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A path to efficient gene editing
by
Urnov, Fyodor D.
in
631/532/2064
/ 631/532/2064/2117
/ 692/700/565/201
/ Biomedical and Life Sciences
/ Biomedicine
/ Cancer Research
/ Clustered Regularly Interspaced Short Palindromic Repeats
/ CRISPR
/ CRISPR-Cas Systems
/ CRISPR-Cas technology
/ DNA binding proteins
/ DNA Damage
/ Enzymes
/ Gene Editing
/ Genes
/ Genetic aspects
/ Genetic modification
/ Genetic research
/ Genome editing
/ Genomes
/ Genomics
/ Infectious Diseases
/ Metabolic Diseases
/ Molecular Medicine
/ Neurosciences
/ News & Views
/ news-and-views
/ Nucleases
/ p53 Protein
/ Pluripotency
/ Proteins
/ Retina
/ Retinal pigment epithelium
/ RNA
/ Stem cells
/ Tumor proteins
/ Tumor Suppressor Protein p53 - genetics
/ Tumors
/ Zinc finger proteins
2018
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A path to efficient gene editing
by
Urnov, Fyodor D.
in
631/532/2064
/ 631/532/2064/2117
/ 692/700/565/201
/ Biomedical and Life Sciences
/ Biomedicine
/ Cancer Research
/ Clustered Regularly Interspaced Short Palindromic Repeats
/ CRISPR
/ CRISPR-Cas Systems
/ CRISPR-Cas technology
/ DNA binding proteins
/ DNA Damage
/ Enzymes
/ Gene Editing
/ Genes
/ Genetic aspects
/ Genetic modification
/ Genetic research
/ Genome editing
/ Genomes
/ Genomics
/ Infectious Diseases
/ Metabolic Diseases
/ Molecular Medicine
/ Neurosciences
/ News & Views
/ news-and-views
/ Nucleases
/ p53 Protein
/ Pluripotency
/ Proteins
/ Retina
/ Retinal pigment epithelium
/ RNA
/ Stem cells
/ Tumor proteins
/ Tumor Suppressor Protein p53 - genetics
/ Tumors
/ Zinc finger proteins
2018
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Do you wish to request the book?
A path to efficient gene editing
by
Urnov, Fyodor D.
in
631/532/2064
/ 631/532/2064/2117
/ 692/700/565/201
/ Biomedical and Life Sciences
/ Biomedicine
/ Cancer Research
/ Clustered Regularly Interspaced Short Palindromic Repeats
/ CRISPR
/ CRISPR-Cas Systems
/ CRISPR-Cas technology
/ DNA binding proteins
/ DNA Damage
/ Enzymes
/ Gene Editing
/ Genes
/ Genetic aspects
/ Genetic modification
/ Genetic research
/ Genome editing
/ Genomes
/ Genomics
/ Infectious Diseases
/ Metabolic Diseases
/ Molecular Medicine
/ Neurosciences
/ News & Views
/ news-and-views
/ Nucleases
/ p53 Protein
/ Pluripotency
/ Proteins
/ Retina
/ Retinal pigment epithelium
/ RNA
/ Stem cells
/ Tumor proteins
/ Tumor Suppressor Protein p53 - genetics
/ Tumors
/ Zinc finger proteins
2018
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Journal Article
A path to efficient gene editing
2018
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Overview
Signaling by the tumor-suppressor protein p53 antagonizes CRISPR–Cas9 gene editing of human pluripotent stem cells and immortalized human retinal pigment epithelial cells.
Publisher
Nature Publishing Group US,Nature Publishing Group
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