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在植物中添加 T5 外切核酸酶可提高 Prime 编辑效率。

Addition of the T5 exonuclease increases the prime editing efficiency in plants.

机构信息

School of Life Science, Shanxi University, Taiyuan, Shanxi 030006, China.

School of Life Science, Shanxi University, Taiyuan, Shanxi 030006, China.

出版信息

J Genet Genomics. 2023 Aug;50(8):582-588. doi: 10.1016/j.jgg.2023.03.008. Epub 2023 Mar 21.

Abstract

Prime editing (PE) is a versatile genome editing tool without the need for double-stranded DNA breaks or donor DNA templates, but is limited by low editing efficiency. We previously fused the M-MLV reverse transcriptase to the Cas9 nickase, generating the PE2 (v1) system, but the editing efficiency of this system is still low. Here we develop different versions of PE2 by adding the 5'-to-3' exonuclease at different positions of the nCas9-M-MLV RT fusion protein. PE2 (v2), in which the T5 exonuclease fused to the N-terminus of the nCas9-MMLV fusion protein enhances prime editing efficiency of base substitutions, deletions, and insertions at several genomic sites by 1.7- to 2.9-fold in plant cells compared to PE2 (v1). The improved editing efficiency of PE2 (v2) is further confirmed by generating increased heritable prime edits in stable transgenic plants compared to the previously established PE-P1, PE-P2, and PPE systems. Using PE2 (v2), we generate herbicide-resistant rice by simultaneously introducing mutations causing amino acid substitutions at two target sites. The PE efficiency is further improved by combining PE2 (v2) and dual-pegRNAs. Taken together, the increased genome editing efficiency of PE2 (v2) developed in this study may enhance the applications of PE in plants.

摘要

先导编辑(PE)是一种多功能的基因组编辑工具,无需双链 DNA 断裂或供体 DNA 模板,但编辑效率有限。我们之前将 M-MLV 逆转录酶融合到 Cas9 切口酶中,生成了 PE2(v1)系统,但该系统的编辑效率仍然较低。在这里,我们通过在 nCas9-M-MLV RT 融合蛋白的不同位置添加 5'-3' 外切酶,开发了不同版本的 PE2。PE2(v2)中,T5 外切酶融合到 nCas9-MMLV 融合蛋白的 N 端,与 PE2(v1)相比,在植物细胞中增强了几个基因组位点的碱基替换、缺失和插入的先导编辑效率,提高了 1.7-2.9 倍。与之前建立的 PE-P1、PE-P2 和 PPE 系统相比,PE2(v2)在稳定转化植物中产生的可遗传先导编辑的编辑效率进一步得到了证实。使用 PE2(v2),我们通过同时在两个靶位点引入导致氨基酸替换的突变,生成了抗除草剂的水稻。通过结合使用 PE2(v2)和双 pegRNA,进一步提高了 PE 效率。总之,本研究中开发的 PE2(v2)的基因组编辑效率的提高可能会增强 PE 在植物中的应用。

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