Disentangling spatial organization and splicing of rare intron classes in the human genome
Springer, S. M.; Fleck, K.; Girardini, K. N.; Riccard, S. M.; Erceg, J.; Kanadia, R. N.
Show abstract
Three-dimensional (3D) genome organization influences transcription and RNA processing, yet how the spatial positioning of genes contributes to pre-mRNA splicing has only recently come into focus. Despite these advances, it remains unclear how introns, particularly rare intron classes, are organized within the 3D genome and whether this organization influences their splicing. Here, we mapped the spatial organization of six intron classes including major, minor, minor-like, hybrid, major-like and non-canonical across four human cell lines (K562, H1, HCT116, and HFFc6) using Hi-C, TSA-seq, and DamID-seq data. This revealed minor intron enrichment in active compartments A and speckle-associated domains (SPADs) and depletion from lamina-associated domains (LADs), whereas hybrid and non-canonical introns showed the opposite trend. Integrating TSA-seq with RNA-seq data suggested that splicing efficiency depends on intron identity rather than nuclear positioning. For example, major-like, minor-like, and non-canonical introns in SPADs were less efficiently spliced than major and minor introns despite their proximity to nuclear speckles. These patterns were consistent across cancer (K562, HCT116) and stem cells (H1) but not fibroblasts (HFFc6). Comparison of minor intron splicing in and out of SPADs across cell lines revealed that, relative to fibroblasts, minor introns outside of SPADs in cancer cells were more efficiently spliced. This suggests that increased efficiency of minor intron splicing in cancer cell lines is not necessarily due to 3D positioning. In all, these findings reveal that intron subclasses show distinct nuclear organization, yet for minor introns, identity rather than position governs splicing efficiency.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A network of DZF proteins controls alternative splicing regulation and fidelity 97%
- U6 snRNA m6A modification is required for accurate and efficient cis- and trans-splicing of C. elegans mRNAs 96%
- Native Elongation Transcript sequencing reveals temperature dependent dynamics of nascent RNAPII transcription in Arabidopsis 96%
Similar papers in this journal
- CpG island turnover events predict evolutionary changes in enhancer activity 96%
- Mapping and modeling the genomic basis of differential RNA isoform expression at single-cell resolution with LR-Split-seq 96%
- DNA polymerase epsilon is a central coordinator of heterochromatin structure and function in Arabidopsis 95%
Similar papers in this journal
- Transposable elements strongly contribute to cell-specific and species-specific looping diversity in mammalian genomes. 95%
- LUC7 proteins define two major classes of 5' splice sites in animals and plants 95%
- Gapped-kmer sequence modeling robustly identifies regulatory vocabularies and distal enhancers conserved between evolutionarily distant mammals 95%
Similar papers in this journal
- A limited set of transcriptional programs define major cell types 95%
- Identifying cell-state associated alternative splicing events and their co-regulation 95%
- Human and rat skeletal muscle single-nuclei multi-omic integrative analyses nominate causal cell types, regulatory elements, and SNPs for complex traits 95%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.