U2-2 snRNA Mutations Alter the Transcriptome
Chi, Z.; Gupta, V.; Query, C. C.
Show abstract
Intron removal from pre-mRNA is catalyzed by the spliceosome, which comprises 5 snRNPs containing small nuclear RNAs (snRNAs). U2 snRNA makes critical RNA-RNA and RNA-protein contacts throughout the splicing cycle. Mutations in U2 snRNA, particularly at position C28, have been linked to cancers. To study gene expression changes mediated by mutated U2 snRNAs, U2-2 C28 mutants, U2-2 knockout (KO), and U2-2 overexpression (OE) cell lines were constructed followed by RNA sequencing. We observed significant changes in splicing and over 4,000 differentially expressed genes enriched in pathways like RNA processing and non-coding RNAs upon knocking out U2-2 snRNA. Splicing patterns were more influenced by U2-2 dosage than mutations alone. Therefore, the mutant exhibits a compound phenotype, resulting from reduced U2-2 levels (and thus mostly phenocopying the KO) and additional mutant-specific splicing changes. HIGHLIGHTSO_LIU2-2 snRNA BSL mutants alter splicing and the transcriptome C_LIO_LIU2-2 KO phenocopies most altered splice events in the mutants C_LIO_LIBoth U2-2 levels and mutations alter splicing C_LIO_LIMany altered splice events lead to NMD C_LI
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Distinct functions for the paralogous RBM41 and U11/U12-65K proteins in the minor spliceosome 97%
- Exon junction complex-associated multi-adapter RNPS1 nucleates splicing regulatory complexes to maintain transcriptome surveillance 96%
- Cooperative engagement and subsequent selective displacement of SR proteins define the pre-mRNA 3D structural scaffold for early spliceosome assembly 95%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- The apoptotic splicing regulators RBM5 and RBM10 are subunits of the U2 snRNP engaged with intron branch sites on chromatin 96%
- A nuclear RNA degradation code for eukaryotic transcriptome surveillance 95%
- Proteome-wide quantitative RNA interactome capture (qRIC) identifies phosphorylation sites with regulatory potential in RBM20 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.