Targeting DNA double-strand breaks is a powerful strategy for gene inactivation applications. Without the use of a repair plasmid, targeted mutagenesis can be achieved through Non-Homologous End joining (NHEJ) pathways. However, many of the DNA breaks produced by engineered nucleases may be subject to precise re-ligation without loss of genetic information and thus are likely to be unproductive. In this study, we combined engineered endonucleases and DNA-end processing enzymes to increase the efficiency of targeted mutagenesis, providing a robust and efficient method to (i) greatly improve targeted mutagenesis frequency up to 30-fold, and; (ii) control the nature of mutagenic events using meganucleases in conjunction with DNA-end processing...
Genome editing using transcription-activator like effector nucleases or RNA guided nucleases allows ...
The performed research examines the response of K562 cells to targeted introduction of double strand...
Homing endonucleases recognize long target DNA sequences generating an accurate double-strand break ...
<div><p>Targeting DNA double-strand breaks is a powerful strategy for gene inactivation applications...
<p>With the exception of engineered homing endonucleases (“meganucleases”) in which the function of ...
Targeting gene disruptions in complex genomes re-lies on imprecise repair by the non-homologous end-...
Endonucleases play an essential role in genetic engineering and molecular biology. A major barrier t...
Homing endonucleases are useful tools for genome modification because of their capability to recogni...
Meganucleases, also termed homing endonucleases, are rare-cutting enzymes that are encoded within th...
Designer nucleases allow for the precise modification of a given DNA sequence by the introduction of...
<div><p>Genome editing using transcription-activator like effector nucleases or RNA guided nucleases...
Designer nucleases allow for the precise modification of a given DNA sequence by the introduction of...
Methods to introduce targeted double-strand breaks (DSBs) into DNA enable precise genome editing by ...
To correct a DNA mutation in the human genome for gene therapy, homology-directed repair (HDR) needs...
Homing endonucleases are useful tools for genome modification because of their capability to recogni...
Genome editing using transcription-activator like effector nucleases or RNA guided nucleases allows ...
The performed research examines the response of K562 cells to targeted introduction of double strand...
Homing endonucleases recognize long target DNA sequences generating an accurate double-strand break ...
<div><p>Targeting DNA double-strand breaks is a powerful strategy for gene inactivation applications...
<p>With the exception of engineered homing endonucleases (“meganucleases”) in which the function of ...
Targeting gene disruptions in complex genomes re-lies on imprecise repair by the non-homologous end-...
Endonucleases play an essential role in genetic engineering and molecular biology. A major barrier t...
Homing endonucleases are useful tools for genome modification because of their capability to recogni...
Meganucleases, also termed homing endonucleases, are rare-cutting enzymes that are encoded within th...
Designer nucleases allow for the precise modification of a given DNA sequence by the introduction of...
<div><p>Genome editing using transcription-activator like effector nucleases or RNA guided nucleases...
Designer nucleases allow for the precise modification of a given DNA sequence by the introduction of...
Methods to introduce targeted double-strand breaks (DSBs) into DNA enable precise genome editing by ...
To correct a DNA mutation in the human genome for gene therapy, homology-directed repair (HDR) needs...
Homing endonucleases are useful tools for genome modification because of their capability to recogni...
Genome editing using transcription-activator like effector nucleases or RNA guided nucleases allows ...
The performed research examines the response of K562 cells to targeted introduction of double strand...
Homing endonucleases recognize long target DNA sequences generating an accurate double-strand break ...