Enrichment of allelic editing outcomes by Prime Editing in iPS cells
Enrichment of allelic editing outcomes by Prime Editing in iPS cells
Gene editing in human induced pluripotent stem (iPS) cells with programmable nucleases facilitates reliable disease models, but methods using double-strand break repair often produce random on-target by-products. Prime editing (PE) combines Cas9 nickase with reverse transcriptase (RT) and a prime editing guide RNA (pegRNA) encoding a repair template to reduce by-products. We implemented a GMP-compatible protocol for transfecting Cas9- or PE-2A-mCherry plasmids to track and fractionate human iPS cells based on PE expression level. We compared the editing outcomes of Cas9- and PE-based methods in a GFP-to-BFP conversion assay, at the HEK3 benchmark locus, and at the APOE Alzheimer`s risk locus, revealing superior precision of PE at high expression levels. Moreover, sorting cells for PE expression level influenced allelic editing outcomes at the target loci. We expect that our findings will aid in the creation of gene-edited human iPS cells with intentional heterozygous and homozygous genotypes.
Woltjen Knut、Matsumoto Tomoko、Kondo Takayuki、Kawato Maki、Tsukita Kayoko、Maurissen Thomas Luc、Liu Alexander Yusuke、Inoue Haruhisa、Niwa Ryo
生物科学研究方法、生物科学研究技术基础医学
Woltjen Knut,Matsumoto Tomoko,Kondo Takayuki,Kawato Maki,Tsukita Kayoko,Maurissen Thomas Luc,Liu Alexander Yusuke,Inoue Haruhisa,Niwa Ryo.Enrichment of allelic editing outcomes by Prime Editing in iPS cells[EB/OL].(2025-03-28)[2025-08-02].https://www.biorxiv.org/content/10.1101/2024.03.19.585665.点此复制
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