Gene engineering for generating targeted mouse mutants is a key technology for biomedical research. Using TALENs as nucleases to induce targeted double-strand breaks, the mouse genome can be directly modified in zygotes in a single step, without the need for embryonic stem cells. Thereby, knockout and knockin alleles can be generated fast and efficiently by embryo microinjection of TALEN mRNAs and targeting vectors. In this article we present an introduction into the TALEN technology and provide protocols for the application of TALENs in mouse zygotes
The study of genetic disease mechanisms relies mostly on targeted mouse mutants that are derived fro...
Genetic engineered mice are instrumental for analysis of gene function in health and disease. Here t...
The functional study of Y chromosome genes has been hindered by a lack of mouse models with specific...
Gene engineering for generating targeted mouse mutants is a key technology for biomedical research. ...
Gene engineering for generating targeted mouse mutants is a key technology for biomedical research. ...
Gene engineering for generating targeted mouse mutants is a key technology for biomedical research. ...
Gene engineering for generating targeted mouse mutants is a key technology for biomedical research. ...
Genetically engineered mice are instrumental for the analysis of mammalian gene function in health a...
Genetically engineered mice are instrumental for the analysis of mammalian gene function in health a...
Targeted mouse mutants are instrumental for the analysis of gene function in health and disease. We ...
Mice are among the most valuable model animal species with an enormous amount of heritage in genetic...
Transcription Activator-Like Effector Nucleases (TALENs) consist of a nuclease domain fused to a DNA...
Injection of transcription activator-like effector nucleases (TALEN)mRNAs into mouse zygotes transfe...
Mice are among the most valuable model animal species with an enormous amount of heritage in genetic...
Transgenic mice carrying site-specific genome modifications (knockout, knock-in) are of vital import...
The study of genetic disease mechanisms relies mostly on targeted mouse mutants that are derived fro...
Genetic engineered mice are instrumental for analysis of gene function in health and disease. Here t...
The functional study of Y chromosome genes has been hindered by a lack of mouse models with specific...
Gene engineering for generating targeted mouse mutants is a key technology for biomedical research. ...
Gene engineering for generating targeted mouse mutants is a key technology for biomedical research. ...
Gene engineering for generating targeted mouse mutants is a key technology for biomedical research. ...
Gene engineering for generating targeted mouse mutants is a key technology for biomedical research. ...
Genetically engineered mice are instrumental for the analysis of mammalian gene function in health a...
Genetically engineered mice are instrumental for the analysis of mammalian gene function in health a...
Targeted mouse mutants are instrumental for the analysis of gene function in health and disease. We ...
Mice are among the most valuable model animal species with an enormous amount of heritage in genetic...
Transcription Activator-Like Effector Nucleases (TALENs) consist of a nuclease domain fused to a DNA...
Injection of transcription activator-like effector nucleases (TALEN)mRNAs into mouse zygotes transfe...
Mice are among the most valuable model animal species with an enormous amount of heritage in genetic...
Transgenic mice carrying site-specific genome modifications (knockout, knock-in) are of vital import...
The study of genetic disease mechanisms relies mostly on targeted mouse mutants that are derived fro...
Genetic engineered mice are instrumental for analysis of gene function in health and disease. Here t...
The functional study of Y chromosome genes has been hindered by a lack of mouse models with specific...