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AGBE: a dual deaminase-mediated base editor by fusing CGBE with ABE for creating a saturated mutant population with multiple editing patterns.


ABSTRACT: Establishing saturated mutagenesis in a specific gene through gene editing is an efficient approach for identifying the relationships between mutations and the corresponding phenotypes. CRISPR/Cas9-based sgRNA library screening often creates indel mutations with multiple nucleotides. Single base editors and dual deaminase-mediated base editors can achieve only one and two types of base substitutions, respectively. A new glycosylase base editor (CGBE) system, in which the uracil glycosylase inhibitor (UGI) is replaced with uracil-DNA glycosylase (UNG), was recently reported to efficiently induce multiple base conversions, including C-to-G, C-to-T and C-to-A. In this study, we fused a CGBE with ABE to develop a new type of dual deaminase-mediated base editing system, the AGBE system, that can simultaneously introduce 4 types of base conversions (C-to-G, C-to-T, C-to-A and A-to-G) as well as indels with a single sgRNA in mammalian cells. AGBEs can be used to establish saturated mutant populations for verification of the functions and consequences of multiple gene mutation patterns, including single-nucleotide variants (SNVs) and indels, through high-throughput screening.

SUBMITTER: Liang Y 

PROVIDER: S-EPMC9122597 | biostudies-literature | 2022 May

REPOSITORIES: biostudies-literature

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AGBE: a dual deaminase-mediated base editor by fusing CGBE with ABE for creating a saturated mutant population with multiple editing patterns.

Liang Yanhui Y   Xie Jingke J   Zhang Quanjun Q   Wang Xiaomin X   Gou Shixue S   Lin Lihui L   Chen Tao T   Ge Weikai W   Zhuang Zhenpeng Z   Lian Meng M   Chen Fangbing F   Li Nan N   Ouyang Zhen Z   Lai Chengdan C   Liu Xiaoyi X   Li Lei L   Ye Yinghua Y   Wu Han H   Wang Kepin K   Lai Liangxue L  

Nucleic acids research 20220501 9


Establishing saturated mutagenesis in a specific gene through gene editing is an efficient approach for identifying the relationships between mutations and the corresponding phenotypes. CRISPR/Cas9-based sgRNA library screening often creates indel mutations with multiple nucleotides. Single base editors and dual deaminase-mediated base editors can achieve only one and two types of base substitutions, respectively. A new glycosylase base editor (CGBE) system, in which the uracil glycosylase inhib  ...[more]

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