Quantifying allele-specific CRISPR editing activity with CRISPECTOR2.0

Author:

Assa Guy1ORCID,Kalter Nechama2ORCID,Rosenberg Michael2ORCID,Beck Avigail1,Markovich Oshry3,Gontmakher Tanya3,Hendel Ayal2ORCID,Yakhini Zohar14ORCID

Affiliation:

1. Arazi School of Computer Science, Reichman University , Herzliya  4610101 , Israel

2. The Institute for Advanced Materials and Nanotechnology, The Mina and Everard Goodman Faculty of Life Sciences, Bar-Ilan University , Ramat-Gan  5290002 , Israel

3. Rahan Meristem (1998) Ltd. Kibbutz Rosh-Hanikra , Western Galilee  2282500 , Israel

4. The Henry & Marilyn Taub Faculty of Computer Science, Technion - Israel Institute of Technology ,  Haifa 3200003, Israel

Abstract

Abstract Off-target effects present a significant impediment to the safe and efficient use of CRISPR-Cas genome editing. Since off-target activity is influenced by the genomic sequence, the presence of sequence variants leads to varying on- and off-target profiles among different alleles or individuals. However, a reliable tool that quantifies genome editing activity in an allelic context is not available. Here, we introduce CRISPECTOR2.0, an extended version of our previously published software tool CRISPECTOR, with an allele-specific editing activity quantification option. CRISPECTOR2.0 enables reference-free, allele-aware, precise quantification of on- and off-target activity, by using de novo sample-specific single nucleotide variant (SNV) detection and statistical-based allele-calling algorithms. We demonstrate CRISPECTOR2.0 efficacy in analyzing samples containing multiple alleles and quantifying allele-specific editing activity, using data from diverse cell types, including primary human cells, plants, and an original extensive human cell line database. We identified instances where an SNV induced changes in the protospacer adjacent motif sequence, resulting in allele-specific editing. Intriguingly, differential allelic editing was also observed in regions carrying distal SNVs, hinting at the involvement of additional epigenetic factors. Our findings highlight the importance of allele-specific editing measurement as a milestone in the adaptation of efficient, accurate, and safe personalized genome editing.

Funder

Israel Innovation Authority

CRISPR-IL

Yakhini research group

Publisher

Oxford University Press (OUP)

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