ZFN technology is a powerful research tool and has been used for genome editing in cells lines, animals and plants. The generation of functional ZFNs for particular targets in mammalian genome is still challenging for an average research group. The modular-assembly method is relatively fast, easy-to-practice but has a high failure rate. Some recent studies suggested that a ZFP with low binding activity might be able to form a working ZFN pair with another binding active half-ZFP. In order to unveil the potential ZFP candidates among those with low binding activities, this paper established a highly sensitive mammalian cell-based transcriptional reporter system to assess the DNA binding activities of ZFPs by inserting multiple copies of ZFN ...
With the development of next-generation sequencing technology, ever-expanding databases of genetic i...
BACKGROUND: Formation of site specific genomic double strand breaks (DSBs), induced by the expressio...
International audienceBACKGROUND: Zinc finger nucleases (ZFNs) are promising tools for genome editin...
<div><p>ZFN technology is a powerful research tool and has been used for genome editing in cells lin...
Zinc finger nucleases (ZFNs) have been successfully used for genome modification in various cell typ...
Efficient methods for creating targeted genetic modifications have long been sought for the investig...
The rational engineering of eukaryotic genomes would facilitate the study of heritable changes in ge...
Broad applications of zinc finger nuclease (ZFN) technology-which allows targeted genome editing-in ...
Zinc-finger nucleases (ZFNs) are versatile reagents that have redefined genome engineering. Realizin...
C2H2-zinc fingers (ZFs) are commonly found in transcription factors that code for nearly 3% of gene ...
Targeted gene addition to mammalian genomes is central to biotechnology, basic research and gene the...
Yeast two-hybrid (Y2H) methods are powerful tools for detecting protein-protein interactions. The tr...
<p>(A) Plasmid ZFN-TS, for testing ZFN in vitro enzyme activity. DNA fragment corresponding to the Z...
We present a novel approach for generating targeted deletions of genomic segments in human and other...
<div><p>Zinc finger nucleases (ZFNs) enable precise genome modification in a variety of organisms an...
With the development of next-generation sequencing technology, ever-expanding databases of genetic i...
BACKGROUND: Formation of site specific genomic double strand breaks (DSBs), induced by the expressio...
International audienceBACKGROUND: Zinc finger nucleases (ZFNs) are promising tools for genome editin...
<div><p>ZFN technology is a powerful research tool and has been used for genome editing in cells lin...
Zinc finger nucleases (ZFNs) have been successfully used for genome modification in various cell typ...
Efficient methods for creating targeted genetic modifications have long been sought for the investig...
The rational engineering of eukaryotic genomes would facilitate the study of heritable changes in ge...
Broad applications of zinc finger nuclease (ZFN) technology-which allows targeted genome editing-in ...
Zinc-finger nucleases (ZFNs) are versatile reagents that have redefined genome engineering. Realizin...
C2H2-zinc fingers (ZFs) are commonly found in transcription factors that code for nearly 3% of gene ...
Targeted gene addition to mammalian genomes is central to biotechnology, basic research and gene the...
Yeast two-hybrid (Y2H) methods are powerful tools for detecting protein-protein interactions. The tr...
<p>(A) Plasmid ZFN-TS, for testing ZFN in vitro enzyme activity. DNA fragment corresponding to the Z...
We present a novel approach for generating targeted deletions of genomic segments in human and other...
<div><p>Zinc finger nucleases (ZFNs) enable precise genome modification in a variety of organisms an...
With the development of next-generation sequencing technology, ever-expanding databases of genetic i...
BACKGROUND: Formation of site specific genomic double strand breaks (DSBs), induced by the expressio...
International audienceBACKGROUND: Zinc finger nucleases (ZFNs) are promising tools for genome editin...