Disruption of exon-bridging interactions between the minor and major spliceosomes results in alternative splicing around minor introns

Author:

Olthof Anouk M1,White Alisa K1,Mieruszynski Stephen2,Doggett Karen2,Lee Madisen F1,Chakroun Almahdi3,Abdel Aleem Alice K3,Rousseau Justine4,Magnani Cinzia5,Roifman Chaim M67,Campeau Philippe M8ORCID,Heath Joan K2,Kanadia Rahul N19ORCID

Affiliation:

1. Physiology and Neurobiology Department, University of Connecticut, 75 N. Eagleville Road, Storrs, CT 06269, USA

2. Epigenetics and Development Division, Walter and Eliza Hall Institute of Medical Research, Parkville, VIC 3052, Australia

3. Neurogenetics, Weill Cornell Medicine—Qatar, Doha, Qatar

4. CHU Sainte-Justine Research Center, Montreal, QC H3T 1C5, Canada

5. Neonatology and Neonatal Intensive Care Unit, Maternal and Child Department, University of Parma, Parma, 43121, Italy

6. Division of Immunology and Allergy, Department of Pediatrics, The Hospital for Sick Children and the University of Toronto, Toronto, ON M5G 1X8, Canada

7. The Canadian Centre for Primary Immunodeficiency and The Jeffrey Modell Research Laboratory for the Diagnosis of Primary Immunodeficiency, The Hospital for Sick Children, Toronto, ON M5G 1X8, Canada

8. Department of Pediatrics, University of Montreal, Montreal, QC H4A 3J1, Canada

9. Institute for System Genomics, University of Connecticut, Storrs, CT 06269, USA

Abstract

Abstract Vertebrate genomes contain major (>99.5%) and minor (<0.5%) introns that are spliced by the major and minor spliceosomes, respectively. Major intron splicing follows the exon-definition model, whereby major spliceosome components first assemble across exons. However, since most genes with minor introns predominately consist of major introns, formation of exon-definition complexes in these genes would require interaction between the major and minor spliceosomes. Here, we report that minor spliceosome protein U11-59K binds to the major spliceosome U2AF complex, thereby supporting a model in which the minor spliceosome interacts with the major spliceosome across an exon to regulate the splicing of minor introns. Inhibition of minor spliceosome snRNAs and U11-59K disrupted exon-bridging interactions, leading to exon skipping by the major spliceosome. The resulting aberrant isoforms contained a premature stop codon, yet were not subjected to nonsense-mediated decay, but rather bound to polysomes. Importantly, we detected elevated levels of these alternatively spliced transcripts in individuals with minor spliceosome-related diseases such as Roifman syndrome, Lowry–Wood syndrome and early-onset cerebellar ataxia. In all, we report that the minor spliceosome informs splicing by the major spliceosome through exon-definition interactions and show that minor spliceosome inhibition results in aberrant alternative splicing in disease.

Funder

National Institute of Neurological Disorders and Stroke

Publisher

Oxford University Press (OUP)

Subject

Genetics

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