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An APOBEC3A-Cas9 base editor with minimized bystander and off-target activities

Authors :
Luca Pinello
M. Kendell Clement
Yuxuan Wu
J. Keith Joung
Jason Michael Gehrke
Jing Zeng
Daniel E. Bauer
Oliver R. Cervantes
Source :
Nature biotechnology
Publication Year :
2018
Publisher :
Springer Science and Business Media LLC, 2018.

Abstract

Base editor technology, which uses CRISPR-Cas9 to direct cytidine deaminase enzymatic activity to specific genomic loci, enables the highly efficient introduction of precise cytidine-to-thymidine DNA alterations. However, existing base editors create unwanted C-to-T alterations when more than one C is present in the enzyme's five-base-pair editing window. Here we describe a strategy for reducing bystander mutations using an engineered human APOBEC3A (eA3A) domain, which preferentially deaminates cytidines in specific motifs according to a TCR>TCY>VCN hierarchy. In direct comparisons with the widely used base editor 3 (BE3) fusion in human cells, our eA3A-BE3 fusion exhibits similar activities on cytidines in TC motifs but greatly reduced editing on cytidines in other sequence contexts. eA3A-BE3 corrects a human β-thalassemia promoter mutation with much higher (>40-fold) precision than BE3. We also demonstrate that eA3A-BE3 shows reduced mutation frequencies on known off-target sites of BE3, even when targeting promiscuous homopolymeric sites.

Details

ISSN :
15461696 and 10870156
Volume :
36
Database :
OpenAIRE
Journal :
Nature Biotechnology
Accession number :
edsair.doi.dedup.....9d5fa1b15ae1e44e729979c8d6be5081
Full Text :
https://doi.org/10.1038/nbt.4199