bioRxiv · 10.1101/2025.07.24.666689
Optimized CRISPR Perturbation Illuminates the Functions of RNA Modification Proteins
Abstract
iMAP is a large-scale CRISPR perturbation platform based on a germline-transmitted transgene comprising individually floxed, tandemly linked guides that can be inducibly expressed via Cre-mediated recombination. A key limitation was strong recombination bias favoring the proximal guides. Here, we effectively mitigated this bias by inactivating a recombination hotspot, yielding guide representation nearly as uniform as traditional lentiviral libraries. Applying this optimized platform, we systematically profiled 70 (52%) RNA modification factors across 46 mouse tissues, uncovering pervasive tissue-specific essentiality. Notably, iMAP displayed much higher essential gene recovery than prior lentiviral CRISPR screens, attributable to its stronger guide depletion and lower technical noise. Finally, in a tumor model, iMAP identified Thg1l as a repressor of NK cell TNF production; its ortholog knockout enhanced human NK cell-mediated tumor killing, underscoring therapeutic potential. All data are available in an interactive iMAP database. This work advances the Perturbation Atlas, a foundational resource for functional genomics. TeaserA unique CRISPR perturbation tool has been upgraded and deployed to reveal functions of epigenetic regulators in mice.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Chi, T., Wei, G., Jing, Z. y., Wang, W. k.. 2025-07-27. Optimized CRISPR Perturbation Illuminates the Functions of RNA Modification Proteins. https://doi.org/10.1101/2025.07.24.666689
Cite the original work for its findings. Save a collection to share your selection of sources.