核酸外切酶
基因组编辑
后转座子
计算生物学
生物
分子生物学
遗传学
清脆的
转座因子
基因组
DNA
基因
DNA聚合酶
作者
Dong‐Jiunn Jeffery Truong,Julian Geilenkeuser,Saskia Wendel,Julius Clemens Heinrich Wilming,Niklas Armbrust,EB Binder,Tobias Heinrich Santl,Annika Siebenhaar,Christoph Gruber,Teeradon Phlairaharn,Milica Živanić,Gil G. Westmeyer
出处
期刊:Nature Methods
[Springer Nature]
日期:2024-02-01
卷期号:21 (3): 455-464
被引量:4
标识
DOI:10.1038/s41592-023-02162-w
摘要
Abstract Prime editing (PE) is a powerful gene-editing technique based on targeted gRNA-templated reverse transcription and integration of the de novo synthesized single-stranded DNA. To circumvent one of the main bottlenecks of the method, the competition of the reverse-transcribed 3′ flap with the original 5′ flap DNA, we generated an enhanced fluorescence-activated cell sorting reporter cell line to develop an exonuclease-enhanced PE strategy (‘Exo-PE’) composed of an improved PE complex and an aptamer-recruited DNA-exonuclease to remove the 5′ original DNA flap. Exo-PE achieved better overall editing efficacy than the reference PE2 strategy for insertions ≥30 base pairs in several endogenous loci and cell lines while maintaining the high editing precision of PE2. By enabling the precise incorporation of larger insertions, Exo-PE complements the growing palette of different PE tools and spurs additional refinements of the PE machinery.
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