bioRxiv · 10.1101/2021.12.01.470847
CRISPR gene-drive systems based on Cas9 nickases promote super-Mendelian inheritance in Drosophila
Abstract
CRISPR-based gene-drive systems have been proposed for managing insect populations, including disease-transmitting mosquitoes, due to their ability to bias their inheritance towards super-Mendelian rates (>50%). Current technologies employ a Cas9 that introduces DNA double-strand breaks into the opposing wildtype allele to replace it with a copy of the gene drive allele via DNA homology-directed repair. Yet, the use of different Cas9s versions is unexplored, and alternative approaches could increase the available toolkit for gene-drive designs. Here, we report a novel gene-drive approach that relies on Cas9 nickases that generate staggered paired nicks in DNA to propagate the engineered gene-drive cassette. We show that generating 5 overhangs in the system yields efficient allelic conversion. The nickase gene-drive arrangement produces large, stereotyped deletions that are advantageous for targeting essential genes. Indeed, our nickase approach should expand the repertoire for gene-drive designs aimed at applications in mosquitoes and beyond.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Lopez del Amo, V., Sanz Juste, S., Gantz, V. M.. 2021-12-02. CRISPR gene-drive systems based on Cas9 nickases promote super-Mendelian inheritance in Drosophila. https://doi.org/10.1101/2021.12.01.470847
Cite the original work for its findings. Save a collection to share your selection of sources.