifying K channel Kir4.1 and another previously characterized mutation in that encodes for the Na-activated K channel known as Slo2.2 or SLACK. The objectives of this study were to perform the clinical and genetic characterization of the proband and his family and to examine the functional consequence of the Kir4.1 mutation. The mutant and wild-type constructs were generated and heterologously expressed in oocytes, and whole cell K currents were measured using the two-electrode voltage-clamp technique. The mutation c.652C>T resulted in a p.L218F substitution at a highly conserved residue site. Wild-type expression yielded robust Kir current, whereas currents from oocytes expressing the mutation were reduced, remarkably. Western Blot analysis revealed reduced protein expression by the mutation. Kir5.1 subunits display selective heteromultimerization with Kir4.1 constituting channels with unique kinetics. The effect of the mutation on Kir4.1/5.1 channel activity was twofold: a reduction in current amplitudes and an increase in the pH-dependent inhibition. We thus report a novel loss-of-function mutation in Kir4.1 found in a patient with a coexisting mutation in SLACK channels that results in a fatal disease. We present and characterize a novel mutation in Unlike previously reported EAST/SeSAME patients, our patient was heterozygous, and contrary to previous studies, mimicking the heterozygous state by coexpression resulted in loss of channel function. We report in the same patient co-occurrence of a mutation resulting in a more severe phenotype. This study provides new insights into the phenotypic spectrum and to the genotype-phenotype correlations associated with EAST/SeSAME and MMFSI.

摘要

一名2岁男孩出现严重发育迟缓、生长发育不良、共济失调、肌张力减退和强直阵挛性癫痫发作,最终导致患者死亡。靶向和全外显子组测序发现两个杂合错义变异:一个是编码内向整流钾通道Kir4.1的基因中的新突变,另一个是先前已鉴定的编码钠激活钾通道Slo2.2或SLACK的基因中的突变。本研究的目的是对先证者及其家族进行临床和基因特征分析,并研究Kir4.1突变的功能后果。构建了突变型和野生型构建体,并在卵母细胞中进行异源表达,使用双电极电压钳技术测量全细胞钾电流。突变c.652C>T导致高度保守残基位点处的p.L218F替代。野生型表达产生强大的Kir电流,而表达该突变的卵母细胞的电流则显著降低。蛋白质印迹分析显示该突变导致蛋白质表达减少。Kir5.1亚基与Kir4.1显示选择性异源多聚化,构成具有独特动力学的通道。该突变对Kir4.1/5.1通道活性的影响是双重的:电流幅度降低以及pH依赖性抑制增加。因此,我们报告了在一名同时存在SLACK通道突变的患者中发现的Kir4.1新功能丧失突变,该突变导致一种致命疾病。我们展示并鉴定了一个新的突变。与先前报道的EAST/SeSAME患者不同,我们的患者是杂合子,并且与先前的研究相反,通过共表达模拟杂合状态导致通道功能丧失。我们报告了同一患者中同时出现导致更严重表型的突变。这项研究为与EAST/SeSAME和MMFSI相关的表型谱以及基因型-表型相关性提供了新的见解。

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