色素性视网膜炎
清脆的
视网膜变性
Cas9
基因敲除
生物
亮氨酸拉链
变性(医学)
视网膜
细胞生物学
基因
基因组编辑
神经科学
遗传学
视网膜
医学
病理
生物化学
肽序列
作者
Wenhan Yu,Suddhasil Mookherjee,Vijender Chaitankar,Suja Hiriyanna,Jung-Woong Kim,Matthew Brooks,Yasaman Ataeijannati,Xun Sun,Lijin Dong,Tiansen Li,Anand Swaroop,Zhijian Wu
摘要
In retinitis pigmentosa, loss of cone photoreceptors leads to blindness, and preservation of cone function is a major therapeutic goal. However, cone loss is thought to occur as a secondary event resulting from degeneration of rod photoreceptors. Here we report a genome editing approach in which adeno-associated virus (AAV)-mediated CRISPR/Cas9 delivery to postmitotic photoreceptors is used to target the Nrl gene, encoding for Neural retina-specific leucine zipper protein, a rod fate determinant during photoreceptor development. Following Nrl disruption, rods gain partial features of cones and present with improved survival in the presence of mutations in rod-specific genes, consequently preventing secondary cone degeneration. In three different mouse models of retinal degeneration, the treatment substantially improves rod survival and preserves cone function. Our data suggest that CRISPR/Cas9-mediated NRL disruption in rods may be a promising treatment option for patients with retinitis pigmentosa.
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