Zinc-finger nucleases (ZFNs) and TAL-effector nucleases (TALENs) are powerful tools for creating genetic modifications in eukaryotic cells and organisms. But wild-type and mutant cells that contain genetic modifications induced by these programmable nucleases are often phenotypically indistinguishable, hampering isolation of mutant cells. Here we show that transiently transfected episomal reporters encoding fluorescent proteins can be used as surrogate genes for the efficient enrichment of endogenous gene-modified cells by flow cytometryope
AbstractGenome engineering with programmable nucleases depends on cellular responses to a targeted d...
Gene targeting (GT) can introduce subtle alterations into a particular locus and represents a powerf...
Zinc-finger nucleases (ZFNs) are versatile reagents that have redefined genome engineering. Realizin...
Zinc-finger nucleases (ZFNs) and TAL-effector nucleases (TALENs) are powerful tools for creating gen...
Targeted gene knockout using engineered nucleases such as transcription activator like-effector nucl...
Targeted gene knockout using engineered nucleases such as transcription activator like-effector nucl...
The ability to enrich cells with targeted mutations greatly facilitates the process of using enginee...
The ability to enrich cells with targeted mutations greatly facilitates the process of using enginee...
<div><p>The ability to enrich cells with targeted mutations greatly facilitates the process of using...
The ability to enrich cells with targeted mutations greatly facilitates the process of using enginee...
Targeted gene knockout using engineered nucleases such as transcription activator like-effector nucl...
The ability to enrich cells with targeted mutations greatly facilitates the process of using enginee...
RNA-guided endonucleases (RGENs), which are based on the clustered, regularly interspaced, short pal...
RNA-guided endonucleases (RGENs), which are based on the clustered, regularly interspaced, short pal...
Current approaches to identify cell populations that have been modified with deaminase base editing ...
AbstractGenome engineering with programmable nucleases depends on cellular responses to a targeted d...
Gene targeting (GT) can introduce subtle alterations into a particular locus and represents a powerf...
Zinc-finger nucleases (ZFNs) are versatile reagents that have redefined genome engineering. Realizin...
Zinc-finger nucleases (ZFNs) and TAL-effector nucleases (TALENs) are powerful tools for creating gen...
Targeted gene knockout using engineered nucleases such as transcription activator like-effector nucl...
Targeted gene knockout using engineered nucleases such as transcription activator like-effector nucl...
The ability to enrich cells with targeted mutations greatly facilitates the process of using enginee...
The ability to enrich cells with targeted mutations greatly facilitates the process of using enginee...
<div><p>The ability to enrich cells with targeted mutations greatly facilitates the process of using...
The ability to enrich cells with targeted mutations greatly facilitates the process of using enginee...
Targeted gene knockout using engineered nucleases such as transcription activator like-effector nucl...
The ability to enrich cells with targeted mutations greatly facilitates the process of using enginee...
RNA-guided endonucleases (RGENs), which are based on the clustered, regularly interspaced, short pal...
RNA-guided endonucleases (RGENs), which are based on the clustered, regularly interspaced, short pal...
Current approaches to identify cell populations that have been modified with deaminase base editing ...
AbstractGenome engineering with programmable nucleases depends on cellular responses to a targeted d...
Gene targeting (GT) can introduce subtle alterations into a particular locus and represents a powerf...
Zinc-finger nucleases (ZFNs) are versatile reagents that have redefined genome engineering. Realizin...