Previously we established Zygote Electroporation of Nucleases (ZEN) technology as an efficient and high-throughput way to generate genetically modified mouse models. However, there were significant variations of the targeting efficiency among different genomic loci using our previously published protocol. In this study, we improved the ZEN technology by delivering Cas9 protein into mouse zygotes through a series of electroporation. Using this approach, we were able to introduce precise nucleotide substitutions, large segment deletion and short segment insertion into targeted loci with high efficiency. J Genet Genomics 2016 May 20; 43(5):319-2
The CRISPR/Cas9 system has rapidly advanced targeted genome editing technologies. However, its effic...
Genetic modification of almost any species is now possible using approaches based on targeted nuclea...
The generation of targeted mouse mutants is a key technology for biomedical research. Using the CRIS...
Previously we established Zygote Electroporation of Nucleases (ZEN) technology as an efficient and h...
AbstractPreviously we established Zygote Electroporation of Nucleases (ZEN) technology as an efficie...
CRISPR/Cas is an adaptive immune system in bacteria and archaea that has recently been exploited for...
CRISPR/Cas9 machinery delivered as ribonucleoprotein (RNP) to the zygote has become a standard tool ...
CRISPR-associated (Cas) nucleases are established tools for engineering of animal genomes. These pro...
The CRISPR-Cas9 system in bacteria and archaea has recently been exploited for genome editing in var...
<div><p>Electroporation of zygotes represents a rapid alternative to the elaborate pronuclear inject...
Electroporation of zygotes represents a rapid alternative to the elaborate pronuclear injection proc...
The CRISPR/Cas9 system has been employed to efficiently edit the genomes of diverse model organisms....
International audienceThe generation of gene-edited animals using the CRISPRs/Cas9 system is based o...
<div><p>Zinc finger nucleases (ZFNs) enable precise genome modification in a variety of organisms an...
Genome manipulation in the mouse via microinjection of CRISPR/Cas9 site-specific nucleases has allow...
The CRISPR/Cas9 system has rapidly advanced targeted genome editing technologies. However, its effic...
Genetic modification of almost any species is now possible using approaches based on targeted nuclea...
The generation of targeted mouse mutants is a key technology for biomedical research. Using the CRIS...
Previously we established Zygote Electroporation of Nucleases (ZEN) technology as an efficient and h...
AbstractPreviously we established Zygote Electroporation of Nucleases (ZEN) technology as an efficie...
CRISPR/Cas is an adaptive immune system in bacteria and archaea that has recently been exploited for...
CRISPR/Cas9 machinery delivered as ribonucleoprotein (RNP) to the zygote has become a standard tool ...
CRISPR-associated (Cas) nucleases are established tools for engineering of animal genomes. These pro...
The CRISPR-Cas9 system in bacteria and archaea has recently been exploited for genome editing in var...
<div><p>Electroporation of zygotes represents a rapid alternative to the elaborate pronuclear inject...
Electroporation of zygotes represents a rapid alternative to the elaborate pronuclear injection proc...
The CRISPR/Cas9 system has been employed to efficiently edit the genomes of diverse model organisms....
International audienceThe generation of gene-edited animals using the CRISPRs/Cas9 system is based o...
<div><p>Zinc finger nucleases (ZFNs) enable precise genome modification in a variety of organisms an...
Genome manipulation in the mouse via microinjection of CRISPR/Cas9 site-specific nucleases has allow...
The CRISPR/Cas9 system has rapidly advanced targeted genome editing technologies. However, its effic...
Genetic modification of almost any species is now possible using approaches based on targeted nuclea...
The generation of targeted mouse mutants is a key technology for biomedical research. Using the CRIS...