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Updated: May 26, 2026

Using the E1A Minigene Tool to Study mRNA Splicing Changes
Published on: April 22, 2021
Proteins associated with the exon junction complex also control the alternative splicing of apoptotic regulators
Laetitia Michelle1, Alexandre Cloutier, Johanne Toutant
1Département de Microbiologie et d’Infectiologie, Université de Sherbrooke, Sherbrooke, Québec, Canada.
Abstract:
Several apoptotic regulators, including Bcl-x, are alternatively spliced to produce isoforms with opposite functions. We have used an RNA interference strategy to map the regulatory landscape controlling the expression of the Bcl-x splice variants in human cells. Depleting proteins known as core (Y14 and eIF4A3) or auxiliary (RNPS1, Acinus, and SAP18) components of the exon junction complex (EJC) improved the production of the proapoptotic Bcl-x(S) splice variant. This effect was not seen when we depleted EJC proteins that typically participate in mRNA export (UAP56, Aly/Ref, and TAP) or that associate with the EJC to enforce nonsense-mediated RNA decay (MNL51, Upf1, Upf2, and Upf3b). Core and auxiliary EJC components modulated Bcl-x splicing through different cis-acting elements, further suggesting that this activity is distinct from the established EJC function. In support of a direct role in splicing control, recombinant eIF4A3, Y14, and Magoh proteins associated preferentially with the endogenous Bcl-x pre-mRNA, interacted with a model Bcl-x pre-mRNA in early splicing complexes, and specifically shifted Bcl-x alternative splicing in nuclear extracts. Finally, the depletion of Y14, eIF4A3, RNPS1, SAP18, and Acinus also encouraged the production of other proapoptotic splice variants, suggesting that EJC-associated components are important regulators of apoptosis acting at the alternative splicing level.
Insights
The exon junction complex (EJC) regulates Bcl-x alternative splicing. Core and auxiliary EJC components promote proapoptotic Bcl-x(S) variant production, impacting apoptosis at the splicing level.
Area of Science:
- Molecular Biology
- Cell Biology
- Genetics
Background:
- Alternative splicing generates protein isoforms with diverse functions, crucial for cellular processes.
- Bcl-x is a key regulator of apoptosis, with alternatively spliced variants exhibiting opposing roles.
Purpose of the Study:
- To investigate the regulatory mechanisms controlling Bcl-x alternative splicing in human cells.
- To identify the role of the exon junction complex (EJC) in modulating Bcl-x splicing.
Main Methods:
- RNA interference (RNAi) was employed to deplete specific proteins.
- Analysis of Bcl-x splice variant production following protein depletion.
- Biochemical assays to assess protein-RNA interactions and splicing activity.
Main Results:
- Depletion of core (Y14, eIF4A3) and auxiliary (RNPS1, Acinus, SAP18) EJC components enhanced the proapoptotic Bcl-x(S) variant.
- EJC components involved in mRNA export or nonsense-mediated decay did not affect Bcl-x splicing.
- Recombinant EJC proteins directly interacted with Bcl-x pre-mRNA and modulated its splicing.
Conclusions:
- Specific EJC components regulate Bcl-x alternative splicing, distinct from their known roles in mRNA processing.
- EJC-associated proteins are critical regulators of apoptosis via alternative splicing control.
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