遗传增强
生物
转基因
基因传递
基因
HEK 293细胞
编码区
基因靶向
视网膜变性
载体(分子生物学)
视网膜
病毒载体
遗传学
细胞生物学
DNA
色素性视网膜炎
突变
标记基因
输送系统
基因表达
基因表达调控
病毒学
融合蛋白
分子生物学
癌症研究
计算生物学
同源重组
病毒
作者
Kun-Do Rhee,Poppy Datta,Clairissa Baccam,Seongjin Seo
标识
DOI:10.1177/10430342261426597
摘要
Mutations in the Eyes Shut Homolog ( EYS ) gene are one of the leading causes of autosomal recessive retinitis pigmentosa, a progressive retinal degenerative disease for which no effective treatment currently exists. However, the large size of the EYS coding sequence (∼9.4 kb) exceeds the packaging limit of adeno-associated virus (AAV) vectors, posing a major barrier to gene replacement therapy. To address this challenge, we developed a tripartite AAV vector system that enables delivery and reconstitution of the full-length EYS gene using a Cre-lox-based unidirectional DNA recombination strategy, Uni-directional and Site-specific Transgene Assembly by Recombination (Uni-STAR). The system consists of three AAV constructs carrying discrete EYS segments flanked by engineered, noncompatible lox sites that drive ordered and unidirectional recombination in target cells. We validated this system in vitro by demonstrating successful reconstitution and expression of full-length EYS protein in HEK293T cells. In vivo , subretinal co-injection of the three AAV vectors into mouse eyes led to precise reconstitution and expression of full-length EYS protein in the retina. These findings establish the feasibility of using a tripartite AAV system to deliver the complete EYS gene and provide a foundation for future therapeutic development targeting EYS -associated retinal degenerations.
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