Off-target effects as confounders of Cas13d-based lncRNA screens
Despite their recognized role in biology, a majority of the [~]100,000 lncRNA genes remain functionally uncharacterized. In a recent study (Liang WW et al., Transcriptome-scale RNA-targeting CRISPR screens reveal essential lncRNAs in human cells, Cell, 2024), Liang et al. utilized the RNA nuclease Cas13d to perturb [~]6,200 lncRNAs in fitness screens across five cell lines - thereby identifying 778 lncRNAs with broad or context-specific essentiality. However, previous screens reported a lower proportion of essential lncRNAs. To investigate this discrepancy, we re-analysed Liang et al.s data and found that 68.1% of gRNAs causing fitness defects have off-targets in essential protein-coding genes. This caused numerous false-positive hits, particularly among lncRNAs classified as broadly essential. Off-target effects also compromise the studys validation efforts, including experiments combining single-cell transcriptomics and lncRNA-perturbations, which confirm the downregulation of off-target protein-coding genes identified in our analyses. The large number of false-positive hits reported by Liang et al. undermines the studys biological conclusions and endangers future research building on these data, if not considered.