Ocular Gene Therapy Core, National Eye Institute, NIH, Bethesda, MD 20892, USA.
Neurobiology-Neurodegeneration and Repair Laboratory, National Eye Institute, NIH, Bethesda, MD 20892, USA.
Cell Rep. 2018 Oct 16;25(3):611-623.e6. doi: 10.1016/j.celrep.2018.09.043.
Mutations in CEP290 cause ciliogenesis defects, leading to diverse clinical phenotypes, including Leber congenital amaurosis (LCA). Gene therapy for CEP290-associated diseases is hindered by the 7.4 kb CEP290 coding sequence, which is difficult to deliver in vivo. The multi-domain structure of the CEP290 protein suggests that a specific CEP290 domain may complement disease phenotypes. Thus, we constructed AAV vectors with overlapping CEP290 regions and evaluated their impact on photoreceptor degeneration in Cep290 and Cep290;Nrl mice, two models of CEP290-LCA. One CEP290 fragment (the C-terminal 989 residues, including the domain deleted in mutant mice) reconstituted CEP290 function and resulted in cone preservation and delayed rod death. The CEP290 C-terminal domain also improved cilia phenotypes in mouse embryonic fibroblasts and iPSC-derived retinal organoids carrying the Cep290 mutation. Our study strongly argues for in trans complementation of CEP290 mutations by a cognate fragment and suggests therapeutic avenues.
CEP290 基因突变会导致纤毛生成缺陷,从而导致多种临床表型,包括莱伯先天性黑蒙(LCA)。CEP290 相关疾病的基因治疗受到 7.4 kb CEP290 编码序列的阻碍,该序列难以在体内传递。CEP290 蛋白的多结构域结构表明,特定的 CEP290 结构域可能补充疾病表型。因此,我们构建了具有重叠 CEP290 区域的 AAV 载体,并评估了它们对 Cep290 和 Cep290;Nrl 小鼠(两种 CEP290-LCA 模型)中感光细胞变性的影响。CEP290 的一个片段(包括突变小鼠中缺失的 C 末端 989 个残基的 C 末端 989 个残基)重建了 CEP290 功能,导致锥体保存和杆状细胞死亡延迟。CEP290 C 末端结构域还改善了携带 Cep290 突变的小鼠胚胎成纤维细胞和 iPSC 衍生的视网膜类器官中的纤毛表型。我们的研究强烈支持通过同源片段对 CEP290 突变进行反式互补,并提出了治疗途径。