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Updated: Jun 3, 2025

A Reporter Based Cellular Assay for Monitoring Splicing Efficiency
Published on: September 15, 2021
Direct and indirect effects of spliceosome disruption compromise gene regulation by Nonsense-Mediated mRNA Decay
Caleb M Embree1, Andreas Stephanou1, Guramrit Singh1
1Department of Molecular Genetics, Center for RNA Biology, The Ohio State University, Columbus, OH, 43210.
Abstract:
Pre-mRNA splicing, carried out in the nucleus by a large ribonucleoprotein machine known as the spliceosome, is functionally and physically coupled to the mRNA surveillance pathway in the cytoplasm called nonsense mediated mRNA decay (NMD). The NMD pathway monitors for premature translation termination signals, which can result from alternative splicing, by relying on the exon junction complex (EJC) deposited on exon-exon junctions by the spliceosome. Recently, multiple genetic screens in human cell lines have identified numerous spliceosome components as putative NMD factors. Using publicly available RNA-seq datasets from K562 and HepG2 cells depleted of 18 different spliceosome components, we find that natural NMD targeted mRNA isoforms are upregulated when members of the catalytic spliceosome are reduced. While some of this increase could be due to widespread pleiotropic effects of spliceosome dysfunction (e.g., reduced expression of NMD factors due to mis-splicing of their mRNAs), we identify that AQR, SF3B1, SF3B4 and CDC40 may have a more direct role in NMD. We also test the hypothesis that increased production of novel NMD substrates may overwhelm the pathway to find a direct correlation between the amount of novel NMD substrates detected and the degree of NMD inhibition observed. Finally, similar transcriptome alterations and NMD substrate upregulation are also observed in cells treated with spliceosome inhibitors and in cells derived from retinitis pigmentosa patients with mutations in PRPF8 and PRPF31. Overall, our results show that regardless of the cause, spliceosome disruption upregulates a broad set of NMD targets, which could contribute to cellular dysfunction in spliceosomopathies.
Insights
Spliceosome disruption upregulates nonsense-mediated mRNA decay (NMD) targets. This occurs regardless of the cause, potentially contributing to cellular dysfunction in spliceosomopathies.
Area of Science:
- Molecular Biology
- Genetics
- Cell Biology
Background:
- Pre-mRNA splicing by the spliceosome is coupled to nonsense-mediated mRNA decay (NMD) surveillance.
- The exon junction complex (EJC) links splicing and NMD by marking exon-exon junctions.
- Spliceosome components have recently been implicated as factors in NMD.
Purpose of the Study:
- To investigate the relationship between spliceosome function and NMD.
- To identify specific spliceosome components with direct roles in NMD.
- To determine if spliceosome disruption broadly affects NMD targets.
Main Methods:
- Analysis of RNA-seq datasets from human cells depleted of spliceosome components.
- Assessment of NMD-targeted mRNA isoform upregulation.
- Correlation analysis between novel NMD substrates and NMD inhibition.
- Examination of transcriptome alterations in cells treated with spliceosome inhibitors or derived from patients with spliceosomopathy mutations.
Main Results:
- Depletion of catalytic spliceosome members upregulated natural NMD-targeted mRNA isoforms.
- AQR, SF3B1, SF3B4, and CDC40 showed potential direct roles in NMD.
- A correlation was found between the quantity of novel NMD substrates and the degree of NMD inhibition.
- Spliceosome inhibitors and patient-derived cells exhibited similar NMD substrate upregulation.
Conclusions:
- Spliceosome disruption, irrespective of the cause, leads to broad upregulation of NMD targets.
- This upregulation may contribute to cellular dysfunction observed in spliceosomopathies.
- The findings highlight a critical link between spliceosome integrity and mRNA surveillance.
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