Study / S9SOS8Z7K2025-07-25
U-rich elements drive pervasive cryptic splicing in 3’ UTR massively parallel reporter assays
Khoa Dao, Courtney F. Jungers, Sergej Djuranovic, Anthony M. Mustoe
About this study
Untranslated RNA sequences play essential roles in orchestrating gene expression. However, the sequence codes and mechanisms underpinning post-transcriptional regulation remain incompletely understood. Here, we revisit the finding from a prior massively parallel reporter assay (MPRA) that AU-rich elements in 3’ untranslated regions (3’ UTRs) can drive upregulation or downregulation of mRNA expression depending on 3’ UTR context. We unexpectedly discover that this variable regulation arises from widespread cryptic splicing, predominately from an unannotated splice donor in the coding sequence of GFP to diverse acceptor sites in reporter 3’ UTRs. Splicing is activated by U-rich sequences, which function as potent position-dependent regulators of 5’ and 3’ splice site choice and overall splicing efficiency. Splicing has diverse impacts on reporter expression, causing both increases and decreases in reporter expression via multiple mechanisms. We further provide evidence that cryptic splicing significantly impacts measurements made by other published 3’ UTR MPRAs. Overall, our work emphasizes U-rich sequences as principal drivers of splicing and provides strategies to minimize cryptic splicing artifacts in reporter assays.
Full author list & citation
Khoa Dao, Courtney F. Jungers, Sergej Djuranovic, Anthony M. Mustoe. U-rich elements drive pervasive cryptic splicing in 3’ UTR massively parallel reporter assays. 2025-07-25. https://doi.org/10.1038/s41467-025-62000-9
Experiments 5
E08NGQHVS
Three biological U-87 MG RNA replicates of the 642-reporter synthetic PTRE-seq library, with ten internal barcode copies per reporter identity. Extended reporter amplicon sequencing quantified full-length and cryptically spliced transcript classes.
E1HEEB6JM
Three biological SH-SY5Y RNA replicates of the 642-reporter synthetic PTRE-seq library, with ten internal barcode copies per reporter identity. Extended reporter amplicon sequencing quantified full-length and cryptically spliced transcript classes.
E38KESFEU
One HeLa RNA replicate of the otherwise matched PTRE-seq reporter library lacking the 25-nucleotide barcode-to-insert spacer. This control tests whether the standard spacer and reporter architecture contribute to cryptic splice activation.
E4RJHSHA7
Three biological HEK293 RNA replicates of the 642-reporter synthetic PTRE-seq library, with ten internal barcode copies per reporter identity. Extended reporter amplicon sequencing quantified full-length and cryptically spliced transcript classes.
E60XJWDUM
Two biological HeLa RNA replicates of the 642-reporter synthetic PTRE-seq library, with ten internal barcode copies per reporter identity. The episomal GFP 3′ UTR reporter was sequenced across the coding-sequence/3′ UTR junction to quantify full-length and cryptically spliced transcripts.