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Predicting the mutations generated by repair of Cas9-induced double-strand breaks.

Accepted version
Peer-reviewed

Type

Article

Change log

Authors

Allen, Felicity 
Crepaldi, Luca 
Alsinet, Clara 
Strong, Alexander J 
Kleshchevnikov, Vitalii  ORCID logo  https://orcid.org/0000-0001-9110-7441

Abstract

The DNA mutation produced by cellular repair of a CRISPR-Cas9-generated double-strand break determines its phenotypic effect. It is known that the mutational outcomes are not random, but depend on DNA sequence at the targeted location. Here we systematically study the influence of flanking DNA sequence on repair outcome by measuring the edits generated by >40,000 guide RNAs (gRNAs) in synthetic constructs. We performed the experiments in a range of genetic backgrounds and using alternative CRISPR-Cas9 reagents. In total, we gathered data for >109 mutational outcomes. The majority of reproducible mutations are insertions of a single base, short deletions or longer microhomology-mediated deletions. Each gRNA has an individual cell-line-dependent bias toward particular outcomes. We uncover sequence determinants of the mutations produced and use these to derive a predictor of Cas9 editing outcomes. Improved understanding of sequence repair will allow better design of gene editing experiments.

Description

Keywords

0604 Genetics, Basic Science, Genetics, Generic Health Relevance

Journal Title

Nat Biotechnol

Conference Name

Journal ISSN

1087-0156
1546-1696

Volume Title

Publisher

Springer Science and Business Media LLC
Sponsorship
Cancer Research UK (18796)
Wellcome Trust (206388/Z/17/Z)
Wellcome Trust (084812/Z/08/Z)
Wellcome Trust (200848/Z/16/Z)
Wellcome Trust (100140/Z/12/Z)
European Commission (626375)