bioRxiv · 10.1101/2021.09.30.462539
Efficient single copy integration via homology-directed repair (scHDR) by 5'modification of large DNA donor fragments in mice
Abstract
CRISPR/Cas approaches have largely replaced conventional gene targeting strategies. However, homology-directed repair (HDR) in the mouse genome is not very efficient, and precisely inserting longer sequences using HDR remains challenging, given that donor constructs preferentially integrate as concatemers. Here, we show that injecting 5biotinylated donor DNA in mouse embryos at the two-cell stage leads to efficient single-copy HDR (scHDR) alleles. Our dedicated genotyping strategy showed that these alleles occurred with a frequency of 19%, 20%, and 26%, respectively, in three independent gene loci, indicating that scHDR is dramatically boosted by 5biotinylation. Thus, we suggest that a combination of a 5biotinylated donor and diligent analysis of concatemer integration are prerequisites for efficiently and reliably generating conditional alleles or other large fragment knock-ins into the mouse genome.
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Medert, R., Thumberger, T., Tavhelidse, T., Hub, T., Kellner, T., Ogushi, Y., Dlugosz, S., Zimmermann, F., Wittbrodt, J., Freichel, M.. 2021-09-30. Efficient single copy integration via homology-directed repair (scHDR) by 5'modification of large DNA donor fragments in mice. https://doi.org/10.1101/2021.09.30.462539
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