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Site-specific randomization of the endogenous genome by a regulatable CRISPR-Cas9 piggyBac system in human cells.


ABSTRACT: Randomized mutagenesis at an endogenous chromosomal locus is a promising approach for protein engineering, functional assessment of regulatory elements, and modeling genetic variations. In mammalian cells, however, it is challenging to perform site-specific single-nucleotide substitution with single-stranded oligodeoxynucleotide (ssODN) donor templates due to insufficient homologous recombination and the infeasibility of positive selection. Here, we developed a DNA transposon based CRISPR-Cas9 regulated transcription and nuclear shuttling (CRONUS) system that enables the stable transduction of CRISPR-Cas9/sgRNA in broad cell types, but avoids undesired genome cleavage in the absence two chemical inducing molecules. Highly efficient single nucleotide alterations induced randomization of desired codons (up to 4 codons) at a defined genomic locus in various human cell lines, including human iPS cells. Thus, CRONUS provides a novel platform for modeling diseases and genetic variations.

SUBMITTER: Ishida K 

PROVIDER: S-EPMC5762678 | biostudies-literature | 2018 Jan

REPOSITORIES: biostudies-literature

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Site-specific randomization of the endogenous genome by a regulatable CRISPR-Cas9 piggyBac system in human cells.

Ishida Kentaro K   Xu Huaigeng H   Sasakawa Noriko N   Lung Mandy Siu Yu MSY   Kudryashev Julia Alexandra JA   Gee Peter P   Hotta Akitsu A  

Scientific reports 20180110 1


Randomized mutagenesis at an endogenous chromosomal locus is a promising approach for protein engineering, functional assessment of regulatory elements, and modeling genetic variations. In mammalian cells, however, it is challenging to perform site-specific single-nucleotide substitution with single-stranded oligodeoxynucleotide (ssODN) donor templates due to insufficient homologous recombination and the infeasibility of positive selection. Here, we developed a DNA transposon based CRISPR-Cas9 r  ...[more]

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