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视网膜色素变性相关突变导致小鼠 Prpf8 中的 circRNAs 表达异常和小脑颗粒细胞变性。

Retinitis pigmentosa-associated mutations in mouse Prpf8 cause misexpression of circRNAs and degeneration of cerebellar granule cells.

机构信息

Institute of Molecular Genetics, Czech Academy of Sciences, Prague, Czech Republic.

Core Facility Bioinformatics, Institute of Microbiology of the Czech Academy of Sciences, Prague, Czech Republic.

出版信息

Life Sci Alliance. 2023 Apr 5;6(6). doi: 10.26508/lsa.202201855. Print 2023 Jun.

Abstract

A subset of patients with retinitis pigmentosa (RP) carry mutations in several spliceosomal components including the PRPF8 protein. Here, we established two alleles of murine that genocopy or mimic aberrant PRPF8 found in RP patients-the substitution p.Tyr2334Asn and an extended protein variant p.Glu2331ValfsX15. Homozygous mice expressing the aberrant Prpf8 variants developed within the first 2 mo progressive atrophy of the cerebellum because of extensive granule cell loss, whereas other cerebellar cells remained unaffected. We further show that a subset of circRNAs were deregulated in the cerebellum of both Prpf8-RP mouse strains. To identify potential risk factors that sensitize the cerebellum for Prpf8 mutations, we monitored the expression of several splicing proteins during the first 8 wk. We observed down-regulation of all selected splicing proteins in the WT cerebellum, which coincided with neurodegeneration onset. The decrease in splicing protein expression was further pronounced in mouse strains expressing mutated Prpf8. Collectively, we propose a model where physiological reduction in spliceosomal components during postnatal tissue maturation sensitizes cells to the expression of aberrant Prpf8 and the subsequent deregulation of circRNAs triggers neuronal death.

摘要

一部分视网膜色素变性(RP)患者携带几个剪接体成分的突变,包括 PRPF8 蛋白。在这里,我们建立了两种模拟 RP 患者中发现的异常 PRPF8 的 基因 - p.Tyr2334Asn 取代和 p.Glu2331ValfsX15 扩展蛋白变体。表达异常 Prpf8 变异体的纯合子小鼠在 2 个月内发展为小脑进行性萎缩,因为广泛的颗粒细胞丢失,而其他小脑细胞不受影响。我们进一步表明,在两种 Prpf8-RP 小鼠品系的小脑中有一部分 circRNAs 失调。为了确定使小脑对 Prpf8 突变敏感的潜在风险因素,我们在最初的 8 周内监测了几种剪接蛋白的表达。我们观察到 WT 小脑中所有选定的剪接蛋白下调,这与神经退行性变的发生相一致。在表达突变 Prpf8 的小鼠品系中,剪接蛋白表达的减少更为明显。总的来说,我们提出了一个模型,即在出生后组织成熟过程中剪接体成分的生理减少使细胞对异常 Prpf8 的表达敏感,随后 circRNAs 的失调引发神经元死亡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a84/10078954/5f5f7bfcbb55/LSA-2022-01855_FigS1.jpg

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