We present a novel approach for generating targeted deletions of genomic segments in human and other eukaryotic cells using engineered zinc finger nucleases (ZFNs). We found that ZFNs designed to target two different sites in a human chromosome could introduce two concurrent DNA double-strand breaks (DSBs) in the chromosome and give rise to targeted deletions of the genomic segment between the two sites. Using this method in human cells, we were able to delete predetermined genomic DNA segments in the range of several-hundred base pairs (bp) to 15 mega-bp at frequencies of 10(-3) to 10(-1). These high frequencies allowed us to isolate clonal populations of cells, in which the target chromosomal segments were deleted, by limiting dilution. S...
Abstract The ability to create DNA double-strand breaks (DSBs) at specified genomic locations, which...
Most genome disorders cause severe symptoms and are usually incurable. Recent, rapid development of ...
Safe, efficient, and broadly applicable methods for delivering site-specific nucleases into cells ar...
Zinc-finger nucleases (ZFNs) are versatile reagents that have redefined genome engineering. Realizin...
Broad applications of zinc finger nuclease (ZFN) technology-which allows targeted genome editing-in ...
The rational engineering of eukaryotic genomes would facilitate the study of heritable changes in ge...
AbstractGenome engineering with programmable nucleases depends on cellular responses to a targeted d...
Efficient methods for creating targeted genetic modifications have long been sought for the investig...
Designer nucleases allow for the precise modification of a given DNA sequence by the introduction of...
Despite the recent discoveries of and interest in numerous structural variations (SVs)-which include...
Zinc finger nucleases (ZFNs) are engineered restriction enzymes designed to target specific DNA sequ...
Targeted genetic engineering of human pluripotent cells is a prerequisite for exploiting their full ...
BACKGROUND: Formation of site specific genomic double strand breaks (DSBs), induced by the expressio...
With the development of next-generation sequencing technology, ever-expanding databases of genetic i...
AbstractGenome engineering with programmable nucleases depends on cellular responses to a targeted d...
Abstract The ability to create DNA double-strand breaks (DSBs) at specified genomic locations, which...
Most genome disorders cause severe symptoms and are usually incurable. Recent, rapid development of ...
Safe, efficient, and broadly applicable methods for delivering site-specific nucleases into cells ar...
Zinc-finger nucleases (ZFNs) are versatile reagents that have redefined genome engineering. Realizin...
Broad applications of zinc finger nuclease (ZFN) technology-which allows targeted genome editing-in ...
The rational engineering of eukaryotic genomes would facilitate the study of heritable changes in ge...
AbstractGenome engineering with programmable nucleases depends on cellular responses to a targeted d...
Efficient methods for creating targeted genetic modifications have long been sought for the investig...
Designer nucleases allow for the precise modification of a given DNA sequence by the introduction of...
Despite the recent discoveries of and interest in numerous structural variations (SVs)-which include...
Zinc finger nucleases (ZFNs) are engineered restriction enzymes designed to target specific DNA sequ...
Targeted genetic engineering of human pluripotent cells is a prerequisite for exploiting their full ...
BACKGROUND: Formation of site specific genomic double strand breaks (DSBs), induced by the expressio...
With the development of next-generation sequencing technology, ever-expanding databases of genetic i...
AbstractGenome engineering with programmable nucleases depends on cellular responses to a targeted d...
Abstract The ability to create DNA double-strand breaks (DSBs) at specified genomic locations, which...
Most genome disorders cause severe symptoms and are usually incurable. Recent, rapid development of ...
Safe, efficient, and broadly applicable methods for delivering site-specific nucleases into cells ar...