Dravet综合征
癫痫
表型
医学
体内
生物
HEK 293细胞
癌症研究
胚胎干细胞
蛋白质亚单位
突变
生物信息学
神经科学
钠通道
肾
神经发育障碍
条件基因敲除
婴儿猝死综合征
入射(几何)
离体
药理学
DNA
神经元
作者
Andrew Nelson,Sophie F Hill,Matthew Simon,Jérôme Clatot,Holt A. Sakai,Jun Xie,Alexander A. Sousa,Meirui An,Guangping Gao,Cathleen Lutz,Ethan M. Goldberg,David R. Liu
标识
DOI:10.1126/scitranslmed.adx5999
摘要
Dravet syndrome (DS) is a severe neurodevelopmental disorder characterized by drug-resistant epilepsy, temperature-sensitive seizures, cognitive impairment, and a high incidence of sudden unexpected death in epilepsy (SUDEP). DS is caused by loss-of-function variants in SCN1A , which encodes the α subunit of the voltage-gated sodium channel (Na v 1.1). Current approved treatments manage symptoms of DS but do not correct the root cause of the disease. Here, we describe the use of an adenine base editor (ABE) to directly correct SCN1A R613X , a recurrent variant found in patients with DS. We identified ABE strategies to efficiently correct R613X in engineered homozygous SCN1A R613X human embryonic kidney 293T and mouse Neuro-2a cells (72 and 92% correction efficiencies, respectively). We then used a dual–adeno-associated virus serotype 9 (AAV9) approach to deliver an optimized ABE system to Scn1a R613X/+ mice, which recapitulate several key DS pathologies. AAV9-ABE treatment of Scn1a R613X/+ neonates resulted in efficient DNA and mRNA editing (59 and 97%, respectively, in bulk neocortices), restoring parvalbumin-expressing inhibitory neuron excitability and sodium current to wild-type levels. This ameliorated both spontaneous and temperature-induced seizures and led to a 3.3-fold improvement in 45-day survival over vehicle-treated mice (ABE treated, 90%; and vehicle treated, 27%). Last, ABE treatment in 12-day-old mice resulted in a 3.0-fold improvement in 60-day survival over vehicle-treated mice (ABE treated, 82%; and vehicle treated, 27%). In conclusion, these data validate a strategy to correct SCN1A variants with ABE and highlight the potential of precision genome editing treatments for the treatment of DS and possibly other neurodevelopmental disorders.
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