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Disrupted alternative splicing for genes implicated in splicing and ciliogenesis causes PRPF31 retinitis pigmentosa

机译:涉及剪接和睫毛发生的基因的选择性剪接中断导致PRPF31色素性视网膜炎

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Mutations in pre-mRNA processing factors (PRPFs) cause autosomal-dominant retinitis pigmentosa (RP), but it is unclear why mutations in ubiquitously expressed genes cause non-syndromic retinal disease. Here, we generate transcriptome profiles from RP11 (PRPF31-mutated) patient-derived retinal organoids and retinal pigment epithelium (RPE), as well as Prpf31+/? mouse tissues, which revealed that disrupted alternative splicing occurred for specific splicing programmes. Mis-splicing of genes encoding pre-mRNA splicing proteins was limited to patient-specific retinal cells and Prpf31+/? mouse retinae and RPE. Mis-splicing of genes implicated in ciliogenesis and cellular adhesion was associated with severe RPE defects that include disrupted apical – basal polarity, reduced trans-epithelial resistance and phagocytic capacity, and decreased cilia length and incidence. Disrupted cilia morphology also occurred in patient-derived photoreceptors, associated with progressive degeneration and cellular stress. In situ gene editing of a pathogenic mutation rescued protein expression and key cellular phenotypes in RPE and photoreceptors, providing proof of concept for future therapeutic strategies.
机译:mRNA前加工因子(PRPF)中的突变会导致常染色体显性视网膜色素变性(RP),但尚不清楚为什么无处不在表达的基因突变会导致非综合征性视网膜疾病。在这里,我们从RP11(PRPF31突变)患者来源的视网膜类器官和视网膜色素上皮细胞(RPE)以及Prpf31 + /?生成转录组图谱。小鼠组织,表明特定的剪接程序发生了替代剪接。编码前mRNA剪接蛋白的基因的错误剪接仅限于患者特异性视网膜细胞和Prpf31 + /?。小鼠视网膜和RPE。与纤毛发生和细胞粘附有关的基因的错误剪接与严重的RPE缺陷有关,这些缺陷包括根尖–基础极性破坏,跨上皮抵抗力和吞噬能力降低以及纤毛长度和发病率降低。纤毛形态也发生在患者来源的感光细胞中,与进行性变性和细胞应激有关。病原突变的原位基因编辑挽救了RPE和感光器中的蛋白表达和关键细胞表型,为未来治疗策略提供了概念证明。

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