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Single-strand template repair: key insights to increase the efficiency of gene editing
Journal article   Peer reviewed

Single-strand template repair: key insights to increase the efficiency of gene editing

Danielle N Gallagher and James E Haber
Current genetics, Vol.67(5), pp.747-753
10/2021
Handle:
https://hdl.handle.net/10192/71349
PMID: 33881574

Abstract

Animals DNA, Single-Stranded Gene Editing Humans Rad51 Recombinase - physiology Saccharomyces cerevisiae - genetics Review DNA Repair Mutagenesis
DNA double-strand breaks (DSBs) pose a serious hazard for the stability of the genome. CRISPR-Cas9-mediated gene editing intentionally creates a site-specific DSB to modify the genomic sequence, typically from an introduced single-stranded DNA donor. However, unlike typical forms of homologous recombination, single-strand template repair (SSTR) is Rad51-independent. Moreover, this pathway is distinct from other previously characterized Rad51-independent processes. Here, we briefly review the work characterizing this pathway, and how these findings can be used to guide and improve current gene editing strategies.

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