MBNL1 and RBFOX1 co-regulate alternative splicing events transcriptome-wide through a conserved buffering mechanism
Berglund, J. A.; Hale, M.; Ellis, J. A.; Meng, R.; McDaniel, S.; Mahady, A.; Wagner, S.; Richardson, J.; McConnell, O.; T. Wang, E.
Show abstract
Alternative splicing (AS) is controlled by cis-regulatory elements recognized by networks of trans-acting factors. Here we investigate modes and mechanisms of AS co-regulation by MBNL1 and RBFOX1, two RNA binding proteins (RBPs) critical for developmental AS transitions. We generated two cell models that express each RBP under separate inducible promoters. Transcriptome-wide categorization of the impacts of RBFOX1 expression on MBNL1 splicing revealed a common co-regulatory mode through which RBFOX1 buffers MBNL1 dose-dependent splicing regulation by reducing the total range of exon inclusion or exclusion. Minigene mutational analysis and in vitro binding experiments suggest that this buffering mechanism occurs through a shared cis-regulatory element previously unidentified as critical for MBNL1-dependent activity. Overall, our studies define a conserved co-regulatory mechanism through which RBFOX1 and MBNL1 can fine-tune and provide redundancy for AS outcomes. These studies indicate overlapping use of RNA motifs with potential implications for when activity of RBPs is disrupted.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Exon junction complex-associated multi-adapter RNPS1 nucleates splicing regulatory complexes to maintain transcriptome surveillance 96%
- Ribosomal quality control factors inhibit repeat-associated non-AUG translation from GC-rich repeats 95%
- HNRNPH1 destabilizes the G-quadruplex structures formed by G-rich RNA sequences that regulate the alternative splicing of an oncogenic fusion transcript 95%
Similar papers in this journal
- Fluid flow-induced left-right asymmetric decay of Dand5 mRNA in the mouse embryo requires Bicc1-Ccr4 RNA degradation complex 95%
- Expanded palette of RNA base editors for comprehensive RBP-RNA interactome studies 95%
- CRISPR-Cas9 cytidine and adenosine base editing of splice-sites mediates highly-efficient disruption of proteins in primary cells 95%
Similar papers in this journal
Similar papers in this journal
- eRNAs Modulate mRNA Stability and Translation Efficiency to Bridge Transcriptional and Post-transcriptional Gene Regulation 94%
- Global Analysis by LC-MS/MS of N6-Methyladenosine and Inosine in mRNA Reveals Complex Incidence 94%
- Translation re-initiation after uORFs does not fully protect mRNAs from nonsense-mediated decay 94%
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.