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We previously found that the SF3A mRNA splicing complex was required for a robust innate immune response; SF3A acts in part by inhibiting the production of a negatively acting splice form of the TLR signaling adaptor MyD88. Here we inhibit SF3A1 using RNAi and subsequently perform an RNAseq study to...
ORGANISM(S): Mus musculus 
Cross-linking of isotope-labelled RNA coupled with mass spectrometry (CLIR-MS) was used to study the interaction between the ubiquitin-like domain (UBL) of the protein SF3A1, a component of the U2 snRNP, with stem-loop 4 RNA (SL4) from the U1 snRNP. The complex was cross-linked and analysed both in ...
ORGANISM(S): Homo sapiens (Human) 
2022-02-22 | PXD027189 | Pride
We previously found that the SF3A mRNA splicing complex was required for a robust innate immune response; SF3A acts in part by inhibiting the production of a negatively acting splice form of the TLR signaling adaptor MyD88. Here we inhibit SF3A1 using RNAi and subsequently perform an RNAseq study to...
ORGANISM(S): Mus musculus 
2015-02-09 | GSE58432 | GEO
Effect of SF3A1 inhibition on pre-mRNA splicing
SF3A1 is a subunit of the SF3a complex, an integral component of U2 snRNP, playing a crucial role in intron recognition and pre-RNA splicing during the splicing process. Notably, we observed that SF3A1 exerts its growth-promoting effects specifically in cancer cells, despite no discernible alteratio...
ORGANISM(S): Homo sapiens 
2026-02-18 | GSE282463 | GEO
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