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Identification and Correction of Mechanisms Underlying Inherited Blindness in Human iPSC-Derived Optic Cups

机译:鉴定和纠正人类iPSC衍生的光学杯中遗传性失明的潜在机制

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摘要

Leber congenital amaurosis (LCA) is an inherited retinal dystrophy that causes childhood blindness. Photoreceptors are especially sensitive to an intronic mutation in the cilia-related gene CEP290, which causes missplicing and premature termination, but the basis of this sensitivity is unclear. Here, we generated differentiated photoreceptors in three-dimensional optic cups and retinal pigment epithelium (RPE) from iPSCs with this common CEP290 mutation to investigate disease mechanisms and evaluate candidate therapies. iPSCs differentiated normally into RPE and optic cups, despite abnormal CEP290 splicing and cilia defects. The highest levels of aberrant splicing and cilia defects were observed in optic cups, explaining the retinal-specific manifestation of this CEP290 mutation. Treating optic cups with an antisense morpholino effectively blocked aberrant splicing and restored expression of full-length CEP290, restoring normal cilia-based protein trafficking. These results provide a mechanistic understanding of the retina-specific phenotypes in CEP290 LCA patients and potential strategies for therapeutic intervention.
机译:莱伯先天性黑ama病(LCA)是一种遗传性视网膜营养不良,导致儿童失明。感光细胞对纤毛相关基因CEP290的内含子突变特别敏感,该突变会导致剪接和过早终止,但是这种敏感性的基础尚不清楚。在这里,我们从具有这种常见CEP290突变的iPSC中在三维光学杯和视网膜色素上皮(RPE)中生成了分化的感光细胞,以研究疾病机制并评估候选疗法。尽管异常CEP290拼接和纤毛缺陷,iPSC仍可正常区分为RPE和视杯。在视杯中观察到最高水平的异常剪接和纤毛缺陷,这说明了这种CEP290突变的视网膜特异性表现。用反义吗啉代糖治疗视杯可有效阻断异常剪接并恢复全长CEP290的表达,恢复正常的基于纤毛的蛋白质运输。这些结果提供了对CEP290 LCA患者视网膜特异性表型的机械理解以及治疗干预的潜在策略。

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