hnRNP A1 induces aberrant CFTR exon 9 splicing via a newly discovered Exonic Splicing Silencer element.
Beaumont, C.; Chou, M.-Y.; Stuani, C.; Buratti, E.; Lukavsky, P. J.
Show abstract
RNA-protein interactions play a key role in the aberrant splicing of CFTR exon 9. Exon 9 skipping leads to the production of a non-functional chloride channel associated with severe forms of cystic fibrosis. The missplicing depends primarily on variations in the polymorphic (TG)mTn locus upstream of exon 9. At the pre-mRNA level, it generates an extended UG-rich binding site for TDP-43, associated with hnRNP A1 recruitment, and prevention of exon 9 3 splicing site (3ss) recognition. While TDP-43 is the dominant inhibitor of exon 9 inclusion, the role of hnRNP A1, a protein with two RNA recognition motifs (RRM1 and RRM2) and a glycine-rich domain, remained unclear. In this work, we have studied the interaction between hnRNP A1 and the CFTR pre-mRNA using NMR spectroscopy and Isothermal Thermal Calorimetry (ITC). The affinities are submicromolar and ITC data suggest that the separate RRMs as well as tandem RRMs form 1:1 complexes. NMR titrations reveal that hnRNP A1 interacts with model CTFR 3ss sequences in a fast exchange regime at the NMR timescale. Splicing assays finally show that this hnRNP A1 binding site represents a previously unknown exonic splicing silencer element. Together, our results shed light on the mechanism of aberrant CFTR exon 9 splicing.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Structural basis of UCUU RNA motif recognition by splicing factor RBM20 95%
- HNRNPH1 destabilizes the G-quadruplex structures formed by G-rich RNA sequences that regulate the alternative splicing of an oncogenic fusion transcript 95%
- Vimentin binds to G-quadruplex repeats found at telomeres and gene promoters 95%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Small molecule targeting r(UGGAA)n disrupts RNA foci and alleviates disease phenotype in Drosophila model 95%
- Small Molecule Targeting IRES Domain Inhibits Enterovirus 71 Replication via an Allosteric Mechanism that Stabilizes a Ternary Complex 95%
- Structural basis of the interaction between SETD2 methyltransferase and hnRNP L paralogs for governing co-transcriptional splicing 94%
"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.