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Efficient and error-free fluorescent gene tagging in human organoids without double-strand DNA cleavage

PLoS Biol. 2022-01; 
Yannik Bollen, Joris H Hageman, Petra van Leenen, Lucca L M Derks, Bas Ponsioen, Julian R Buissant des Amorie, Ingrid Verlaan-Klink, Myrna van den Bos, Leon W M M Terstappen, Ruben van Boxtel, Hugo J G Snippert
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GenParts™ DNA Fragments Targeting vector backbones were generated by recombinase-based seamless assembly (In-Fusion cloning, Takara Biotech) of a commercially synthesized DNA fragment (IDT or Genscript) carrying mNeongreen Get A Quote

摘要

CRISPR-associated nucleases are powerful tools for precise genome editing of model systems, including human organoids. Current methods describing fluorescent gene tagging in organoids rely on the generation of DNA double-strand breaks (DSBs) to stimulate homology-directed repair (HDR) or non-homologous end joining (NHEJ)-mediated integration of the desired knock-in. A major downside associated with DSB-mediated genome editing is the required clonal selection and expansion of candidate organoids to verify the genomic integrity of the targeted locus and to confirm the absence of off-target indels. By contrast, concurrent nicking of the genomic locus and targeting vector, known as in-trans paired nicking (ITPN), s... More

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