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Global Promotion of Alternative Internal Exon Usage by mRNA 3' End Formation Factors
, J. Ou, L.J. Zhu, M.R. Green
Published in Cell Press
2014
PMID: 25921069
Volume: 58
   
Issue: 5
Pages: 819 - 831
Abstract
The mechanisms that regulate alternative precursor mRNA (pre-mRNA) splicing are largely unknown. Here, we perform an RNAi screen to identify factors required for alternative splicing regulation by RBFOX2, an RNA-binding protein that promotes either exon inclusion or exclusion. Unexpectedly, we find that two mRNA 3' end formation factors, cleavage and polyadenylation specificity factor (CPSF) and SYMPK, are RBFOX2 cofactors for both inclusion and exclusion of internal exons. RBFOX2 interacts with CPSF/SYMPK and recruits it to the pre-mRNA. RBFOX2 and CPSF/SYMPK then function together to regulate binding of the early intron recognition factors U2AF and U1 small nuclear ribonucleoprotein particle (snRNP). Genome-wide analysis reveals that CPSF also mediates alternative splicing of many internal exons in the absence of RBFOX2. Accordingly, we show that CPSF/SYMPK is also a cofactor of NOVA2 and heterologous nuclear ribonucleoprotein A1 (HNRNPA1), RNA-binding proteins that also regulate alternative splicing. Collectively, our results reveal an unanticipated role for mRNA 3' end formation factors in global promotion of alternative splicing. The mechanisms that regulate alternative precursor mRNA splicing are largely unknown. Using a large-scale RNAi screen, combined with genome-wide RNA sequencing and crosslinking studies, Misra et al. demonstrate an unanticipated role for the mRNA 3' end formation factors CPSF and SYMPK in global promotion of alternative splicing. © 2015 Elsevier Inc.
About the journal
JournalMolecular Cell
PublisherCell Press
ISSN10972765