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PINE-TREE enables highly efficient genetic modification of human cell lines.


ABSTRACT: Prime editing technologies enable precise genome editing without the caveats of CRISPR nuclease-based methods. Nonetheless, current approaches to identify and isolate prime-edited cell populations are inefficient. Here, we established a fluorescence-based system, prime-induced nucleotide engineering using a transient reporter for editing enrichment (PINE-TREE), for real-time enrichment of prime-edited cell populations. We demonstrated the broad utility of PINE-TREE for highly efficient introduction of substitutions, insertions, and deletions at various genomic loci. Finally, we employ PINE-TREE to rapidly and efficiently generate clonal isogenic human pluripotent stem cell lines, a cell type recalcitrant to genome editing.

SUBMITTER: Frisch C 

PROVIDER: S-EPMC10425837 | biostudies-literature | 2023 Sep

REPOSITORIES: biostudies-literature

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PINE-TREE enables highly efficient genetic modification of human cell lines.

Frisch Carlye C   Kostes William W WW   Galyon Brooke B   Whitman Brycelyn B   Tekel Stefan J SJ   Standage-Beier Kylie K   Srinivasan Gayathri G   Wang Xiao X   Brafman David A DA  

Molecular therapy. Nucleic acids 20230717


Prime editing technologies enable precise genome editing without the caveats of CRISPR nuclease-based methods. Nonetheless, current approaches to identify and isolate prime-edited cell populations are inefficient. Here, we established a fluorescence-based system, prime-induced nucleotide engineering using a transient reporter for editing enrichment (PINE-TREE), for real-time enrichment of prime-edited cell populations. We demonstrated the broad utility of PINE-TREE for highly efficient introduct  ...[more]

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