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在人细胞中对碱基编辑系统特异性进行无偏倚研究。

Unbiased investigation of specificities of prime editing systems in human cells.

机构信息

Genome Editing Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), Daejeon 34141, Republic of Korea.

KRIBB School of Bioscience, Korea University of Science and Technology (UST) , Daejeon 34141, Republic of Korea.

出版信息

Nucleic Acids Res. 2020 Oct 9;48(18):10576-10589. doi: 10.1093/nar/gkaa764.

Abstract

Prime editors (PEs) enable targeted precise editing, including the generation of substitutions, insertions and deletions, in eukaryotic genomes. However, their genome-wide specificity has not been explored. Here, we developed Nickase-based Digenome-seq (nDigenome-seq), an in vitro assay that uses whole-genome sequencing to identify single-strand breaks induced by CRISPR (clustered regularly interspaced short palindromic repeats)-Cas9 (CRISPR-associated protein 9) nickase. We used nDigenome-seq to screen for potential genome-wide off-target sites of Cas9 H840A nickase, a PE component, targeted to nine human genomic sites. Then, using targeted amplicon sequencing of off-target candidates identified by nDigenome-seq, we showed that only five off-target sites showed detectable PE-induced modifications in cells, at frequencies ranging from 0.1 to 1.9%, suggesting that PEs provide a highly specific method of precise genome editing. We also found that PE specificity in human cells could be further improved by incorporating mutations from engineered Cas9 variants, particularly eSpCas9 and Sniper Cas9, into PE.

摘要

原核生物基因编辑技术(prime editors,PEs)可实现靶向精确编辑,包括取代、插入和缺失的产生。然而,其在全基因组范围内的特异性尚未得到探索。本研究开发了基于 Nickase 的双基因组测序(Nickase-based Digenome-seq,nDigenome-seq),这是一种体外测定方法,使用全基因组测序来鉴定 CRISPR(成簇规律间隔短回文重复序列)-Cas9(CRISPR 相关蛋白 9) Nickase 诱导的单链断裂。我们使用 nDigenome-seq 筛选靶向九个人类基因组位点的 Cas9 H840A Nickase 的潜在全基因组脱靶位点,Cas9 H840A Nickase 是一种 PE 成分。然后,通过 nDigenome-seq 鉴定的脱靶候选物的靶向扩增子测序,我们表明只有五个脱靶位点在细胞中显示出可检测到的 PE 诱导修饰,频率范围为 0.1%至 1.9%,这表明 PEs 提供了一种高度精确的基因组编辑特异性方法。我们还发现,通过将工程化 Cas9 变体(特别是 eSpCas9 和 Sniper Cas9)的突变整合到 PE 中,可以进一步提高人类细胞中 PE 的特异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de42/7544197/1f7e4b889f2c/gkaa764fig1.jpg

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