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Activation code for easy translator 12.5
Activation code for easy translator 12.5





activation code for easy translator 12.5

Intragenic recombination of a single plant pathogen gene provides a mechanism for the evolution of new host specificities. Targeting G with TAL effectors: a comparison of activities of TALENs constructed with NN and NK repeat variable di-residues. Transient cold shock enhances zinc-finger nuclease-mediated gene disruption. Complete decoding of TAL effectors for DNA recognition. Differences and similarities in DNA-binding preferences of MyoD and E2A protein complexes revealed by binding site selection. TAL effectors: customizable proteins for DNA targeting. High-throughput profiling of off-target DNA cleavage reveals RNA-programmed Cas9 nuclease specificity. DNA targeting specificity of RNA-guided Cas9 nucleases. High-frequency off-target mutagenesis induced by CRISPR-Cas nucleases in human cells. Broad specificity profiling of TALENs results in engineered nucleases with improved DNA-cleavage specificity. Comprehensive analysis of the specificity of transcription activator-like effector nucleases. CAS9 transcriptional activators for target specificity screening and paired nickases for cooperative genome engineering. Knockout rats generated by embryo microinjection of TALENs. Comprehensive interrogation of natural TALE DNA-binding modules and transcriptional repressor domains. Fusion of catalytically inactive Cas9 to FokI nuclease improves the specificity of genome modification. Dimeric CRISPR RNA-guided FokI nucleases for highly specific genome editing. A TALEN genome-editing system for generating human stem cell-based disease models. TALEN-based gene correction for epidermolysis bullosa. Genetic engineering of human pluripotent cells using TALE nucleases. Transcription activator-like effector nucleases (TALENs): a highly efficient and versatile tool for genome editing. A TALE nuclease architecture for efficient genome editing. TAL nucleases (TALNs): hybrid proteins composed of TAL effectors and FokI DNA-cleavage domain. Targeting DNA double-strand breaks with TAL effector nucleases. The crystal structure of TAL effector PthXo1 bound to its DNA target. Mak, A.N., Bradley, P., Cernadas, R.A., Bogdanove, A.J. Structural basis for sequence-specific recognition of DNA by TAL effectors. A library of TAL effector nucleases spanning the human genome. A ligation-independent cloning technique for high-throughput assembly of transcription activator–like effector genes. Schmid-Burgk, J.L., Schmidt, T., Kaiser, V., Höning, K. FLASH assembly of TALENs for high-throughput genome editing. TAL effector RVD specificities and efficiencies. Efficient design and assembly of custom TALEN and other TAL effector-based constructs for DNA targeting. Breaking the code of DNA binding specificity of TAL-type III effectors. A simple cipher governs DNA recognition by TAL effectors.







Activation code for easy translator 12.5