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Engineered CRISPR-Cas12a for higher-order combinatorial chromatin perturbations (RNA-Seq)

GSE260828 Homo sapiens Expression profiling by high throughput sequencing 7 samples Submitted 2024/03/06 Platform GPL20301
Summary
Multiplexed genetic perturbations are critical for testing functional interactions among coding or non-coding genetic elements. Compared to double-stranded DNA cutting, repressive chromatin formation using CRISPR interference (CRISPRi) avoids genotoxicity and is more effective for perturbing non-coding regulatory elements in pooled assays. However, current CRISPRi pooled screening approaches are limited to targeting 1-3 genomic sites per cell. We engineer an Acidaminococcus Cas12a (AsCas12a) variant, multiplexed transcriptional interference AsCas12a (multiAsCas12a), that incorporates R1226A, a mutation that stabilizes the ribonucleoprotein:DNA complex via DNA nicking. The multiAsCas12a-KRAB fusion improves CRISPRi activity over DNase-dead AsCas12a-KRAB fusions, often rescuing the activities of lentivirally delivered CRISPR RNAs (crRNA) that are inactive when used with the latter. multiAsCas12a-KRAB supports CRISPRi using 6-plex crRNA arrays in high-throughput pooled screens. Using multiAsCas12a-KRAB, we discover enhancer elements and dissect the combinatorial function of cis-regulatory elements in human cells. These results instantiate a group testing framework for efficiently surveying numerous combinations of chromatin perturbations for biological discovery and engineering.
Published in
Engineered CRISPR-Cas12a for higher-order combinatorial chromatin perturbations
Hsiung CC, Wilson CM, Sambold NA et al. · Nature biotechnology 2025 · PMID 38760567 · doi:10.1038/s41587-024-02224-0
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Also filed as BioProject PRJNA1083587 and SRA study SRP493234. Searching any of these in the dataset finder brings you back here.

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