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突变型PRPF8在视网膜色素变性患者诱导多能干细胞衍生的视网膜色素上皮细胞中导致剪接体成分广泛的剪接变化。

Mutant PRPF8 Causes Widespread Splicing Changes in Spliceosome Components in Retinitis Pigmentosa Patient iPSC-Derived RPE Cells.

作者信息

Arzalluz-Luque Ángeles, Cabrera Jose Luis, Skottman Heli, Benguria Alberto, Bolinches-Amorós Arantxa, Cuenca Nicolás, Lupo Vincenzo, Dopazo Ana, Tarazona Sonia, Delás Bárbara, Carballo Miguel, Pascual Beatriz, Hernan Imma, Erceg Slaven, Lukovic Dunja

机构信息

Department of Applied Statistics, Operations Research and Quality, Universitat Politècnica de València, València, Spain.

Genomics Unit, Centro Nacional de Investigaciones Cardiovasculares (CNIC). Madrid, Spain.

出版信息

Front Neurosci. 2021 Apr 29;15:636969. doi: 10.3389/fnins.2021.636969. eCollection 2021.

Abstract

Retinitis pigmentosa (RP) is a rare, progressive disease that affects photoreceptors and retinal pigment epithelial (RPE) cells with blindness as a final outcome. Despite high medical and social impact, there is currently no therapeutic options to slow down the progression of or cure the disease. The development of effective therapies was largely hindered by high genetic heterogeneity, inaccessible disease tissue, and unfaithful model organisms. The fact that components of ubiquitously expressed splicing factors lead to the retina-specific disease is an additional intriguing question. Herein, we sought to correlate the retinal cell-type-specific disease phenotype with the splicing profile shown by a patient with autosomal recessive RP, caused by a mutation in pre-mRNA splicing factor 8 (PRPF8). In order to get insight into the role of PRPF8 in homeostasis and disease, we capitalize on the ability to generate patient-specific RPE cells and reveal differentially expressed genes unique to RPE cells. We found that spliceosomal complex and ribosomal functions are crucial in determining cell-type specificity through differential expression and alternative splicing (AS) and that PRPF8 mutation causes global changes in splice site selection and exon inclusion that particularly affect genes involved in these cellular functions. This finding corroborates the hypothesis that retinal tissue identity is conferred by a specific splicing program and identifies retinal AS events as a framework toward the design of novel therapeutic opportunities.

摘要

视网膜色素变性(RP)是一种罕见的进行性疾病,会影响光感受器和视网膜色素上皮(RPE)细胞,最终导致失明。尽管其对医学和社会有重大影响,但目前尚无减缓疾病进展或治愈该病的治疗方法。有效的治疗方法的开发在很大程度上受到高度遗传异质性、难以获取疾病组织以及模型生物不准确等因素的阻碍。普遍表达的剪接因子的成分导致视网膜特异性疾病这一事实是另一个有趣的问题。在此,我们试图将视网膜细胞类型特异性疾病表型与一名常染色体隐性RP患者的剪接谱相关联,该患者由前体mRNA剪接因子8(PRPF8)突变引起。为了深入了解PRPF8在体内平衡和疾病中的作用,我们利用生成患者特异性RPE细胞的能力,并揭示RPE细胞特有的差异表达基因。我们发现剪接体复合物和核糖体功能通过差异表达和可变剪接(AS)在决定细胞类型特异性方面至关重要,并且PRPF8突变会导致剪接位点选择和外显子包含的全局变化,尤其会影响参与这些细胞功能的基因。这一发现证实了视网膜组织特性由特定剪接程序赋予的假设,并将视网膜AS事件确定为设计新型治疗机会的框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7bd7/8116631/de079b9d2c8c/fnins-15-636969-g001.jpg

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