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Engineering a precise adenine base editor with minimal bystander editing

Nat Chem Biol. 2022-10; 
Liang Chen, Shun Zhang, Niannian Xue, Mengjia Hong, Xiaohui Zhang, Dan Zhang, Jing Yang, Sijia Bai, Yifan Huang, Haowei Meng, Hao Wu, Changming Luan, Biyun Zhu, Gaomeng Ru, Hongyi Gao, Liping Zhong, Meizhen Liu, Mingyao Liu, Yiyun Cheng, Chengqi Yi, Liren Wang, Yongxiang Zhao, Gaojie Song, Dali Li
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Proteins, Expression, Isolation and Analysis … These elevated rates of undesired ABE8e editing effects encourage us to further optimize it … sgRNA with chemical modification was synthesized by GenScript, and mRNA was prepared … Get A Quote

摘要

Adenine base editors (ABEs) catalyze A-to-G transitions showing broad applications, but their bystander mutations and off-target editing effects raise safety concerns. Through structure-guided engineering, we found ABE8e with an N108Q mutation reduced both adenine and cytosine bystander editing, and introduction of an additional L145T mutation (ABE9), further refined the editing window to 1-2 nucleotides with eliminated cytosine editing. Importantly, ABE9 induced very minimal RNA and undetectable Cas9-independent DNA off-target effects, which mainly installed desired single A-to-G conversion in mouse and rat embryos to efficiently generate disease models. Moreover, ABE9 accurately edited the A position of the p... More

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