To facilitate the construction of genetically-modified pigs, we produced cloned embryos derived from porcine fibroblasts transfected with a pair of engineered zinc finger nuclease (ZFN) plasmids to create targeted mutations and enriched using a reporter plasmid system. The reporter expresses RFP and eGFP simultaneously when ZFN-mediated site-specific mutations occur. Thus, double positive cells (RFP+/eGFP+) were selected and used for somatic cell nuclear transfer. Two types of reporter based enrichment systems were used in this study; the cloned embryos derived from cells enriched using a magnetic sorting-based system showed better developmental competence than did those derived from cells enriched by flow cytometry. Mutated sequences, such as insertions, deletions, or substitutions, together with the wild-type sequence, were found in the cloned porcine blastocysts. Therefore, genetic mutations can be achieved in cloned porcine embryos reconstructed with ZFN-treated cells that were enriched by a reporter-based system. Copyright © 2014 by Asian-Australasian Journal of Animal Sciences.
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Koo, O. J., Park, S. J., Lee, C., Kang, J. T., Kim, S., Moon, J. H., … Lee, B. C. (2014). Production of mutated porcine embryos using zinc finger nucleases and a reporter-based cell enrichment system. Asian-Australasian Journal of Animal Sciences, 27(3), 324–329. https://doi.org/10.5713/ajas.2013.13481