Highly efficient genome editing by CRISPR-Cpf1 using CRISPR RNA with a uridinylate-rich 3′-overhang

Su Bin Moon(Genome Research Foundation), Jeong Mi Lee(Genome Research Foundation), Jeong Gu Kang(Genome Research Foundation), Nan-Ee Lee(Genome Research Foundation), Dae-In Ha(Genome Research Foundation), Do Yon Kim(Genome Research Foundation), Sun Hee Kim(Genome Research Foundation), Kwangsun Yoo(Genome Research Foundation), Daesik Kim(Seoul National University), Jeong‐Heon Ko(Genome Research Foundation), Yong-Sam Kim(Genome Research Foundation)
Nature Communications
September 3, 2018
Cited by 196Open Access
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Abstract

Abstract Genome editing has been harnessed through the development of CRISPR system, and the CRISPR from Prevotella and Francisella 1 (Cpf1) system has emerged as a promising alternative to CRISPR-Cas9 for use in various circumstances. Despite the inherent multiple advantages of Cpf1 over Cas9, the adoption of Cpf1 has been unsatisfactory because of target-dependent insufficient indel efficiencies. Here, we report an engineered CRISPR RNA (crRNA) for highly efficient genome editing by Cpf1, which includes a 20-base target-complementary sequence and a uridinylate-rich 3′-overhang. When the crRNA is transcriptionally produced, crRNA with a 20-base target-complementary sequence plus a U 4 AU 4 3′-overhang is the optimal configuration. U-rich crRNA also maximizes the utility of the AsCpf1 mutants and multiplexing genome editing using mRNA as the source of multiple crRNAs. Furthermore, U-rich crRNA enables a highly safe and specific genome editing using Cpf1 in human cells, contributing to the enhancement of a genome-editing toolbox.


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