Scinovex
article Open Access

Analysis of off-target effects of CRISPR/Cas-derived RNA-guided endonucleases and nickases

Genome Research · 2013 · Vol. 24(1) · pp. 132–141
Seung Woo ChoSojung KimYongsub KimJiyeon KweonHeon Seok KimSangsu BaeJin‐Soo Kim

Abstract

RNA-guided endonucleases (RGENs), derived from the prokaryotic adaptive immune system known as CRISPR/Cas, enable targeted genome engineering in cells and organisms. RGENs are ribonucleoproteins that consist of guide RNA and Cas9, a protein component originated from Streptococcus pyogenes. These enzymes cleave chromosomal DNA, whose sequence is complementary, to guide RNA in a targeted manner, producing site-specific DNA double-strand breaks (DSBs), the repair of which gives rise to targeted genome modifications. Despite broad interest in RGEN-mediated genome editing, these nucleases are limited by off-target mutations and unwanted chromosomal translocations associated with off-target DNA cleavages. Here, we show that off-target effects of RGENs can be reduced below the detection limits of deep sequencing by choosing unique target sequences in the genome and modifying both guide RNA and Cas9. We found that both the composition and structure of guide RNA can affect RGEN activities in cells to reduce off-target effects. RGENs efficiently discriminated on-target sites from off-target sites that differ by two bases. Furthermore, exome sequencing analysis showed that no off-target mutations were induced by two RGENs in four clonal populations of mutant cells. In addition, paired Cas9 nickases, composed of D10A Cas9 and guide RNA, which generate two single-strand breaks (SSBs) or nicks on different DNA strands, were highly specific in human cells, avoiding off-target mutations without sacrificing genome-editing efficiency. Interestingly, paired nickases induced chromosomal deletions in a targeted manner without causing unwanted translocations. Our results highlight the importance of choosing unique target sequences and optimizing guide RNA and Cas9 to avoid or reduce RGEN-induced off-target mutations.

CRISPR and Genetic EngineeringRNA and protein synthesis mechanismsViral Infections and Immunology ResearchBiologyCas9CRISPRRNAGuide RNAGenome editingGeneticsDNAGenomeComputational biology

MeSH terms

Base SequenceBinding SitesChromosomes, HumanDeoxyribonuclease IDNAEndonucleasesHeLa CellsHumansModels, GeneticMutationGenome, HumanK562 CellsDNA Breaks, Double-StrandedGenetic LociRNA, Small Untranslated

Funding

  • National Research Foundation
  • National Research Foundation of Korea
Citations
1,372
FWCI
field-weighted impact
References
48
Percentile
vs. same field & year
Citations per year
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Analysis of off-target effects of CRISPR/Cas-derived RNA-guided endonucleases and nickases · Scinovex