bioRxiv · 10.64898/2026.07.23.740330
5' Complementarity-Mediated End Joining (5'CMEJ) DNA repair
Abstract
How cells choose among competing DNA double-strand break repair pathways, and whether the choice differs across the tree of life, remains poorly understood, limiting prediction of CRISPR editing outcomes, particularly in plants. Through a meta-analysis of 2,098 SpCas9 target sites across plants, animals, and an alga, we show that deletion patterns reflect cell-division status rather than taxonomic origin: dividing cells favour polymerase Theta-Mediated End Joining (TMEJ), whereas non-dividing cells employ a largely overlooked pathway, 5 Complementarity-Mediated End Joining (5CMEJ). Unlike the known resection-dependent pathways, which use 3 overhangs, 5CMEJ exploits the 5 overhangs generated by staggered SpCas9 cleavage.
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Pribylova, A., Ponce-Lilly, C., Molnar, A., Fischer, L.. 2026-07-24. 5' Complementarity-Mediated End Joining (5'CMEJ) DNA repair. https://doi.org/10.64898/2026.07.23.740330
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