TAL Effector nucleases (TALENs) are artificial restriction enzymes, created by fusing an engineered TAL DNA binding domain
(which targets a desired sequences) with the DNA cleavage domain of FokI, a type II restriction enzyme. Learn More
TAL Effector nucleases (TALENs) are artificial restriction enzymes, created by fusing an engineered TAL DNA binding domain
(which targets a desired sequences) with the DNA cleavage domain of FokI, a type II restriction enzyme. Learn More
TAL Effector nucleases (TALENs) are artificial restriction enzymes, created by fusing an engineered TAL DNA binding domain
(which targets a desired sequences) with the DNA cleavage domain of FokI, a type II restriction enzyme. Learn More
TAL Effector nucleases (TALENs) are artificial restriction enzymes, created by fusing an engineered TAL DNA binding domain
(which targets a desired sequences) with the DNA cleavage domain of FokI, a type II restriction enzyme. Learn More
TAL Effector nucleases (TALENs) are artificial restriction enzymes, created by fusing an engineered TAL DNA binding domain
(which targets a desired sequences) with the DNA cleavage domain of FokI, a type II restriction enzyme. Learn More
Zinc finger nucleases (ZFNs) are artificial restriction enzymes, created by fusing an engineered zinc finger DNA binding domain
(which targets a desired sequences) with the DNA cleavage domain of FokI, a type II restriction enzyme. Learn More
A key application for TALEs is the targeted activation and repression of target genes in cells by fusing transactivation domains to TALE DNA binding domains . The TALE-TF construct is a powerful tool to selectively modulate gene expression in eukaryotic c Learn More
Genome-TALER™ human AAVS1 safe harbor gene targeting kit is designed to specifically transfer your gene of interest, selection marker or other genetic element from a donor plasmid into the AAVS1 safe harbor site in human chromosome 19 via TALEN-mediated homologous recombination Learn More