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从一名患有发育性和癫痫性脑病的女孩中生成诱导多能干细胞系(FINi001-A),该女孩携带电压门控钠离子通道 Na1.2 蛋白(由 SCN2A 基因编码)的杂合功能获得性 p.R1882Q 变异。

Generation of an iPSC line (FINi001-A) from a girl with developmental and epileptic encephalopathy due to a heterozygous gain-of-function p.R1882Q variant in the voltage-gated sodium channel Na1.2 protein encoded by the SCN2A gene.

机构信息

The Florey Institute for Neuroscience and Mental Health, University of Melbourne, Melbourne 3010 VIC Australia.

The Florey Institute for Neuroscience and Mental Health, University of Melbourne, Melbourne 3010 VIC Australia; Departments of Medicine and Paediatrics, The University of Melbourne, Austin Health and Royal Children's Hospital, Murdoch Children's Research Institute, Melbourne, VIC, Australia.

出版信息

Stem Cell Res. 2023 Sep;71:103179. doi: 10.1016/j.scr.2023.103179. Epub 2023 Aug 8.

Abstract

A range of epilepsies, including the most severe group of developmental and epileptic encephalopathies (DEEs), are caused by gain-of-function variants in voltage-gated channels. Here we report the generation and characterisation of an iPSC cell line from the fibroblasts of a girl with early infantile DEE carrying heterozygous missense gain-of-function mutation (R1882Q) in Na1.2(SCN2A) protein, using transient transfection with a single mRNA molecule. The established iPSC line displays typical human primed pluripotent stem cell characteristics: typical colony morphology and robust expression of pluripotency-associated marker genes, ability to give rise to derivatives of all three embryonic germ layers, and normal karyotype without any SNP array-detectable copy number variations. We anticipate that this iPSC line will be useful for the development of neuronal hyperactivity-caused human stem cell-based DEE models, advancing both understanding and potential therapy development for this debilitating condition.

摘要

一系列癫痫,包括最严重的发育性和癫痫性脑病(DEE)组,是由电压门控通道的功能获得性变异引起的。在这里,我们报告了使用单个 mRNA 分子瞬时转染,从携带 Na1.2(SCN2A)蛋白杂合错义获得性功能突变(R1882Q)的患有早发性婴儿 DEE 的女孩的成纤维细胞中生成和表征 iPSC 细胞系。所建立的 iPSC 系显示出典型的人类原始多能干细胞特征:典型的集落形态和多能性相关标记基因的强烈表达,能够产生所有三个胚胎生殖层的衍生物,以及正常核型,没有任何 SNP 阵列可检测到的拷贝数变异。我们预计,这种 iPSC 系将有助于开发由神经元过度活跃引起的人类干细胞 DEE 模型,从而推进对这种使人衰弱的疾病的理解和潜在治疗方法的发展。

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