Efficient Dual Cas9 Nickase Correction of a Prevalent Pathogenic LAMB3 Variant for Junctional Epidermolysis Bullosa

Alex du Rand , John Hunt , Daniel Verdon , Ben Buttle , P. Rod Dunbar , Diana Purvis , Vaughan Feisst , Hilary Sheppard
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Abstract

Gene editing facilitated by homology-directed repair represents a promising strategy for precisely correcting pathogenic variants underlying monogenic disorders, including the life-threatening skin blistering condition junctional epidermolysis bullosa (JEB). Frequent reports of unintended off-target genotoxicity associated with conventional Cas9 nuclease editing have increasingly led to the adoption of dual-Cas9 nickases (dual-Cas9n) owing to their improved safety profile. However, rates of precise repair obtained with such strategies remain low. In this study, we establish a dual-Cas9n approach targeting LAMB3, using electroporation to deliver Cas9-nickase ribonucleoproteins and modified single-stranded oligodeoxynucleotide repair templates into primary JEB keratinocytes. Targeting a hotspot pathogenic variant (c.1903C>T, p.R635∗), we report perfect correction efficiencies of up to 54% based on standard next-generation sequencing. Using a high-fidelity Cas9 nuclease, we also report perfect repair of up to 74% when using a small-molecule modulator of DNA repair. Dual-Cas9n–corrected JEB keratinocytes demonstrated restored laminin-332 expression and secretion in vitro, leading to improved cellular adhesion and accurate laminin-332 localization in engineered skin equivalents. This protocol represents a significant improvement in precision gene repair using Cas9 nickases for epidermolysis bullosa, with the potential to be applied to a large cohort of patients harboring this prevalent pathogenic variant.

Abstract Image

结性大疱性表皮松解症常见致病性LAMB3变异的有效双Cas9缺失酶校正
同源定向修复促进的基因编辑代表了一种有希望的策略,可以精确纠正单基因疾病背后的致病变异,包括危及生命的皮肤水泡状况,结性大疱性表皮松解症(JEB)。频繁报道与传统Cas9核酸酶编辑相关的意外脱靶遗传毒性,由于其安全性的提高,越来越多地导致采用双Cas9缺口酶(dual-Cas9n)。然而,这种策略的精确修复率仍然很低。在这项研究中,我们建立了一种靶向LAMB3的双cas9n方法,利用电穿孔将cas9 -镍酶核糖核蛋白和修饰的单链寡脱氧核苷酸修复模板递送到原代JEB角化细胞中。针对一个热点致病变异(c.1903C>;T, p.R635 *),我们报告了基于标准下一代测序的完美校正效率高达54%。使用高保真的Cas9核酸酶,我们还报告了当使用小分子DNA修复调节剂时,完美修复率高达74%。双cas9n校正的JEB角化细胞在体外表现出恢复的laminin-332表达和分泌,从而改善了细胞粘附性,并在工程皮肤等效物中准确定位laminin-332。该方案代表了使用Cas9缺口酶治疗大疱性表皮松解症的精确基因修复的显著改进,具有应用于携带这种普遍致病变异的大量患者的潜力。
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