Precise gene deletion and replacement using the CRISPR/Cas9 system in human cells
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Title
Precise gene deletion and replacement using the CRISPR/Cas9 system in human cells
Authors
Keywords
-
Journal
BIOTECHNIQUES
Volume 57, Issue 3, Pages -
Publisher
Future Science, LTD
Online
2016-07-06
DOI
10.2144/000114196
References
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Related references
Note: Only part of the references are listed.- Double Nicking by RNA-Guided CRISPR Cas9 for Enhanced Genome Editing Specificity
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- Genome Engineering of Drosophila with the CRISPR RNA-Guided Cas9 Nuclease
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- CAS9 transcriptional activators for target specificity screening and paired nickases for cooperative genome engineering
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- DNA targeting specificity of RNA-guided Cas9 nucleases
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- A library of TAL effector nucleases spanning the human genome
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- High-throughput profiling of off-target DNA cleavage reveals RNA-programmed Cas9 nuclease specificity
- (2013) Vikram Pattanayak et al. NATURE BIOTECHNOLOGY
- High-frequency off-target mutagenesis induced by CRISPR-Cas nucleases in human cells
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- Targeting Human MicroRNA Genes Using Engineered Tal-Effector Nucleases (TALENs)
- (2013) Ruozhen Hu et al. PLoS One
- RNA-Guided Human Genome Engineering via Cas9
- (2013) P. Mali et al. SCIENCE
- Multiplex Genome Engineering Using CRISPR/Cas Systems
- (2013) L. Cong et al. SCIENCE
- RNA-guided genetic silencing systems in bacteria and archaea
- (2012) Blake Wiedenheft et al. NATURE
- A Programmable Dual-RNA-Guided DNA Endonuclease in Adaptive Bacterial Immunity
- (2012) M. Jinek et al. SCIENCE
- CRISPR RNA maturation by trans-encoded small RNA and host factor RNase III
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- CRISPR interference: RNA-directed adaptive immunity in bacteria and archaea
- (2010) Luciano A. Marraffini et al. NATURE REVIEWS GENETICS
- Zinc-finger nuclease-driven targeted integration into mammalian genomes using donors with limited chromosomal homology
- (2010) Salvatore J. Orlando et al. NUCLEIC ACIDS RESEARCH
- CRISPR/Cas, the Immune System of Bacteria and Archaea
- (2010) P. Horvath et al. SCIENCE
- Targeted chromosomal deletions in human cells using zinc finger nucleases
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