Effective splicing restoration of a deep-intronic ABCA4 variant in cone photoreceptor precursor cells by CRISPR/ Sp Cas9 approaches.

Molecular Therapy - Nucleic Acids(2022)

引用 6|浏览2
暂无评分
摘要
Stargardt disease is an autosomal recessively inherited retinal disorder commonly caused by pathogenic variants in the gene encoding the ATP-binding cassette subfamily A member 4 (ABCA4) protein. Several deep-intronic variants in have been classified as disease causing. By strengthening a cryptic splice site, deep-intronic variant c.5197-557G>T induces the inclusion of a 188-bp intronic sequence in the mature mRNA, resulting in a premature termination codon. Here, we report the design and evaluation of three CRISPR-Cas9 approaches implementing Cas9 (single and dual guide RNA) or Cas9 nickase (dual guide RNA) for their potential to correct c.5197-557G>T-induced aberrant splicing in minigene splicing assays and patient-derived cone photoreceptor precursor cells. The different strategies were able to rescue correct splicing by up to 83% and increase the overall correctly spliced transcripts by 1.8-fold, demonstrating the successful CRISPR-Cas9-mediated rescue in patient-derived photoreceptor precursor cells of an splicing defect. The results provide initial evidence of possible permanent splicing correction for Stargardt disease, expanding the therapeutic toolbox to counteract deep-intronic pathogenic variants in .
更多
查看译文
关键词
ABCA4,CRISPR-Cas9,MT: RNA/DNA editing,Photoreceptor precursor cells,STGD1,Stargardt disease,deep-intronic variants,genome editing,inherited retinal dystrophy,splicing
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要