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一种外显子特异性 U1 小核 RNA(snRNA)策略来纠正剪接缺陷。

An exon-specific U1 small nuclear RNA (snRNA) strategy to correct splicing defects.

机构信息

Human Molecular Genetics, International Centre for Genetic Engineering and Biotechnology, Trieste, Italy.

出版信息

Hum Mol Genet. 2012 Jun 1;21(11):2389-98. doi: 10.1093/hmg/dds045. Epub 2012 Feb 23.

Abstract

A significant proportion of disease-causing mutations affect precursor-mRNA splicing, inducing skipping of the exon from the mature transcript. Using F9 exon 5, CFTR exon 12 and SMN2 exon 7 models, we characterized natural mutations associated to exon skipping in Haemophilia B, cystic fibrosis and spinal muscular atrophy (SMA), respectively, and the therapeutic splicing rescue by using U1 small nuclear RNA (snRNA). In minigene expression systems, loading of U1 snRNA by complementarity to the normal or mutated donor splice sites (5'ss) corrected the exon skipping caused by mutations at the polypyrimidine tract of the acceptor splice site, at the consensus 5'ss or at exonic regulatory elements. To improve specificity and reduce potential off-target effects, we developed U1 snRNA variants targeting non-conserved intronic sequences downstream of the 5'ss. For each gene system, we identified an exon-specific U1 snRNA (ExSpeU1) able to rescue splicing impaired by the different types of mutations. Through splicing-competent cDNA constructs, we demonstrated that the ExSpeU1-mediated splicing correction of several F9 mutations results in complete restoration of secreted functional factor IX levels. Furthermore, two ExSpeU1s for SMA improved SMN exon 7 splicing in the chromosomal context of normal cells. We propose ExSpeU1s as a novel therapeutic strategy to correct, in several human disorders, different types of splicing mutations associated with defective exon definition.

摘要

相当一部分致病突变影响前体 mRNA 的剪接,导致外显子从成熟转录本中跳过。我们使用 F9 外显子 5、CFTR 外显子 12 和 SMN2 外显子 7 模型,分别对血友病 B、囊性纤维化和脊髓性肌萎缩症(SMA)中与外显子跳跃相关的天然突变以及 U1 小核 RNA(snRNA)的治疗性剪接挽救进行了表征。在 minigene 表达系统中,通过与正常或突变供体位点(5'ss)互补加载 U1 snRNA 可纠正接受体位点多嘧啶序列、共识 5'ss 或外显子调节元件处突变引起的外显子跳跃。为了提高特异性并减少潜在的脱靶效应,我们开发了针对 5'ss 下游非保守内含子序列的 U1 snRNA 变体。对于每个基因系统,我们都鉴定了一种外显子特异性 U1 snRNA(ExSpeU1),它能够挽救不同类型突变引起的剪接缺陷。通过具有剪接能力的 cDNA 构建体,我们证明了 ExSpeU1 介导的几种 F9 突变的剪接纠正导致分泌功能因子 IX 水平完全恢复。此外,两种 SMA 的 ExSpeU1 提高了正常细胞中染色体背景下 SMN 外显子 7 的剪接。我们提出 ExSpeU1 作为一种新的治疗策略,可纠正几种人类疾病中外显子定义缺陷相关的不同类型剪接突变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f29/3349419/9d9103d42e9e/dds04501.jpg

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