Interstrand Crosslinks in Donor DNA Boost Gene Editing in Human Cells
Ghasemi, H. I.; Bacal, J. I.; Yoon, A. I.; Cruz, C. I.; Vu, J. I.; Gardner, B. I.; Richardson, C. I.
Show abstract
Co-introduction of targeted nucleases and DNA/RNA templates encoding new genomic sequence is the basis for rapid, effective, and iterable gene editing workflows for therapeutic, agricultural, and basic science applications. Extensive optimization of reagent delivery and nuclease activity have improved genome editing workflows, but comparatively few efforts have been made to alter the gene editing activity of template molecules. Here, we report template DNA modified with interstrand crosslinks (ICLs) - xHDRTs - increases editing frequencies in Cas9-directed gene editing workflows by up to five-fold. xHDRTs increase gene editing frequencies independent of DNA template topology, amount of sequence added, or cell type. Gene editing using xHDRTs requires the DNA repair kinase, ATR, and partially requires Fanconi Anemia proteins, including FANCA, but is independent of other ICL-repair pathways. Covalent modification of donor DNA thus presents a compelling opportunity to improve nonviral gene editing workflows.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Simultaneous inhibition of DNA-PK and Pol{Theta} improves integration efficiency and precision of genome editing 97%
- Harnessing DSB repair to promote efficient homology-dependent and -independent prime editing 96%
- The Fanconi anemia core complex promotes CtIP-dependent end-resection to drive homologous recombination at DNA double-strand breaks 96%
Similar papers in this journal
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.