DNA糖基化酶
脱氨基
鸟嘌呤
胞嘧啶
突变
DNA
生物
核酸酶
胸腺嘧啶
基因组编辑
胞苷脱氨酶
生物化学
分子生物学
清脆的
DNA损伤
核苷酸
基因
突变
酶
作者
Huawei Tong,Nana Liu,Yinghui Wei,Yingsi Zhou,Yun Li,Danni Wu,Ming Jin,Shuna Cui,Hengbin Li,Guoling Li,Jingxing Zhou,Yuan Yuan,Hainan Zhang,Linqi Shi,Yi Xuan,Hui Yang
摘要
Current DNA base editors contain nuclease and DNA deaminase that enables deamination of cytosine (C) or adenine (A), but no method for guanine (G) or thymine (T) editing is available at present. Here we developed a deaminase-free glycosylase-based guanine base editor (gGBE) with G editing ability, by fusing Cas9 nickase with engineered N-methylpurine DNA glycosylase protein (MPG). By several rounds of MPG mutagenesis via unbiased and rational screening using an intron-split EGFP reporter, we demonstrated that gGBE with engineered MPG could increase G editing efficiency by more than 1500 fold. Furthermore, this gGBE exhibited high base editing efficiency (up to 81.2%) and high G-to-T or G-to-C (i.e. G-to-Y) conversion ratio (up to 0.95) in both cultured human cells and mouse embryos. Thus, we have provided a proof-of-concept of a new base editing approach by endowing the engineered DNA glycosylase the capability to selectively excise a new type of substrate.
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