Mouse embryonic stem (ES) cells are a popular model system to study biological processes, though uncovering recessive phenotypes requires inactivating both alleles. Building upon resources from the International Knockout Mouse Consortium (IKMC), we developed a targeting vector for second allele inactivation in conditional-ready IKMC 'knockout-first' ES cell lines. We applied our technology to several epigenetic regulators, recovering bi-allelic targeted clones with a high efficiency of 60% and used Flp recombinase to restore expression in two null cell lines to demonstrate how our system confirms causality through mutant phenotype reversion. We designed our strategy to select against re-targeting the 'knockout-first' allele and identify ess...
SummaryInduction of double-strand DNA breaks (DSBs) by engineered nucleases, such as CRISPR/Cas9 or ...
Embryonic stem (ES) cells are derived from the pluripotent inner cell mass (ICN) cells of blastocyst...
Mutant mice are important for elucidating mammalian gene functions and for modeling human disease ph...
Mouse embryonic stem (ES) cells are a popular model system to study biological processes, though unc...
Journal ArticleGene targeting--homologous recombination of DNA sequences residing in the chromosome ...
Targeted gene disrupted mice can be efficiently generated by expressing a single guide RNA (sgRNA)/C...
Gene knockout in murine embryonic stem cells (ESCs) has been an invaluable tool to study gene functi...
Targeted gene mutation in the mouse is a primary strategy to understand gene function and relation t...
Background: Knowledge of the intrinsic properties of embryonic stem cells is essential before the po...
The use of gene mutation/knock-out strategies in mouse embryonic stem (ES) cells has revolutionized ...
Using selectable genes as proof of principle, a new high-throughput genotype-based mutation screen i...
Embryonic stem cells (ES cells) are derived from the inner cell mass of preimplantation stage embryo...
We describe a two-step strategy to alter any mouse locus repeatedly and efficiently by direct positi...
Animal models possess undeniable utility for progress on biomedical research projects and developmen...
Gene knockout in murine embryonic stem cells (ESCs) has been an invaluable tool to study gene functi...
SummaryInduction of double-strand DNA breaks (DSBs) by engineered nucleases, such as CRISPR/Cas9 or ...
Embryonic stem (ES) cells are derived from the pluripotent inner cell mass (ICN) cells of blastocyst...
Mutant mice are important for elucidating mammalian gene functions and for modeling human disease ph...
Mouse embryonic stem (ES) cells are a popular model system to study biological processes, though unc...
Journal ArticleGene targeting--homologous recombination of DNA sequences residing in the chromosome ...
Targeted gene disrupted mice can be efficiently generated by expressing a single guide RNA (sgRNA)/C...
Gene knockout in murine embryonic stem cells (ESCs) has been an invaluable tool to study gene functi...
Targeted gene mutation in the mouse is a primary strategy to understand gene function and relation t...
Background: Knowledge of the intrinsic properties of embryonic stem cells is essential before the po...
The use of gene mutation/knock-out strategies in mouse embryonic stem (ES) cells has revolutionized ...
Using selectable genes as proof of principle, a new high-throughput genotype-based mutation screen i...
Embryonic stem cells (ES cells) are derived from the inner cell mass of preimplantation stage embryo...
We describe a two-step strategy to alter any mouse locus repeatedly and efficiently by direct positi...
Animal models possess undeniable utility for progress on biomedical research projects and developmen...
Gene knockout in murine embryonic stem cells (ESCs) has been an invaluable tool to study gene functi...
SummaryInduction of double-strand DNA breaks (DSBs) by engineered nucleases, such as CRISPR/Cas9 or ...
Embryonic stem (ES) cells are derived from the pluripotent inner cell mass (ICN) cells of blastocyst...
Mutant mice are important for elucidating mammalian gene functions and for modeling human disease ph...