Genome editing technologies operate by inducing site-specific DNA perturbations that are resolved by cellular DNA repair pathways. Products of genome editors include DNA breaks …
MTN Yarnall, EI Ioannidi, C Schmitt-Ulms… - Nature …, 2023 - nature.com
Programmable genome integration of large, diverse DNA cargo without DNA repair of exposed DNA double-strand breaks remains an unsolved challenge in genome editing. We …
Zinc-finger nucleases (ZFNs) and transcription activator-like effector nucleases (TALENs) comprise a powerful class of tools that are redefining the boundaries of biological research …
S Becker, J Boch - Gene and Genome Editing, 2021 - Elsevier
TALEN were the first easy-to-use genome editing technology and sparked the genome editing revolution. Their application in multiple species brought targeted mutagenesis to the …
T Gaj, SJ Sirk, S Shui, J Liu - Cold Spring Harbor …, 2016 - cshperspectives.cshlp.org
Targeted nucleases have provided researchers with the ability to manipulate virtually any genomic sequence, enabling the facile creation of isogenic cell lines and animal models for …
Engineered nucleases enable the targeted alteration of nearly any gene in a wide range of cell types and organisms. The newly-developed transcription activator-like effector …
D Carroll - Annual review of biochemistry, 2014 - annualreviews.org
Current technology enables the production of highly specific genome modifications with excellent efficiency and specificity. Key to this capability are targetable DNA cleavage …
AA Nemudryi, KR Valetdinova… - Acta Naturae …, 2014 - cyberleninka.ru
Precise studies of plant, animal and human genomes enable remarkable opportunities of obtained data application in biotechnology and medicine. However, knowing nucleotide …
Y Nihongaki, S Yamamoto, F Kawano, H Suzuki… - Chemistry & biology, 2015 - cell.com
Targeted endogenous gene activation is necessary for understanding complex gene networks and has great potential in medical and industrial applications. The CRISPR-Cas …