Efficient Mutagenesis by Cas9 Protein-Mediated Oligonucleotide Insertion and Large-Scale Assessment of Single-Guide RNAs
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Tessa G. Montague | James A. Gagnon | Summer B. Thyme | A. Schier | Constance Richter | Eivind Valen | A. Pauli | P. Huang | Laila Ahkmetova | Steven Zimmerman
[1] Dana Carroll,et al. Genome engineering with targetable nucleases. , 2014, Annual review of biochemistry.
[2] Jeffry D. Sander,et al. CRISPR-Cas systems for editing, regulating and targeting genomes , 2014, Nature Biotechnology.
[3] Jennifer A. Doudna,et al. Structures of Cas9 Endonucleases Reveal RNA-Mediated Conformational Activation , 2014, Science.
[4] S. Ha,et al. Highly efficient gene knockout in mice and zebrafish with RNA-guided endonucleases , 2014, Genome research.
[5] E. Lander,et al. Genetic Screens in Human Cells Using the CRISPR-Cas9 System , 2013, Science.
[6] Peter Krawitz,et al. Efficient CRISPR/Cas9 genome editing with low off-target effects in zebrafish , 2013, Development.
[7] Eli J. Fine,et al. DNA targeting specificity of RNA-guided Cas9 nucleases , 2013, Nature Biotechnology.
[8] Susan R. Wente,et al. Efficient multiplex biallelic zebrafish genome editing using a CRISPR nuclease system , 2013, Proceedings of the National Academy of Sciences.
[9] Jeffry D. Sander,et al. Heritable and Precise Zebrafish Genome Editing Using a CRISPR-Cas System , 2013, PloS one.
[10] C. Barbas,et al. ZFN, TALEN, and CRISPR/Cas-based methods for genome engineering. , 2013, Trends in biotechnology.
[11] George M. Church,et al. Heritable genome editing in C. elegans via a CRISPR-Cas9 system , 2013, Nature Methods.
[12] Bo Zhang,et al. Chromosomal deletions and inversions mediated by TALENs and CRISPR/Cas in zebrafish , 2013, Nucleic acids research.
[13] Rudolf Jaenisch,et al. One-Step Generation of Mice Carrying Mutations in Multiple Genes by CRISPR/Cas-Mediated Genome Engineering , 2013, Cell.
[14] Xiaojun Zhu,et al. Genome editing with RNA-guided Cas9 nuclease in Zebrafish embryos , 2013, Cell Research.
[15] Jeffry D. Sander,et al. Efficient In Vivo Genome Editing Using RNA-Guided Nucleases , 2013, Nature Biotechnology.
[16] James E. DiCarlo,et al. RNA-Guided Human Genome Engineering via Cas9 , 2013, Science.
[17] Le Cong,et al. Multiplex Genome Engineering Using CRISPR/Cas Systems , 2013, Science.
[18] Cole Trapnell,et al. Ultrafast and memory-efficient alignment of short DNA sequences to the human genome , 2009, Genome Biology.
[19] M. Noyes,et al. Targeted gene inactivation in zebrafish using engineered zinc-finger nucleases , 2008, Nature Biotechnology.
[20] N. Trede,et al. Method for isolation of PCR-ready genomic DNA from zebrafish tissues. , 2007, BioTechniques.
[21] F. Studier,et al. Protein production by auto-induction in high density shaking cultures. , 2005, Protein expression and purification.
[22] P. Gottlieb,et al. Binding of the Priming Nucleotide in the Initiation of Transcription by T7 RNA Polymerase* , 2003, The Journal of Biological Chemistry.
[23] W. Mcallister,et al. Studies of promoter recognition and start site selection by T7 RNA polymerase using a comprehensive collection of promoter variants. , 2000, Biochemistry.
[24] C. Florentz,et al. More mistakes by T7 RNA polymerase at the 5' ends of in vitro-transcribed RNAs. , 1999, RNA.
[25] K. Hall,et al. SP6 RNA polymerase efficiently synthesizes RNA from short double-stranded DNA templates. , 1993, Nucleic Acids Research.