Abstract
Haploid embryonic stem cells (ESCs) are useful for studying mammalian genes because disruption of only one allele can cause loss-of-function phenotypes. Here, we report the use of haploid ESCs and the CRISPR RNA-guided Cas9 nuclease genetargeting system to manipulate mammalian genes. Co-transfection of haploid ESCs with vectors expressing Cas9 nuclease and single-guide RNAs (sgRNAs) targeting Tet1, Tet2, and Tet3 resulted in the complete disruption of all three genes and caused a loss-of-function phenotype with high efficiency (50%). Co-transfection of cells with vectors expressing Cas9 and sgRNAs targeting two loci on the same chromosome resulted in the creation of a large chromosomal deletion and a large inversion. Thus, the use of the CRISPR systemin combination with haploid ESCs provides a powerful platformto manipulate the mammalian genome. © 2013 Horii et al.
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Horii, T., Morita, S., Kimura, M., Kobayashi, R., Tamura, D., Takahashi, R. u., … Hatada, I. (2013). Genome engineering of mammalian haploid embryonic stem cells using the cas9/RNA system. PeerJ, 2013(1). https://doi.org/10.7717/peerj.230
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