Highly efficient gene knockout in mice and zebrafish with RNA-guided endonucleases

  • Genome Res. 2014 Jan;24(1):125-31. doi: 10.1101/gr.163394.113.
Young Hoon Sung  1 Jong Min Kim Hyun-Taek Kim Jaehoon Lee Jisun Jeon Young Jin Jung-Hwa Choi Young Ho Ban Sang-Jun Ha Cheol-Hee Kim Han-Woong Lee Jin-Soo Kim
Affiliations
  • 1. Department of Biochemistry, College of Life Science and Biotechnology, Yonsei University, Seoul 120-749, Republic of Korea;
Abstract

RNA-guided endonucleases (RGENs), derived from the prokaryotic Type II CRISPR-Cas system, enable targeted genome modification in cells and organisms. Here we describe the establishment of gene-knockout mice and zebrafish by the injection of RGENs as Cas9 protein:guide RNA complexes or Cas9 mRNA plus guide RNA into one-cell-stage embryos of both species. RGENs efficiently generated germline transmittable mutations in up to 93% of newborn mice with minimal toxicity. RGEN-induced mutations in the mouse Prkdc gene that encodes an enzyme critical for DNA double-strand break repair resulted in immunodeficiency both in F₀ and F₁ mice. We propose that RGEN-mediated mutagenesis in Animals will greatly expedite the creation of genetically engineered model organisms, accelerating functional genomic research.