Standout Papers

Multiple Pathways of Recombination Induced by Double-Strand Breaks in <i>Saccharomyces cerevis... 1999 2026 2008 2017 1.7k
  1. Multiple Pathways of Recombination Induced by Double-Strand Breaks in Saccharomyces cerevisiae (1999)
    Frédéric Pâques, James E. Haber Microbiology and Molecular Biology Reviews

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Works of Frédéric Pâques being referenced

Context dependence between subdomains in the DNA binding interface of the I-CreI homing endonuclease
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Generation and Analysis of Mesophilic Variants of the Thermostable Archaeal I-DmoI Homing Endonuclease
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Robust Cell Line Development Using Meganucleases
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Computer design of obligate heterodimer meganucleases allows efficient cutting of custom DNA sequences
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High Frequency Targeted Mutagenesis Using Engineered Endonucleases and DNA-End Processing Enzymes
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Targeted approaches for gene therapy and the emergence of engineered meganucleases
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Coupling endonucleases with DNA end–processing enzymes to drive gene disruption
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Meganuclease-mediated Inhibition of HSV1 Infection in Cultured Cells
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Molecular basis of xeroderma pigmentosum group C DNA recognition by engineered meganucleases
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Meganucleases and DNA Double-Strand Break-Induced Recombination: Perspectives for Gene Therapy
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Meganucleases can restore the reading frame of a mutated dystrophin
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Engineering of Large Numbers of Highly Specific Homing Endonucleases that Induce Recombination on Novel DNA Targets
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Role of yeast SIR genes and mating type in directing DNA double-strand breaks to homologous and non-homologous repair paths
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Efficient in toto targeted recombination in mouse liver by meganuclease‐induced double‐strand break
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A combinatorial approach to create artificial homing endonucleases cleaving chosen sequences
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