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dCas9-Based Scn1a Gene Activation Restores Inhibitory Interneuron Excitability and Attenuates Seizures in Dravet Syndrome Mice

机译:基于DCAS9的SCN1A基因激活恢复抑制性型肠炎和衰减在Dravet综合征小鼠中的癫痫发作

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摘要

Dravet syndrome (DS) is a severe epileptic encephalopathy caused mainly by heterozygous loss-of-function mutations of the SCN1A gene, indicating haploinsufficiency as the pathogenic mechanism. Here we tested whether catalytically dead Cas9 (dCas9)-mediated Scn1a gene activation can rescue Scn1a haploinsufficiency in a mouse DS model and restore physiological levels of its gene product, the Nav1.1 voltage-gated sodium channel. We screened single guide RNAs (sgRNAs) for their ability to stimulate Scn1a transcription in association with the dCas9 activation system. We identified a specific sgRNA that increases Scn1a gene expression levels in cell lines and primary neurons with high specificity. Nav1.1 protein levels were augmented, as was the ability of wild-type immature GABAergic interneurons to fire action potentials. A similar enhancement of Scn1a transcription was achieved in mature DS interneurons, rescuing their ability to fire. To test the therapeutic potential of this approach, we delivered the Scn1a-dCas9 activation system to DS pups using adeno-associated viruses. Parvalbumin interneurons recovered their firing ability, and febrile seizures were significantly attenuated. Our results pave the way for exploiting dCas9-based gene activation as an effective and targeted approach to DS and other disorders resulting from altered gene dosage.
机译:Dravet综合征(DS)是一种严重的癫痫脑病,主要是SCN1A基因的杂合功能突变,表明单倍全作为病原机制。在这里,我们测试了催化死亡Cas9(DCAS9)介导的SCN1A基因活化是否可以抢救在小鼠DS模型中的SCN1A卵泡水能,并恢复其基因产物的生理水平,Nav1.1电压门控钠通道。我们筛选了单引导RNA(SGRNA)以刺激与DCAS9激活系统相关联的SCN1A转录的能力。我们鉴定了一种特异的SGRNA,其增加了细胞系和初级神经元的SCN1A基因表达水平,具有高特异性。 Nav1.1蛋白质水平增加,野生型未成熟的胃肠杆菌潜力的能力是野生型未成熟的胃肠杆菌潜力的能力。在成熟的DS Interneurons中实现了SCN1A转录的类似提高,拯救了他们的火力的能力。为了测试这种方法的治疗潜力,我们使用腺相关病毒将SCN1A-DCAS9激活系统交付给DS PUP。 Parvalbumin Interneurons恢复了他们的射击能力,发热癫痫发作明显减弱。我们的结果为利用基于DCAS9的基因激活作为一种有效且有针对性的DS和其他疾病的方法来铺平道路,该方法是由改变的基因剂量产生的障碍。

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